Showing posts with label coffee roasting. Show all posts
Showing posts with label coffee roasting. Show all posts

Wednesday, 29 October 2025

Roasting Times & Temp settings for different Cultivars.

Coffee cultivars don’t come with fixed “roast settings,” 
They behave differently in the roaster because of variations in bean density, size, moisture, sugar content, and structure. Those differences influence how heat is absorbed and how quickly chemical reactions (like caramelization and Maillard reactions) occur.

Here’s how that plays out in practice:
🔥 1. Bean Size & Shape
💧 2. Moisture Content
🌱 3. Density & Bean Structure 
🌱 4. Processing Method
🍬 5. Sugar Content & Chemical Composition
⏱️ 6. Practical Roast Adjustments by Cultivar Type

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🔥 1. Bean Size & Shape

Size
Larger beans (e.g., Maragogipe):
+ this is arguably the most important consideration when Roasting.
+ Heat penetrates more slowly through to the centre of a larger bean
+ Thus there is a need for  longer roast times or more energy input (higher charge temps)
Smaller beans in comparison
+ Heat faster
+ Thus there is a risk of overdevelopment on the outside.

This runs contrary to many traditional roasting profiles that prioritize bean density over size.
Often, denser beans are smaller and one would think that more heat is required for such beans when the opposite is often the case. However, larger coffee beans are often associated with higher quality and some coffee-producing countries grade their beans by size. 
Eg: Colombian Supremo or the Kenyan AA grades fetch the highest prices.

Bean shape
Natural, round, single-seed peaberries tend to roll and move differently in a drum or fluid (air) roaster, 
often offering a more uniform heat transfer compared to traditional flat, twin beans.

So in conclusion, the size and shape of coffee beans depends on many factors such a level of ripeness, getting sufficient water during fruit expansion, the availability of nutrients, altitude, elevation above sea level, micro climates and growing temperatures.


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💧 2 . Moisture Content 

I think moisture is the second most impt consideration when deciding how to roast a bean.

Measuring water content in raw coffee beans is best achieved using specialized capacitance moisture meters (like DiFluid Omix, Roast Rite RM-800, or G-Won) for rapid, accurate, and non-destructive testing, targeting a moisture content of 10%–12%. Alternatively, the oven-drying method involves weighing beans, baking them at 105C for 24 hours, and calculating weight loss.
I use one of these testers:
https://www.youtube.com/watch?v=gOx6Eu_j8qI

Moisture content (ideally 10–12%) dictates the thermal energy needed during coffee roasting, impacting drying time, the rate of rise (RoR), and final flavor development. High moisture (>12%) requires more heat to evaporate water, delaying browning and increasing risk of grassy/uneven roasts, while low moisture (<10%) risks rapid, uneven roasting.

Key Effects of Moisture Content on Roasting:

Thermal Management & Energy: Beans with higher moisture require higher heat input (more gas/energy) in the initial drying phase to overcome the cooling effect of evaporating water.
Roast Timing & Rate (RoR): Drier beans reach higher temperatures more rapidly, often requiring lower charge temperatures to avoid burning. High-moisture beans require longer drying times to avoid underdevelopment.
Physical Changes: Moisture leaves the bean during roasting, causing shrinking and weight loss, which impacts flavor density.

Ideal Ranges & Risks:

10%–12% (Ideal): Provides balanced flavor development.
>12% (High Moisture): Can lead to uneven roasting, stalling (low ROR), and grassy or fermented flavors. If raw coffee was stored in a moist environment, mould can develop.
<10% (Low Moisture): Often found in old-crop coffee or coffee stored in a dry enviroment.
This can lead to brittleness and accelerated roasting, often leading to a "papery" or flat taste. 

Roaster Adjustments
Roasters typically increase charge temperature and heat application early for high-moisture coffees to ensure they transition through the yellowing/browning stage properly. Increased airflow is often necessary to remove the high humidity released in the early stages. 
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🌱 3. Density & Bean Structure 
High-density cultivars (often high-altitude Arabica coffee like Bourbon, Typica, Gesha):
+ Need higher charge temperatures
+ Can handle more heat early
+ Often require slightly longer roast times
+ Benefit from slower development to bring out complexity

Lower-density cultivars (including many Robusta coffee or low-altitude Arabicas):
+ Roast faster
+ Require lower starting temps
+ Can scorch if heat is too aggressive
+ Often shorter overall roast curves

👉 In short: 
denser beans = slower roast, hotter start; 
softer beans = quicker roast, "cooler" start.

General classification of bean density for different cultivars

A. Strictly High Grown (SHG): Above 1500m (5,000+ ft)
Strictly High Grown (SHG) or Strictly Hard Bean (SHB) coffee refers to (mainly) Arabica beans grown above 1,200–1,500 meters (4,000–5,000+ feet).
These denser, slower-developed beans have higher acidity and complex flavors. 
Besides SHG/SHB, look for terms like Altura (Mexico) or High Grown (Colombia)

Top examples include :
Ethiopia:
Yirgacheffe (1,700–2,200m): Known for, bright acidity, tea-like body, and floral or citrus notes.
Guji Wamena (over 2,300 MASL) 
Kenya AA (1,700–2,000m): Grown on high plateaus, known for intense, bright fruit acidity and rich body.
Guatemala SHB (Antigua/Coban) (1,400–1,700m+): Often grown in volcanic soil, producing rich, complex cups with hints of chocolate or smoke.
Costa Rica Tarrazú (1,500–2,000m): Highly sought after for its crisp, clean, and bright flavor profiles.
Tanzania Peaberry (Mt. Kilimanjaro): Known for its intense, wine-like acidity and bright flavors.
Colombia Supremo (up to 2,000m): Known for a well-balanced profile and high altitude acidity.
Papua New Guinea "Mile High" (1,500m+): Often features fruity, tea-like notes

B. High altitude (≈1200–1500 m):
Cooler climate - Slow maturation → tighter cell structure
Smaller, harder beans
Brighter acidity
High flavour complexity - Floral/fruit 

Eg: Ethiopia, Kenya, Central American, Guatemala, Peruvian, Colombian .

Examples of high-density cultivars (often high-altitude adapted) include
Typica
Bourbon
SL28 / SL34 (Kenya)
Geisha

C. Medium (900m–1200m [3,000–4,000 ft])
More acidic than lower elevation coffees.
More nuttiness.
Such beans offer a balanced, easy-drinking profile that acts as a bridge between low-altitude earthy flavors and high-altitude bright acidity. 
This elevation range is highly regarded for producing balanced, dense beans, particularly in South America and parts of Asia.

