Engineering that has held up in operation, not just on paper.
Most equipment sellers ask you to trust a spec sheet. We're asking you to trust a team that has run this exact technology in commercial operation — the same people who designed it are the ones who commissioned, operated, and optimized it.
That's the difference between engineering on paper and engineering that holds up.
Biomass Pyrolysis
Designed and operated by a team that ran this technology themselves before offering it for sale.
Torrefaction Plant
Torrefaction is mild pyrolysis — biomass is heated in a low-oxygen environment to around 200–300°C, just enough to drive off moisture and volatiles without fully carbonizing the material. What comes out is torrefied biomass: denser, more uniform, hydrophobic, and with a higher calorific value than raw biomass — easier to store, grind, and transport, and a straightforward drop-in substitute for coal in co-firing applications.
Steam Dryer
Conventional biomass dryers run on direct hot air or flue gas — effective, but it comes with real trade-offs: high energy loss, oxidation and fire risk on combustible material, uneven moisture reduction across a batch, and odor or emissions that need separate handling. A steam dryer avoids direct flame or combustion-gas contact entirely. Moisture is removed using closed-loop process steam, which means gentler, more even drying, no oxidation or fire risk, and lower energy loss — output at a consistent moisture spec, ready for downstream processing.
Modular CBG System
Compressed Biogas (CBG) is renewable methane produced by upgrading biogas from organic waste. Our 50–1,000 kg/day skid-based systems enable distributed production close to the feedstock source, with modular capacity and simpler deployment.
24 TPD Biomass Pyrolysis
Designed and operated by a team that ran this technology themselves before offering it for sale.
TP 24 at a glance.
Beyond the spec sheet.
What separates the TP 24 from a design on paper — certification, real-world operation, feedstock adaptability and emissions readiness for the geographies you're building in.
Proven in commercial operation
This system has been run in real production conditions, not just engineered on paper — with the same people who designed it responsible for keeping it running.
Engineered for a range of residues
Engineered to process a range of agricultural and biomass residues. Currently validated output shown for cashew shell cake — talk to us about your specific feedstock.
CPCB-compliant, adaptable elsewhere
Designed and tested to meet Indian CPCB emission norms. For projects in other regions, our engineering team works with clients to assess and adapt the system to local emissions requirements, including EU and country-specific standards.
Torrefaction Plant
Torrefaction is mild pyrolysis — biomass is heated in a low-oxygen environment to around 200–300°C, just enough to drive off moisture and volatiles without fully carbonizing the material. What comes out is torrefied biomass: denser, more uniform, hydrophobic, and with a higher calorific value than raw biomass — easier to store, grind, and transport, and a straightforward drop-in substitute for coal in co-firing applications.
Steam Dryer
Conventional biomass dryers run on direct hot air or flue gas — effective, but it comes with real trade-offs: high energy loss, oxidation and fire risk on combustible material, uneven moisture reduction across a batch, and odor or emissions that need separate handling. A steam dryer avoids direct flame or combustion-gas contact entirely. Moisture is removed using closed-loop process steam, which means gentler, more even drying, no oxidation or fire risk, and lower energy loss — output at a consistent moisture spec, ready for downstream processing.
Interested in our technologies?
Send us your feedstock and site details and we'll come back with a full spec sheet, indicative timeline, and a call with the engineers who built it.
