
Franco Berruti (left) and Stephanos Horvers, two of the three co-founders of ITER Technologies, examine the chemical composition of biochar in the lab at Western’s Institute for Chemicals and Fuels from Alternative Resources. (Colleen MacDonald/Western News)
Biochar technology converts waste to value
ITER takes agricultural waste such as stems, shells, husks and other crop residue and converts it into biochar, a charcoal-like substance. When biochar is added to soil, it retains nutrients, supports micro-organisms and improves plant growth. It sequesters carbon from the plant material that would have otherwise been released into the atmosphere during decomposition. Biochar’s stability keeps the carbon in the soil for hundreds of years. When added to animal feed, it decreases methane generation.
Biochar made from hazelnut shells is one way ITER Technologies turns agricultural waste into a valuable product that also captures carbon. (Colleen MacDonald/Western News)
Scaling biochar technology through global partnerships
Their design was turned into a small prototype reactor with the help of Western’s University Machine Services. Once the prototype was successfully producing biochar, the team needed an industry partner to scale up. Ordoñez drew on his strong ties in Colombia, leading to ITER’s partnership with JCT Calderas, a Colombian manufacturer with decades of experience building equipment for processing biomass. “With their experience in combustion and our experience in pyrolysis, we thought it was the perfect marriage,” Berruti said. “We teamed up with them in March 2024 to build a commercial-size demo of our technology in Colombia. In just four months, we had a design. A year later, we went down to see the ‘Valentina’ reactor in action.”
The team from JCT Calderas in Colombia helped build and refine Valentina, the prototype reactor that brings ITER’s biochar technology to commercial scale. (Submitted)