Regions:
India: mostly in the southern states of Karnataka, Kerala, and Tamil Nadu. High-density shade-grown methods often cause beans to mature slowly, mimicking higher elevation profiles.
Brazil (Alta Mogiana Region): Red Catuai varieties from this area are commonly grown at 900–1200 meters, known for natural fermentation processes that produce notes of chocolate, almonds, and hazelnut.
Vietnam (Son La Province): Arabica trees grown in this northwest region at 900m–1200m thrive due to cold, rainy conditions.
Jamacia: Authentic Jamaica Blue Mountain (JBM) coffee is grown at high altitudes between 3,000 and 5,500 feet (900 to 1,700 metres) above sea level in the Blue Mountains. This specific, misty, and steep environment creates a slow maturation process—up to 10 months—which results in a mild, sweet, and complex flavor profile.

Other Examples: Mexico (Altura), Costa Rica, Java, and Sumatra often produce coffee in this range, delivering nutty, creamy, or earthy profiles.

D. Low Altitude (below 900m - [3000ft]):
Warmer temperatures - faster-growing - less dense.
lower acidity, earthy flavors,
These coffees are often described as having  and a more simple, soft profile compared to high-altitude beans.
Robusta coffees grow abundantly at 600-2,500 feet elevation. 
Unlike Arabica plants, Robusta can handle higher temperatures and pests. 
However, the coffee tastes harsher and more bitter. 

Examples include: 
Brazil: Much of Brazil's high-volume, lower-altitude coffee is popular for its balanced and nutty profile.
(while most Brazilians may be soft beans, some are as dense as Ethiopians).
Santos : (Sao Paulo/Minas Gerais, Brazil). Often grown around 900m or slightly below, typically sweet and smooth.
Hawaiian (Kona): (Arabica), grown between 600-3,200 feet elevation has unique growing conditions, 
with coffee planted along volcanic slopes.
Liberica: A species that grows in hot and wet conditions, commonly found in low-altitude regions of Southeast Asia.
Vietnam: A major producer of Robusta, which often grows in warm, humid conditions below 900m.
Sumatra/Indonesia: Known for wet-hulled robusta that provides an earthy, intense, and low-acid experience.
Jamacia: (not to be confused with J Blue Mountain)
Jamaica High Mountain: 1,500 to 3,000 feet (460m–910m).
Jamaica Supreme/Low Mountain: Below 1,500 feet (460m).

Lower-density cultivars / hybrids
Catuaí
Caturra
Castillo
Catimor hybrids

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4. Processing Method


Even within the same cultivar:
Washed coffees → cleaner, more predictable → tolerate higher initial heat
Natural / honey processed → more sugars → need gentler heat ramps to avoid scorching
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Washed (or wet-processed) coffee is generally the easiest to roast for beginners because the beans are clean of fruit pulp, resulting in a more uniform, predictable, and less smoky roasting process. Their consistent density makes it easier to achieve an even color throughout the batch compared to natural or honey processed coffees, which can scorch easily. 

Why Washed Coffee is Easiest to Roast:
Lower Chaff/Sugar: With pulp removed, there is less sticky chaff and sugar to burn, reducing smoke and uneven development.
Consistency: The drying process is more uniform, which means heat is absorbed evenly by the beans.
Visual Control: Because of their uniformity, it is easier to see the color change and identify the first crack during the roast. 

Key Considerations for Beginners:
Air Roasters/Popcorn Poppers: These provide even heat and better consistency.
Natural Process: While often sweeter, natural processed beans are more porous and irregular, making them prone to faster, less uniform roasting and more smoke.
(I particularly like Costa Rician washed coffees... really uniform )
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🍬 5 . Sugar Content & Chemical Composition

Different cultivars have different sugar levels and precursor compounds, 
which affect how they develop flavor:

High-sugar cultivars (e.g., Gesha, Bourbon):
+ Need careful heat control to avoid burning sugars
+ Often benefit from longer Maillard phase
+ Lower end temps can preserve floral/fruit notes
Lower-sugar cultivars:
+ Reach desired roast level more quickly
+ May need slightly higher end temps to build body

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⏱️ 6. Practical Roast Adjustments by Cultivar Type

Here’s a simplified comparison:


| Cultivar Type                                    | Charge Temp  | Roast Time  | Heat Application            |
| ----------------------------------                | -----------         | ----------         | --------------------------- |
| High-density Arabica (e.g., Gesha)  | Higher            | Longer         | Strong early, gradual taper |
| Classic Arabica (Typica/Bourbon)   | Medium-high  | Medium        | Balanced curve              |
| Low-density / Robusta                     | Lower             | Shorter         | Gentle, careful heat        |

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🎯 Key Takeaways
There’s no universal temperature/time for a cultivar.
Roasters adjust based on how the bean responds, not just its name.
The biggest drivers are:
Density (altitude-related)
Sugar content
Processing method


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Below are example roast curves for three distinct profiles:
1. a high-density Gesha coffee, 
2. a classic Bourbon coffee, 
3. a lower-density Robusta coffee.

These assume a drum roaster (like a Probat or Diedrich), batch size ~70–80% capacity.

☕ 1. Gesha (High Density, High Sugar, Delicate)

Target: Light - medium roast (filter/espresso, highlight florals for filter)
+ Charge temp: ~205–210°C (commercial roaster)
   Charge temp: ~195–200°C (Home drum roaster)
+ Turning point: ~1:30 at ~95–100°C
+ Dry end (yellow): 4:30–5:30
+ First crack: 8:30–9:30 at ~196–200°C
+ Drop: 9:45–10:30
+ End temp: ~200–203°C
+ If you want to develop further drop @ 10.00-11.00 (202-205C)

How it behaves:
+ Dense → absorbs heat slowly at first
+ Needs strong early heat, then gentle decline
+ Long Maillard phase = better aromatics
  Gradually reduce heat → extend this phase for complexity.
+ Development phase:
  Very controlled, gentle → avoid muting florals

Key adjustments:
+ Avoid rushing post–first crack (can mute florals)
+ Keep development time short (~10–12%)

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☕ 2. Bourbon (Balanced, Medium Density)

Target: Medium roast (balanced sweetness + body)
+ Charge temp: ~200–205°C
+ Turning point: ~1:30–1:45
+ Dry end: 4:00–4:30
+ First crack: 8:00–9:00
+ Drop: 10:30–11:30
+ End temp: ~205–210°C

How it behaves:
+ More forgiving than Gesha
+ Even heat transfer
+ Sugars caramelize more easily

Key adjustments:
+ Balanced heat curve (not too aggressive early)
+ Development time ~15–18% for body + sweetness

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☕ 3. Robusta (Low Density, High Caffeine, Tougher Structure)

Target: Medium-dark to dark (reduce harshness)
+ Charge temp: ~190–195°C (Commercial roaster)
   Charge temp: ~185–195°C (Home Drum roaster)
+ Turning point: ~1:00–1:30
+ Dry end: 3:30–5:00
+ First crack: 7:00–8:30
+ Drop: 10:00–12:00
+ End temp: ~210–218°C

How it behaves:
+ Lower density → heats quickly
+ Can scorch easily if overheated early
+ Less sugar → needs deeper development

Key adjustments:
+ Gentler initial heat
+ Longer development phase (~20%+)
+ Often pushed closer to second crack for smoothness

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🧠 What’s Really Happening
Gesha: You’re protecting fragile aromatics → precision + restraint
Bourbon: You’re balancing sugar + body → classic curve
Robusta: You’re taming bitterness → deeper, slower finish

Cultivars mainly influence how quickly and evenly heat moves through the bean.

