Pilot Plant Development
The first biochar plant, built on land already identified within the Fergana Valley, converting regional cotton residue.
View program progress →SmartCarbon partners with national and regional governments to convert agricultural residue into biochar — restoring salt-affected farmland while generating verified, durable carbon removal credits.
Government-partnered biochar plants that convert local agricultural residue into a stable, carbon-rich material.
By pairing proven pyrolysis technology with transparent monitoring, we turn a waste-management problem into a durable carbon removal asset — one that is verifiable, exportable, and built to be replicated across every cotton-growing region in the country.
A single, fully de-risked pilot plant in the Fergana Valley — with land, feedstock, and government support already in place.
Every stage — feedstock origin, process conditions, and biochar output — is logged to support monitoring, reporting and verification (MRV) for carbon-credit issuance.
Cotton stalks, wheat straw and orchard residue gathered from contracted local suppliers.
Biomass dried, sorted and sized for stable, continuous reactor feed.
Residue heated in a low-oxygen chamber, converting it into biochar and process gas.
Biochar cooled, lab-tested, and prepared for soil or industrial application.
Records compiled against the chosen registry methodology for credit issuance.
Each program is designed to work independently while feeding the same national MRV and registry infrastructure.
The first biochar plant, built on land already identified within the Fergana Valley, converting regional cotton residue.
View program progress →Biochar application designed for salt-affected irrigated farmland, developed alongside regional agricultural authorities.
View government partnership →A monitoring and verification framework built to meet the requirements of leading durable carbon-removal registries.
Read the registry FAQ →The foundational risks in a project like this are land, feedstock, and government alignment. Here's exactly where each one stands today.
Government and institutional partners get documentation they can act on, not just projections.
Land allocation and supply agreements are available for review, not asserted without evidence.
Request documentation →Monitoring architecture built against the data requirements of the registry we ultimately select.
See registry approach →Developed alongside regional and national agricultural policy, not around it.
See government partnership →Salinity remediation programs are typically cost centers. Because biochar production can also generate verified carbon-removal credits, the same infrastructure that restores farmland can fund its own long-term monitoring and reporting.
The Fergana pilot is structured as a standalone project, separate from the long-term national rollout — giving partners a clear, contained entry point before committing to scale. Structural and financial terms are shared directly with qualified partners under a data-room agreement.
What convinced our office to move forward wasn't the pitch — it was that the land and feedstock questions were already answered before the first meeting.
Biochar is a stable, carbon-rich material produced by heating agricultural residue in a low-oxygen environment, a process called pyrolysis. Instead of that residue decomposing or being burned, its carbon is locked into a solid form that can remain stable in soil for a long period, while also improving soil structure and water retention.
Uzbekistan combines a large, seasonal supply of agricultural residue with a significant share of irrigated farmland affected by salinity. That pairing of available feedstock and real land-restoration need, alongside engaged regional government partners, makes it a strong location for a first biochar program.
The program has already secured several foundational milestones: a memorandum of understanding with regional government, land allocated inside a Special Economic Zone, and a signed feedstock supply guarantee. The current focus is on technology selection, certification pathway confirmation, and pilot plant implementation.
SmartCarbon is evaluating several durable carbon-removal registry pathways, including Puro.earth, Isometric, Verra's VM0044 methodology, Gold Standard, and the European Biochar Certificate. A primary registry is selected based on monitoring requirements, buyer recognition, and fit with the project's data infrastructure.
Government bodies and institutional partners can request a program briefing covering land and feedstock arrangements, the technical feasibility framework, and the certification pathway under consideration. Use the contact form below to request a briefing.
Feedstock planning accounts for existing uses of each residue type, such as animal bedding or fuel, and sources primarily from residue that is otherwise burned or left unmanaged in the field. Supplier agreements are structured around locally available surplus rather than displacing existing uses.
Whether you're a government partner, an institutional investor, or a research collaborator — start with a program briefing.