Industrial Carbonization Systems for Biochar or bio-carbon & Thermal Processing
scale manufacturing.
GreenPower is an international engineering company specializing in industrial biomass pyrolysis and carbonization systems.
We design and manufacture complete thermal processing solutions, including pyrolysis units, raw material drying systems, combustion devices, and automated control systems (ACS) for precise process management.
Our portfolio includes mobile carbonization unit (EKKO-2iq), continuous dry pyrolysis systems (BIO-Carbon), and integrated supporting equipment designed for stable, high-capacity industrial operation.
GreenPower combines in-house engineering, manufacturing, and applied research in biochar and emission reduction technologies. With over 20 years of expertise and internationally protected solutions, we deliver reliable systems aligned with global industrial and environmental standards.
GreenPower’s PARTNERSHIP program allows selected partners to establish production of GreenPower carbonization equipment in their regions. Partners receive marketing and manufacturing support, technical documentation and access to selected GreenPower technology packages, including: mobile "EKKO-2iq", modular "Multi-ECO" pyrolysis units and "BIO-Carbon" continuous carbonization systems, depending on the production scales and technical tasks.
Detailed description
Feedstock Preparation and Carbonization Concept for Production of Metallurgical Charcoal for FeSi 1. Mechanical Strength of Metallurgical Charcoal and the Importance of Minimizing Fines For FeSi production, the size of the charcoal fraction is important; however, the key technical parameter is the mechanical strength of the charcoal and its ability to withstand transportation, storage, handling,
BIO‑CARBON‑3 meets the key engineering requirements of the EBC standard for pyrolysis plants when using pyrolysis gases and control modes: 1) The principle of handling pyrolysis gasesThe BIO-CARBON-3 utilizes a design that prevents pyrolysis gases from being released into the atmosphere without treatment: all steam and gas are directed to a high-temperature, two-stage afterburner. This
1. “Dry” Pyrolysis Process: Clean and Efficient All GREENPOWER systems are based on dry pyrolysis technology, which eliminates the formation of liquid by-products (such as wood tar and pyrolysis liquids) as production waste. All pyrolysis gases are directed to the combustion chamber and then to the afterburner, generating thermal energy required to sustain the process.
In charcoal and biochar production, downtime is often treated as inevitable. Batch systems require cooling, unloading, reheating, and operator intervention between cycles. Each stop reduces effective output, increases labor costs, and creates variability in product quality. Continuous production changes the economic model. BIO-CARBON, developed by GREENPOWER, operates 24/7 without technological stops. The carbonization process is
Along the fibers
The external layers of wood dry much faster than the internal ones. When thick and damp logs are quickly dried, the external layers are dry, while the internal layer are just beginning to lose moisture.
As a result, the drying of wood is uneven. This causes the formation of cracks in it, extending from the
external surface inward along the radius. Cracks in wood are also formed due to faster drying of the heartwood compared to sapwood.
Due to intensive moisture removal from wood. To avoid the formation of cracks, it is necessary to lower the temperature of the heat carrier for drying and increase the drying time.
Excess heat is taken directly from the chimney after the afterburner. The temperature in the chimney can reach 800-1200°C, atmospheric air is used to lower the temperature. That is, the heat is diluted with cold air, as a result of which the temperature of the heat carrier drops to the required one. This process occurs automatically, the operator only sets the required temperature.
The generated heat carrier can be used for chamber dryer, drum dryer or shaft dryer.
Excess heat is taken directly from the chimney after the afterburner. At the same time, the better the wood was dried, the more excess heat will be for pre-drying, that is, the drying will be more efficient. We recommend first drying the wood in a pre-dryer, and then loading it into the carbonization chamber when starting work on the kiln. It should be noted that the temperature in the chimney can reach 200-1200°C, atmospheric air is used to lower the temperature. That is, the heat is diluted with cold air, as a result of which the temperature of the heat carrier drops to the required one. This process occurs automatically, the operator only sets the required temperature.
The generated heat carrier can be used for chamber dryer or direct drying in trolleys. Chamber dryer significantly increases the efficiency of wood drying, in comparison with trolleys.
EKKO-2 is a semi-continuous chamber carbonization (slow pyrolysis) unit equipped with two technological chambers. The process is based on controlled heat supply and the complete neutralization of pyrolysis gases. The thermal energy generated during the neutralization of pyrolysis gases is used for drying the feedstock and maintaining the pyrolysis process, which reduces the need for additional fuel once a stable operating mode is reached.
The main purpose of the EKKO-2 fixed-bed pyrolysis unit is the production of lump charcoal with a minimal content of fine fractions.
A. Processes outside the pyrolysis Unit:
B. Processes inside the pyrolysis Unit:
*Transitions between modes occur according to the ACS algorithms and/or by the operator’s decision;
Pre-drying mode: control of the maximum allowable drying temperature of the feedstock, preventing the onset of pyrolysis reactions in the material;
Typical pyrolysis chamber modes: “DRYING”, “PYROLYSIS START”, “PYROLYSIS END”, “CHARCOAL READY”, “RELOADING”.
BIO-CARBON is a vertical moving-bed unit for continuous dry carbonization of biomass. Based on patented technology and full automation, the unit is an industrial asset that produces:
• High-quality charcoal with fixed carbon content (Cfix) from 82% to 95%
• Biochar for agricultural applications
• Industrial charcoal for metallurgy, activated carbon production, semiconductors, and silicon production
• High-potential thermal energy as a by-product
The unit operates 24/7 without technological shutdowns and ensures environmentally friendly production through full neutralization of pyrolysis syngas.
The main advantages of BIO-CARBON include:
There are two main unit models, differing in capacity and dimensions:
| Model | Productivity (t/month) | Productivity (t/year) | Energy consumption (kW/h) |
| BIO-CARBON-2 (BС-2) | 40-70* | 440-770 | 8 |
| BIO-CARBON-3 (BС-3) | 80-120* | 880-1320 | 13.6 |
*Note: productivity is specified for a fixed carbon content (Cfix) 82-95%
GreenPower unit is officially operated in more than 39 countries worldwide, including countries in Europe, Asia, Africa, South America, and North America. The unit has obtained environmental operating permits in all of these regions.
The productivity of BIO-CARBON depends on the following key factors:
- At Cfix 80–85%: up to 120–140 t/month
- At Cfix 90–95%: up to 80 t/month
Our engineering team will review your requirements and propose the appropriate system.