Saturday, 18 October 2025

Timing the Drying phase

 Drying time in coffee roasting—the phase from charge to the yellowing/browning point (typically 100–160°C / 212–320°F)—is determined by the need to evaporate 10–12% moisture from the green beans. This stage usually lasts 4–7 minutes. 

Key factors influencing this duration include:
1. Bean Physical Properties
Density: Denser beans (e.g., high-altitude, strictly hard bean) are harder for heat to penetrate and require more energy and longer drying times.
Moisture Content: Higher moisture content requires a longer drying phase to evaporate water without creating uneven moisture pockets, which can lead to burnt exteriors and raw interiors.
Processing Method: Natural process beans often have higher sugar content and can dry faster, sometimes needing lower initial heat to avoid scorching compared to washed beans. 

2. Roaster Technology and Control
Roaster Type: Fluid-bed (air) roasters often dry faster than drum roasters due to more efficient convective heat transfer.
Batch Size: Larger batches hold more total moisture and have higher thermal mass, requiring more energy and longer time to heat evenly.
Charge Temperature: The initial temperature of the roaster affects how fast the beans turn color. A higher charge temperature generally results in a shorter drying phase, while a lower charge temp extends it.
Airflow Settings: Higher airflow increases the rate of evaporation, speeding up the drying phase. 

3. Environmental and External Factors
Ambient Temperature: A colder roasting environment will increase heat loss from the machine, requiring more time to reach the yellowing point.
Humidity: Higher humidity in the air can slow down the roasting process by making it harder for the beans' moisture to escape. 

Optimal Drying Strategy
Avoid Rushing: Rushing the drying phase can lead to uneven, underdeveloped, or "baked" coffee.
The "Yellowing" Target: A common goal is to reach the yellow/tan color shift around the 5-minute mark.
Aroma Cues: The stage ends when the aroma changes from a grassy/hay-like smell to a sweeter, bread-like aroma.

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Typically I like to see a ROR of about 18-25
It will be higher at the beginning as you are introducing more heat very quickly

Typically the time from "charge" to "dry end" = 50% of the total roast time

Browning = 30%
Development = 20%

These ratios though not exact give you a good idea if your roast is progressing in a timely manner


Friday, 19 September 2025

Behmore coffee roaster - Ethiopian

 Some Ethiopian Guji Wamena Gr1.

The Guji Zone lies approximately 300 to 400 km south of Addis Ababa in the Oromia Region.
In 2002, Guji itself detached from Yirgacheffe, which had previously been folded in with the Sidamo name. The Guji region takes its name from the Oromo people, a tribe that has farmed coffee on the land for generations.































“Guji Wamena” refers to coffees from the Hambela/Wamena districts inside Guji, now famous for floral, fruity, and tea-like Ethiopian profiles.

common notes: blueberry, jasmine, citrus, peach
elevation:  1,800–2,200 meters
The region uses washed vs natural processing 

I used this recipe from Roast Rebels as a guide.

These were my settings
Quantity : 270g green beans
Preheat : none

Start : P5 (for 8 mins)
8       : P4 (for 6 mins)
14     : P3 (for 2 mins).... FC
16     : Cool (run the full 13 min cooling cycle)

first crack occurred at 14 mins .
For a lighter roast cut the P3 time to 1 min 
or
press Cool at the end of the P4 cycle.


I started with 270g  and finished with 225.6 g
16.44% water loss
Thus a dark roast.

Saturday, 16 August 2025

Roast 11 - cafemasy - Guatamala Antiguia & Ethiopia Limu

 Some roasting for a Guatamala Antiguia bean.


I'm using the Cafe Masy sample roaster

This is a air roaster

I'm slowly getting to know this roaster.
The temps displayed are not the internal bean temp
but still useful 












Guatemala Antigua coffee is a world-renowned, high-altitude Arabica (Bourbon, Caturra, Catuai) grown in mineral-rich volcanic soil between three volcanoes. 

It is characterized by a full body, velvety texture, and distinct flavor notes of chocolate, caramel, spices, and citrus.

Often classified as Strictly Hard Bean (SHB), this premium, shade-grown coffee is ideal for medium to dark roasts, making it excellent for espresso and pour-over.

Altitude: 4,600 – 5,600+ feet (1,400 - 1,700+ meters), classifying it as Strictly Hard Bean (SHB).

flavor Profile: Complex and rich, featuring chocolate, spices, caramel, and a refined citrus or floral acidity.

Growing Conditions: Volcanic soil, high altitude, and a distinct, dry climate, which helps produce consistent, high-quality cherries.

Roast Profile: Best suited for medium to dark roasts, which highlight its chocolate and smokey, spicy notes.


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Roast 11a - Guatemala Antigua coffee

I roasted in 3 stages
1. 197C for 3.5 mins
2. 202C for 6.5 mins
3. 227C for 2 min
















The total roast time (drop) = 12 min
Preheat @195C for 2 mins
Start: 100g
end : 87.1g 
water loss = 12.9g.  thus medium roast

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Roast 11b - Guatemala Antigua coffee


I roasted in 4 stages
1. 197C for 3.5 mins
2. 202C for 4 mins
3. 210C for 1.5 mins
4. 227C for 1.5 min















The total roast time (drop) = 10.30 min
Preheat @195C for 2 mins
Start: 100g
end : 89.5g 
water loss = 10.5 %  thus light-medium roast


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Ethiopia Limu is a premium, high-grown washed Arabica coffee from southwestern Ethiopia, widely regarded for its balanced, winey, and fruity profile. It features bright, citrusy acidity, floral overtones, and a smooth, full body. Often featuring notes of berry or chocolate, Limu coffee is highly consistent, making it excellent for single-origin espresso or pour-over. 

Key Characteristics of Limu Coffee
Flavor Profile: Typically presents a complex mix of fruit (berry, apricot), spice, and floral notes with a pleasant, sweet acidity.
Processing: Primarily wet-processed (washed), which results in a cleaner, brighter cup compared to natural-processed Ethiopian coffees.
Growing Region: Grown in the Western/Southern part of Ethiopia at high altitudes (1,500–1,800+ meters above sea level).
Body & Roast: Known for a balanced, full body that stands up well to medium or light roasting.

Limu is often compared to neighboring Yirgacheffe and Sidamo coffees but is distinguished by a slightly fuller, more robust body




Thursday, 14 August 2025

ROR rate of rise - intro

Coffee roasting is about exposing green coffee beans to an increasing temperature for a specific amount of time.
The graphical representation of the beam temperature at any given time during the roast is what we call a roasting profile.
Most roasting profiles look very similar, ... sometimes even identical.
This is a consequence of how all green coffee beans behave during a roast.
As soon as we drop green coffee beans inside of our roaster's drum, which is set to a preset temperature, we notice the temperature drops drastically as the beans absorb heat.

After this, the beans will start reaching an equilibrium represented by a steadily growing temperature.
During this  period we usually raise the gas & decrease airflow
After the first crack the beans will start radiating their own heat. So the airflow should be maxed out and the gas set to a minimum.
This is normal behavior and there is little we could do to change it.
The only thing we can control is a profile slope.
The slope represents the roast speed and is expressed in degrees per min. 
It is widely known as the Rate of Rise. 
A steep slope as a consequence of a high Rate Of Rise.
This is known to grant bright acidity to the beans.
Medium slope triggers sweetness, Aroma and fragrance.
A low slope is characterized by chocolate and nutty flavor notes .

Sometimes the differences on a roasting profile are so small they are hard to see or they overlap
with each other. 
For this reason there isn't a specific curve for the Rate of Rise.
It is expressed in degrees per minute.
During the beginning of the roast the ROR line usually disappears indicating the values are
negative or the temperature is lowering instead of rising.
After the Turning Point the rate of race becomes visible in the chart.
The normal tendency of the rate of rice is to be high at the beginning of the roast
and get lower as the roast progresses.
As a rule of thumb... a rate of rice lower than 10 is slow .
Between 10 and 15, its medium.
About 15 is a high rate of rise.

DRYING PHASE Targets
Start with a high ROR during the drying phase.... average of 15 or 16/min.
The aim is to dry the beans efficiently. Be cautious, don't go too fast as too much heat can scorch the bean surface and not dry the inside of the bean completely.
The ROR will commonly get into the mid 20's as it approaches the turning point.
It often peaks at the TP, (24-25/min) then starts to drop till it reaches dry-end.
I try to get to a ROR of about 15 at dry-end.

MAILLARD Targets
I like to start this phase at around 15/min and aim to drop it around to 5/min at 1st crack.
Aim for a ROR-level around 10°C per minute in the middle Maillard phase of the roast and around 5°C/min from when First Crack starts.
The ROR slope should get less steep during this phase.

DEVELOPMENT PHASE 
It is common to aim for a lower ROR at First Crack and during the development phase. 
Plan for the Exothermic Shift after yellowing (~160°C).
Remember that beans release their own heat. Reduce burner settings early to avoid ROR spikes.

Keeping a close eye on the rate of rise is important because it doesn't only
measure the quality of the rocks. It also measures your consistency and dexterity
as a roaster.
A smooth descending line indicates an uneventful roast and skillful roaster.
A choppy line indicates a dirty or maybe a defective temperature sensor, heat leakage or an
insecure operator.
Sudden changes in rate of Rise going upwards are called "flicks" and going downwards "crashes"
Flicks may result in Burnt, scorched, Rubbery and Toast notes while 
Crashes may cause flat & dull notes .

Keep in mind: ambient humidity, green bean density, and roaster type (drum vs. fluid bed) all influence how ROR behaves. Eg: air roasters generally don't have a turning point.

Monday, 28 July 2025

Behmor Roaster - general temps etc

Important nuance to note with your Behmor
The Behmor doesn’t directly display true bean temperature—it shows a chamber/wall temp. 
The actual bean temp isn't the sensor reading & the Behmor temps are nothing like what you'd expect from a standard drum roaster.

The Behmor uses an infrared quartz heating element that heats differently to a gas flame, hot plate, electric coil or air-convection. Quartz light provides near instant heat but unlike most heating elements it heats objects not the surrounding air. The infrared rays (similar to the sun) pass through the air and are absorbed by solid objects.

The Behmor roaster safety button requires users to press the START button  (or C button) within a 30-second window when the timer hits 75% completion (e.g., 2:30 remaining on a 10-minute roast), indicated by a flashing display. Failure to do so results in Error 7 (Err7) and an automatic, forced cooling cycle to prevent fire hazards.





🔥 Use Temp B (chamber) as your main reference
Why Temp B is better
+ It measures the air temperature in the roasting chamber
+ That’s closer to what the beans are actually experiencing
+ It responds more smoothly and predictably during the roast.
+ The B probe is attached below the drum chamber.
+ Most Behmor roasting guides and profiles are based on Temp B

🧱 Temp A is focused on measuring the exhaust temperature .
Exhaust temps are generally useful for measuring the momentum and total energy in a roaster, however Temp A doesn't seem to measure anything until latter in the roast cycle..
+ It is useful as a secondary safety indicator (e.g. overheating), but not for tracking roast stages.
+ The “A” temperature reading only becomes active midway through the roast when the fan kicks on. 

🎯 Practical takeaway
Track your roast stages (dry end, browning, first crack) using:
Temp B + time + sensory cues (smell, sound, colour)
Glance at Temp A only to make sure things aren’t running away too hot

🧠 Simple rule of thumb
Temp B = “what’s happening to the beans”
Temp A = “what the machine walls are doing”























🎯 Charging/Preheating

Charge temp
On a Behmor 1600 Plus Coffee Roaster, “charge temp” isn’t as tightly controlled as on a commercial drum roaster—but you can still think in terms of a preheat target (Temp B) before you drop the beans.

🔥 Good starting charge (preheat) temps:
The manual recommends:
 Press any weigh and then Start. Allow the system to run for up to 1:30 minutes. Press OFF,
insert roasting drum, tray and start your roast.

Use Temp B (chamber temp):
I pre heat to 104C-120C (220-250F).

+ Preheat with the chaff collector in (and if possible, the drum too).
+ Load beans quickly
+ Start on P1 or P2 (full or near-full power) in auto mode
    or P5 in manual mode.
Adjust based on goals:
+ Want more acidity / shorter roast → charge closer to 120C
+ Want more control / smoother profile → stay around 100°C

☕ What actually happens on Behmor
When you add beans, temp will drop hard (20–40°C)
Then it climbs back up as the roast progresses
So your “charge temp” is really about:
+ how much momentum you start with
+ how quickly you get through drying

⚠️ Behmor-specific quirks
Preheating too high (>150°C) can:
+ Trigger safety shutdown
+ Increase risk of scorching
As there is no direct bean temp probe → rely on:
+ time to dry end (~4–6 min)
+ time to first crack (~9–12 min)

🧠 Simple rule of thumb
Start around ~120°C Temp B, then adjust based on:
+ How fast you hit dry end
+ How soon first crack arrives

=================================================

🌡️ Dry End Temperature Range

~140°C to 160°C (302°F to 320°F bean temp equivalent)
Many Behmor users track dry end by time + visual cues:
Usually around 4–6 minutes into the roast (depending on batch size and profile)

===============================================
☕ Browning Phase (Maillard Reaction)

🌡️  temp (approx.).. B button
~140-150°C 

👀 What to look for
Beans shift yellow → light brown → cinnamon
Smell turns from hay → bread/toast → caramel
Surface becomes more matte and textured
===============================================
🔊 First Crack

🌡️  temp (approx.)
~141°C on the B probe.

👂 What to listen for
Distinct popping/cracking sounds (like popcorn, but sharper)
Beans visibly expand and shed chaff
Aroma becomes sweet, nutty, more “coffee-like”

==================
Afterburners.
Mid way through the roast there will be a temporary drop in the B temperature.
This is normal. The program is designed to have a fan come on to pull air/ smoke through the afterburners to burn off smoke and other impurities. 
When the afterburners come on, heat will be drawn over the beans and away from the sensor thus the reading on b drops.




===========================
Below are 2 examples of standard medium roast profiles.
They are useful guides as to what sort of temperatures the Behmor will read during a standard roast.

The first is a 200g roast. @ 200g setting.
I press the200g button, then P1 button + "start".
Then press P5  (to enter manual mode)
Note that in manual mode, P5 = 100% power.
(Temp: just using the B button - for chamber temp only)
Note that my max temp for this roast is 160C (The Behmor automatically shuts down at 170C)
so one of my goals is to keep the B temperature below this value.

Charge temp: 120C

Time    Temp B
00.00 : 120C (charge)
00.30 : 120C (press P5)
01.00 : 126C
01.30 : 132C
02.00 : 138C
02.30 : 145C
03.00 : 151C
03.30 : 157C (press P4)
04.00 : 162C (press P3)... I dropped temp to P3 to avoid the shutdown feature
04.30 : 163C
05.00 : 160C (@ 5mins the fan will start & the heat will start to drop, so I'll need to increase the power)
05.30 : 146C (press P5)
06.00 : 142C
06.30 : 146C = Dry End
07.00 : 148C (press P4) ... I'm gradually reducing the temp...you can also open the door to cool the roast
                                           Also use fast drum (this mimics air flow in a drum roaster)
07.30 : 148C (press p3)... I'm stretching out the browning phase by making sure the 
                                          temperatures aren't constantly increasing.
08.00 : 147C
08.30 : 142C (press P4)... increase the temp a bit.. stabilise the temp .. avoid crashes or peaks
09.00 : 141C
09.30 : 141C
10.00 : 141C
10.30 : 141C --- First Crack  
11.00 : 142C (you could press P3 or P2 to lower the temp if desired).
11.30 : 138C 
12.00 : 140C... exothermic reaction !
12.30 : 142C
13.00 : drop

------------------------------------------------------------

This is an example of one of my standard medium roast profiles.
This is a 100g roast. @ 200g setting.
I press the 200g button, then P1 button + "start".
Then press P5  (to enter manual mode)
Note that in manual mode, P5 = 100% power.
(Temp: just using the B button - for chamber temp only)
Note that my max temp for this roast is 160C (The Behmor automatically shuts down at 170C)
so one of my goals is to keep the B temperature below this value.
Another goal is to aim for a 50% drying ratio, 30% browning, 20% develop.
So accurately marking Dry End, FC, etc is impt.

Actual Charge Temp : 92C (B setting)
I preheated the drum & machine to 110C but lost some heat when I opened the door & dropped
the beans into the drum.

Time    Temp B
00.00 : 92C (charge)
00.30 : 93C (press P5)
01.00 : 100C
01.30 : 101C
02.00 : 102C
02.30 : 120C
03.00 : 137C
03.30 : 143C 
04.00 : 150C 
04.30 : 155C
05.00 : 157C  - fan kicked on. The A temp is available now.
05.30 : 162C    I pressed P4 to lower temp. 
06.00 : 158C = Dry End @ 5.40
06.30 : 157C 
07.00 : 156C .. I'm gradually reducing the temp...you can also open the door to cool the roast
                                           Also use fast drum (this mimics air flow in a drum roaster)
07.30 : 155C (I could press p3 but the temp seems pretty stable for now)... 
                      I'm stretching out the browning phase by making sure the temperatures aren't 
                      constantly increasing.
08.00 : 155C
08.30 : 142C (press P4)... increase the temp a bit.. stabilise the temp .. avoid crashes or peaks
09.00 : 144C
09.30 : 147C --- First Crack  ?
10.00 : 150C
10.30 : 152C Drop

If you intend to run the full cooling cycle  press "cool" on 1st crack since the roast will continue to develop while the hot chamber cools.

Friday, 16 May 2025

Choosing the right coffee Charge temp (& turning point).

Choosing the right coffee charge temperature involves balancing batch size, bean density, and roast level to hit a turning point around 45–90 seconds. 
It's the stored energy in the roaster that kicks things off.
A higher charge (>200C) suits denser beans, 
while lower charges (roughly 160C-180C) prevent scorching of low-altitude beans.
Decaf would call for a noticably larger batch size or lower charge temp.

The average charge temperature for a Hottop roaster typically ranges from 300°F to 375°F (149-190c) as measured by the Bean Temperature (BT) probe. While the manufacturer's automatic default is low (around 167°F or 75°C), experienced users often charge higher for better energy management, often around 350°F

Key Factors for Setting Charge Temperature:
+Bean Density: 
  High-density/high-altitude beans generally require a higher charge temperature
  to penetrate the bean core. 
   Lower density beans are prone to more roast defects (you need to be more gentle with the heat).
+Bean size & shape
   bigger beans take longer to roast.
   round or small beans move differently in the roaster - roasting more evenly and quickly.
+ moisture content
    Beans with a higher moisture content take longer to dry.
+Type of bean processing.
   Natural or honey processed usually have more sugars on the outside, so roast faster or scorch 
   if you are not careful.
   Washed coffees tend to roast more evenly.
 +Batch Size: Larger batches necessitate a higher charge temperature to provide 
  enough energy to the larger mass.
+Roast Level: Light roasts, which need a faster, shorter development time, often benefit 
  from a higher charge. 
  Espresso or darker roasts can start at a slightly lower charge to manage the heat needed
  for a longer roast.
+Roaster Environment: Ensure the machine is properly heat-soaked, usually with
  the environment temperature significantly higher than the drum temperature.
+Turning Point Indicator: The Turning Point (TP) is when the bean temperature 
   rises after being cooled by the charge

TP too fast (<45s): Charge temperature is too high.
TP too slow (>90s): Charge temperature is too low.
TP just right = 60 s (general rule of thumb)

Fine-Tuning Tips:
If your coffee tastes like it has "roastiness" or you observe scorching/tipping, decrease your charge temperature.
If your roast takes too long to dry (before the yellowing stage), increase the charge.
Naturals often perform better at a slightly lower charge to avoid over-roasting the exterior, while washed coffees can handle more heat.

Exhaust temperature
This is very impt as it indicates how much energy you have in the roaster & can be used to soak the beans. It will tell you if you have enough momentium in the roaster.
The Exhaust temp should be higher than the bean temp.
If the exhaust temp if aways higher than the bean temp then you will always have a positive ROR.
Towards the end of the roast, the two temps will meet .
The Exhaust temp is influenced by the drum speed and energy changes.
------------------------------------------------------------------------------------------------

HotTop roaster settings
+Optimal Range: 300°F–350°F (149°C–177°C) is commonly cited for a good balance,
   avoiding scorching while ensuring enough energy for the roast.
+Higher Density Beans: Use higher charge temperatures (approx. 375°F or 190°C) to 
  ensure enough energy enters the bean.
+Lower Density/Softer Beans: Use lower charge temperatures (approx. 325°F or 163°C) 
  to avoid scorching.
+Batch Size: For a 250g charge, 350°F is a common starting point. If reducing batch size 
  to 175g, some users increase charge temperatures to 390°F–410°F to maintain heat.
+Roast Style: Espresso roasts often use higher charge temperatures for more heat, 
  while lighter filter roasts might use slightly lower, faster-acting profiles



----------------------------------------------------------------------


Monday, 7 April 2025

Roasting 101

This post has some basic info on how to create profiles and roast coffee that
should get you started on this journey which will teach you so much about coffee.

Colour of the roasted bean.
This is a good place to start.
The colour of the coffee beans can range from an almost yellow color to a deep black.
The roast level is going to have a huge determining factor on how that coffee tastes.

The color of a coffee roast is a direct indicator of flavor, with lighter roasts being more acidic, fruity, and complex, while darker roasts are bolder, more bitter, and smoky. The roast color is the result of the roasting process, which uses heat to create chemical reactions that develop new flavors: lighter roasts have gone through fewer of these changes, preserving more of the bean's original characteristics, while darker roasts have undergone more browning and caramelization.

Light roasts (light brown to cinnamon)
Flavor profile: More acidic, brighter, and can have floral, fruity, or citrus notes.
Characteristics: Preserves more of the original coffee bean's characteristics. Acidity is more prominent.
Why: Roasted for a shorter time, often up to "first crack". 

Medium roasts (medium brown)
Flavor profile: Balanced, with a fuller body. Flavors can include sweetness from caramelization alongside some acidity.
Characteristics: Less acidic than light roasts, with a smoother, more balanced flavor. The surface of the bean is typically not oily.
Why: Roasted longer than light roasts, allowing for more sugar browning and caramelization.  

Dark roasts (dark brown to black)
Flavor profile: Bold, full-bodied, and can have notes of dark chocolate, nuts, toasty or smoke.
Characteristics: Little to no acidity and may have a slightly bitter aftertaste. The surface of the bean will be oily.
Why: Roasted for the longest time, with extended heat causing the natural sugars to caramelize and leading to more roasty, smoky flavors.

But roasting is so much more than just the color of the coffee beans.

Find a good supplier of raw coffee beans
Probably the most important factor going into your roast is the quality of
the green coffee beans. Your choice of green beans is super important.
Coffee beans are actually a seed that grows within a coffee cherry which is a
fruit.  The beans could be grown at anywhere in the world between 600 and 
2500 meters above sea level.
Plus, different growing and processing methods will have a huge impact on flavor.

So finding good importers is very important.

The first part of the selection process might be the country of origin but bear
in mind that different farms within the same country can have radically different flavors
depending on a lot of things including the processing method.

Keep in mind the processing method used in the country of origin and the age of harvest.
If you notice that the green beans you buy don't have a strong flavor or smell it could be that they're not
being properly stored by the importer . 
Just order small amounts of coffee from new suppliers first and see how this goes .

Processing Methods
There are many different methods but these are the most common ones:

Natural
The natural process is where the coffee cherry is laid out in the sun (usually in a warm
dry country where the coffee is produced). After a few weeks the cherry will come
off the coffee by itself when it's reached a certain moisture content.
These sort of processes often give a natural fruitiness.
Washed
The washed process is as the name implies when the coffee cherry is washed off the beans
and the beans are left out in the sun to dry without the cherry.
These processes have a really big effect on how the coffee is going to taste.
With natural processes tasting more fruity and earthy because they've been in contact with the cherry for longer and with a washed process tasting more clean and sharp.
Honey
The honey process is where the beans are de-pulped through a machine and then left out with the mucilage still on, in the sun or in a greenhouse. to naturally ferment for a few weeks until the bean reaches a certain moisture content. Depending on the conditions, you can get a really interesting middle ground between a natural processed fruitiness and the clean sharpness of a wash process.
Carbonic Maceration
Carbonic maceration is where the beans are put into an airtight container with
carbon dioxide pumped in to prevent oxidization. This leads to a kind of anaerobic fermentation that brings out some really unique flavors in coffee without the sort of mustiness that can
come from other processing methods . 

Structure of a Roast
A standard roast will look something like this  graph.

A standard coffee roasting graph, or roast curve, plots bean temperature (y-axis) against time (x-axis) to visualize the progression of a roast.

 It includes key markers like the start time, the first and second "cracks" (popping sounds), and the final temperature and time. 

While a universal curve doesn't exist, roasters use these graphs to control flavor development by creating a repeatable process that can be customized for different beans. 

The shape of this curve whether it's long and thin or short and sharp will completely change the taste of any coffee.

These are the different phases of roasting:

Charging 
At the start of the roast we have the charging phase.
This is when the beans go into the roaster.
But before we add the beans we need to heat up the machine to a good temperature
(called your charge temp).
Don't start from zero. You want to heat your roaster and idle at the temperature you intend to use for initial heating for at least a few minutes before you put the beans in.
As soon as the beans go in you'll see the temperature drop due to the cold beans going in and absorbing a lot of the heat.
Depending on your roaster and batch size you'll start your roast at at least 170 degrees C 
 (340 Fahrenheit).
The charge temperature can vary from machine to machine. 
The bigger the batch of coffee you're using, the higher the charge temperature should be.
So for example with a 100g roaster I usually start at between 170 to 190 degrees C
but for something bigger (like the Aillio Bullet) which is a one kilo roaster I might start 
somewhere between 180 and 200 degrees C
For a very large roaster at commercial scale something like 10 to 20 kilos it's safe to go up to 210
degrees C as there's a big enough mass of green beans to absorb the heat without burning the beans.

Ideally your machine will have a temperature probe inside and a way of tracking this on a graph .
Without a roasting graph it's pretty hard, though not impossible to achieve a good roast
and especially to replicate that roast.
The roaster temperature (air or drum temp) might be 200–250°C, but the bean mass takes time to catch up due to thermal inertia. The speed at which cold raw (green) coffee beans rise to the temperature of your coffee roaster depends on a few key factors like the Roaster type, Charge temperature, Batch size, Roaster power & airflow

There are three main types of heat transfer in roasting:
    a. Conduction (direct contact with hot surfaces)
    b. Convection (hot air)
    c. Radiation (infrared, etc.)

If you're using a fluid bed roaster (like a popcorn popper or hot-air roaster), the heat transfer is mostly convection, and the beans heat up faster.
If you're using a drum roaster, which relies more on conduction and convection, heat-up is slightly slower but more even.

🎯 Rule of Thumb
If you charge at ~200–220°C:
Beans typically reach 100°C within ~1–2 minutes
They’ll be close to roaster environment temp (~200°C) within 6–8 minutes, depending on batch size and airflow.

Turning Point
The point at which the temperature stops dropping and starts going up is called the turning
point.
I keep the power of the roaster to around 50% until the turning point so that the heat
doesn't go into the beans too quickly.
Letting the beans come up to temperature in a more ambient environment avoids
damaging the beans.
Once we hit the turning point at between 30 seconds and one minute of roast starting that's when I turn my heat up. 
Learn what your roaster can do and find the upper limit of how much temperature you 
can push without burning the beans.
Depending on the machine you have the power grade will be different.
For my small induction heat roaster I turn the power up to 95% but if you're using 
a gas roaster 100% will probably be too much power and you'll end up 
burning or scalding the beans .

Yellowing Phase
As you roast, the beans will turn from their natural greenish color to a yellow (and
eventually start browning).  This is sometimes called the "Dry End" phase
The yellowing phase progresses to the browning phase where
the moisture is low enough for Malliard reactions to start taking place (and
interesting flavors and aromatics start coming out of the beans).

First Crack
The next thing you'll be listening for is the first crack. This is where the pressure
buildup of gases will break through the structure of the coffee beans making a popping sound.
This is where the so-called development time begins (though this is a bit of a
misnomer as development occurs throughout the roasting process).
The longer the roast goes on the more caramelization occurs. You'll get more sweetness, body and
richness but this will be at the cost of the beans unique flavor.

Second Crack
As your coffee gets darker it will get more bitter and oily as the roasting process continues.
Eventually all coffees will burn and become pretty indistinguishable from one another.
I recommend keeping your development time to between 15 and 25% of your total roasting time.

Drop
At the end of the development phase, we have what is called "the drop".
This is where you remove the beans from the roaster and you start cooling them quickly.... ASAP .... ideally within four minutes to stop the transference of heat.

Once the roast has reached the desired level you can remove the beans from the roaster to stop the
roasting process.
This is know as "dropping the beans" and the associated temp is called the "drop temperature".
More than color, this is probably the best indicator of the final roast level.

Now all of this can happen in a short or long amount of time which will give
drastically different flavor results.  .... which leads me on to coffee roasting speed

Roasting Speed (Total Roast Time)
The speed of the roast is super important and if you roast your batch really quickly in general 
this is going to emphasize the innate characteristics of the bean.
If you're roasting for pour over or to accent fruity or floral notes you'll probably want to roast a little
bit faster.
This means using higher temperatures especially early on in the roast and dropping the beans earlier.

Different kinds of roasters will operate at different speeds. 
For example fluid bed roasters can heat coffee a lot more quickly than drum roasters without
the drawbacks of transferring too much heat to the bean too quickly (which can
result in scorching or tipping which is where the beans or the edges of the beans get burnt) 
You can slow down the roast by lowering the initial temperature and the rate of rise (which
will lead to more caramelization & sweetness). 

In his books about coffee roasting Scott Rao talks about how a smoothly declining
rate of rise is generally preferable for good coffee .
The rate of rise  (ROR) is an indicator of how quickly the temperature is rising.
You want a relatively fast the rate of rise in the beginning of the roast as you push through the drying
phase but you want to slow that down gradually as you enter the development phase 
to give the beans more time to caramelize without burning them.
If you just power through your roast at 100% you're likely to get burnt beans and you'll have
craters appearing after the first crack.
(Craters are what happens when heat escapes from the beam too quickly and creates these small holes
as they break through the structure of the beans).
So you'll want to slow down your roast in advance of the first crack .
This is why you need to gradually step by step lower the gas or power of your roaster.
I usually increase the temp in smaller steps as I want to keep the temperature increasing
(but at a slower rate) as I enter the development phase.

-----------------------------------


have the beginning of the "drying phase". 
This is where the beans will lose a lot of their  moisture.
This often occurs between four and eight minutes (depending on your roaster).
You usually start the browning phase after this , which is where the beans become sweet and aromatic.
Once we reach the first crack where you hear a popping sound . 
We now enter the "development phase" which is where the beans caramelize and add sweetness and body at the cost of high notes and aromatics.
If you continue the roast that you'll reach the second crack where the structure of the
bean really starts to degrade and you end up with toasty, smoky and even burnt flavors.
These are characteristic of darker roasts.


You have to do this carefully though because you don't want the roast to stall or crash.
Look at this roast curve here that dip in temperature right after the first crack is a crash.
It will probably make this roast taste less clear and exciting than without it.
In this case maybe the bean wasn't very dense and the heat coming from within
the beans wasn't enough to continue heating each other.
Stalling is where it takes too long to reach the first crack
You really really don't want this.
This means there isn't enough heat in the drum or coming from the beans
endothermically to continue the roast and it will end up with coffee that tastes unpleasant ...
even stale. It's not really possible to recover a roast that's stalled midway through so you'll
want to plan your roasts properly and get to know the beans that you're using this is why a lot of professional roasters use a sample roaster to test the beans before they go ahead and put
10 kilos into one of their big roasters.
This is more common with certain beans than others so be sure to test them out
and do a few different styles of roast and taste them side by side with a
cupping to compare.

Cooling, Storage & Blends
Once you drop your coffee beans you'll want to cool them as fast as possible.

you also need to leave your beans to degas
or lose the co2 from roasting for at least a few days before you store them


leave your beans for at least a week or so before you use them for brewing 


---------------------------------------------------

when roasting coffee beans is the temp inside the drum roaster different from the temperature of the beans?

Yes, the temperature inside the drum roaster is different from the temperature of the coffee beans, especially at the beginning and throughout the roasting process.

Here’s a breakdown of what’s happening:

🔥 Drum Temperature vs. Bean Temperature
Drum temperature (also called environment temperature or air temperature) is the temperature inside the roasting chamber — including the air and drum walls. This is usually measured by a thermocouple placed inside the drum, but not in direct contact with the beans.
Bean temperature is measured via a bean probe in direct contact with the beans. It shows how the beans are absorbing and reacting to the heat.

📈 Temperature Differences Over Time
At Charge (start of roast):
The drum temperature is much higher than the beans.
For example, the drum might be 400°F (204°C), while room-temperature beans are around 70°F (21°C).
When beans are dropped into the roaster, the bean temperature drops initially (a dip called the turning point), then begins to rise as the beans absorb heat.

During Roasting:
The drum/air temp remains higher than the bean temp.
The beans gradually catch up, but usually lag behind by 20–80°F (10–40°C) depending on the stage and roaster design.

Near First Crack:
Bean temperature is typically around 385–400°F (196–204°C).
Drum temperature may be higher or adjusted downward depending on roast style.

⚙️ Why This Matters
Controlling roast profile: You need to monitor both temps to shape the roast (e.g., development time, first crack timing).
Avoiding scorching or tipping: If drum temp is too high relative to bean temp early on, surface damage can occur.
Heat transfer methods: Different roasters (drum, fluid bed, hybrid) transfer heat via conduction, convection, and radiation — the relationship between bean and drum temp varies accordingly




Thursday, 19 December 2024

Roast 10 - CafeMasy air roaster - Peru HB Caijsa Organic

Today I'm using a "Peru HB Caijsa Organic" .
This is a specific type of Peruvian organic coffee, often wet-processed, known for its clean cup, bright acidity, and flavor notes of fruit (like papaya), florals, citrus, and rich cocoa.

These beans are frequently sourced from cooperatives like Valleinca or through programs like Café Femenino.This batch comes from The 
Cooperative Agroecologica Industrial Juan Santos Atahualpa (CAIJSA).

Juan Santos Atahualpa Cooperative
was founded on October 16, 2011 with 20 partners; currently with 586 producers distributed between Pichanaki, Perené, Río Negro, Pangoa, Río Tambo and Puerto Bermúdez.
These beans are ethical sourced in high Andean regions. 
It's a popular choice for single-origin roasts, offering a balanced, smooth, and rich taste profile. 

Key Characteristics:
Origin: High Andean highlands of Peru.
Processing: Typically wet-processed (washed).
Certifications: Often certified Fairtrade and Organic.
Flavor Profile: Clean, bright, with hints of papaya, citrus, nuts, chocolate (milk/dark), stone fruit, and floral notes.
Body & Acidity: Moderate body, bright acidity, smooth finish.
Varietals: Caturra, Typica are common. 

What "HB" might mean:
It could stand for "High Grown" or "High Altitude," common in Peruvian coffee descriptions.
It might also refer to a specific cooperative or estate, like "Peru Grace Estate". 

In Summary:
You're looking at a high-quality, ethical, single-origin Peruvian coffee that delivers a complex but clean and sweet cup, often with chocolatey and fruity undertones, perfect for various brewing methods. 
These beans are small & very dense.


The roaster is a basic Cafe Masy air (fluid bed) roaster.
I've tried with mixed success to place temperature probes  so am attempting this just using sight, sound, smell.

The roaster has a 15min timer so I'll use this.

This first roast used 100g. 
I preheated at 185C for 2 mins.

I'm not sure if the temperature readings on the roaster are 
accurate so I'll just use them as a guide.

Bean movement is really impt. If the beans aren't moving around they can burn. There are 3 fan settings which you can use to increase bean movement, or
Use less coffee to improve bean movement.


The process:

Drying stage
Track the progression of the roast by looking at the bean colour.
The bean colour starts with a dark green shade.
When it gets to the drying stage it changes to a yellow.
When the beans go "full yellow" we have reached the end of the drying phase.
When the beans are green you often smell "wet grass". 
As they dry you  will probably smell "dry grass". You will also often smell "sweetness".

Browning Stage
The next stage is the browning stage. You will smell "baked goods", like biscuits straight from the oven.
You will also see that the beans get larger in size. They swell as they dry.
So they should occupy more "height" or volume in your roaster.
The beans are also lighter, so they should be thrown higher in the roasting chamber.
We are approaching 1st crack. You might smell vinegar/ acid.
If you like fruity, citrus, floral notes drop the coffee just after 1st crack.
If you like more chocolate, caramel, sweet notes, continue roasting.
You should see the bean mass really moving as they are much lighter 

---------------------------------------------------------------------------------

1st attempt
This is my plan: (Light roast)
Preheat 185c for 2 mins (charge)
Drying phase : 6 mins @ 185C -- too long? aim for 4 mins in future?
Browning phase: 5 mins @ 200C
Development phase : 4 mins @ 205C
Total time: 15 mins.

Result: 

89.1g output = 10.9% water loss.
Light roast !










-------------------------------------------------------------------------------------------------
My 2nd attempt. (Light-Medium roast)

This is my plan:
Preheat 185c for 2 mins
Drying phase : 5 mins @ 185C
Browning phase: 6 mins @ 200C
Development phase : 4 mins @ 215C
Total time: 15 mins


Result: 

87.7g output = 12.3% water loss.
Light-medium Roast !

I really like this level of roast .
(though I think the development time could be reduced).









---------------------------------------------------------------------------------------------------------
3rd attempt (Medium roast)

This is my plan:
Preheat 190c for 2 mins
Drying phase : 5 mins @ 190C
Browning phase: 5 mins @ 200C
Development phase : 4 mins @ 220C
Total time : 14 mins


Result:

100g start
86.2g end
13.8 % water loss
Medium roast.. 






--------------------------------------------------------------------------------------------
4th attempt - medium

This is my plan:
Preheat 195c for 2 mins
Drying phase : 6 mins @ 195C
Browning phase: 4 mins @ 200C
Development phase : 3 mins @ 225C
Total time : 13 mins


The result:

100g start
86.2g end
13.8% water loss
medium roast








-----------------------------------------------------------------------

5th attempt - extra dark

This is my plan:
Preheat 195c for 2 mins
Drying phase : 4 mins @ 197C
Browning phase: 6 mins @ 210C
Development phase : 3 mins @ 230C
Total time : 13 mins


This went too long and the result was toasty
Start 100g
End: 82.9
thus 16.1% water loss

I think the end of the drying phase was closer to 3.30min
First crack was at 9mins. 
I think browning should be 4-5 mins.
Development could have been cut to 2 mins (not 3)

---------------------------------------------------------------------------------

6th attempt - medium

This is my plan:
Preheat 195c for 2 mins
Drying phase : 3.5 mins @ 197C
Browning phase: 4.5 mins @ 207C
Development phase : 2 mins @ 227C
Total time : 10 mins


Full yellow @3.40min
1st crack - 7.30 min

start- 100g
end 87.1g ............... 12.9% water loss.

Medium roast
-------------------


Roast 7 - dark roast



Cafe Masy air roaster










preheat @195 for 2 mins
Peruvian Caija

Stage 1 : 197 for 3.5 mins
stage 2  : 207 for 5.5 mins
stage 3  : 227 for 4 mins

Start 100g
End 84.7
thus 15.3 % water loss

Too dark??



-----------------------------------
Roast 8 - medium roast





Cafe Masy air roaster















preheat @195 for 2 mins
Peruvian Caija


Stage 1 : 197 for 3.5 mins
stage 2  : 207 for 6.5 mins
stage 3  : 227 for 1.5 mins

Start 100g
End 86.8
thus 14.2 % water loss

I really like this roast level.