Enhanced Rock Weathering (ERW) and in-situ mineralisation, plus agri-enabled decarbonisation through ERW, biochar and regenerative agriculture - managed end-to-end.
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Every capability below runs through SYNE Carbon's seeker-provider network, with SYNE's own advisory available end-to-end.
Crushed silicate rock applied to land, accelerating natural carbon mineralisation with soil health co-benefits.
Direct mineralisation of CO2 into stable rock formations, for mining and industrial applications.
ERW, biochar and regenerative agriculture deployed together as a single farmer-facing program.
Biochar production and land application, sequestering carbon and improving soil health.
Crushed silicate rock applied to agricultural or industrial land, accelerating natural carbon mineralisation while delivering soil health co-benefits.
Applies crushed silicate rock to land, accelerating natural mineral weathering to remove atmospheric CO2.
Deploys ERW specifically across farmland, combining carbon removal with soil health co-benefits.
Applies ERW to industrial land not used for agriculture, focused purely on the removal pathway.
Uses mine tailings - already crushed and exposed - as the substrate for accelerated carbon mineralisation.
Structures verified ERW removal tonnes into a tradeable carbon credit.
Direct mineralisation of CO2 into stable rock formations, explored particularly for mining and industrial site applications.
Injects CO2 into suitable rock formations, converting it into stable mineral form underground.
Combines geological CO2 storage with active mineralisation for permanent removal.
Applies in-situ mineralisation to CO2 captured from an industrial process on the same or nearby site.
Uses existing mine geology and infrastructure as a host site for CO2 mineralisation.
Focuses specifically on removal pathways with multi-century to permanent storage duration.
ERW, biochar and regenerative agriculture practices deployed together as a single farmer-facing program, not three separate initiatives.
Applies regenerative practices across farmland to rebuild soil organic carbon while maintaining yield.
Structures carbon removal as a direct, verifiable revenue line for the farm business.
Measures and credits soil organic carbon gains from changed farm management practices.
Deploys ERW and biochar together on the same land as one combined removal program.
Combines carbon removal with resilience-focused farming practices suited to a changing climate.
Structures a multi-farmer program into a single, verifiable carbon credit issuance pathway.
Biochar production and land application, sequestering carbon while improving soil water retention and fertility.
Pyrolyses biomass into biochar, locking carbon that would otherwise decompose and release as CO2.
Converts suitable waste biomass into biochar rather than sending it to landfill or open burning.
Applies biochar to farmland, combining carbon storage with soil fertility and water retention benefits.
Measures and credits the long-term soil carbon storage delivered by biochar application.
Structures verified biochar carbon storage into a tradeable removal credit.
Focuses on biochar's multi-decade to century-scale storage stability as the basis for credit issuance.
SYNE's own advisory on methodology selection and Project Design Document development, aligned to the standard the project will be verified against.
Advises on which carbon methodology actually fits a project's specific removal or avoidance pathway.
Aligns a project to the requirements of the specific carbon registry and standard it will be verified against.
Establishes the counterfactual baseline and demonstrates that the project's impact is genuinely additional.
Develops the formal PDD required before a project can proceed to validation.
Prepares the evidence package a third-party validator or verifier will actually need to review.
Supports a project through to formal credit certification and issuance under the selected standard.
Direct Carbon Sequestration is one of four physical domains SYNE Carbon connects seekers and providers across - see the full ecosystem, case studies and the Vivent ERW spotlight on the main SYNE Carbon page.
Every project on this page can be delivered through any of these three approaches, matched to what actually suits the site.
Working with existing land and ecosystems rather than new industrial infrastructure.
Explore Nature-BasedPurpose-built infrastructure and process engineering for engineered outcomes.
Explore Technology-BasedTechnology-enabled processes applied at nature-based scale, combining both approaches.
Explore HybridImplementation partners and technology providers in Enhanced Rock Weathering, in-situ mineralisation, agri-enabled decarbonisation and biochar can join SYNE Carbon's partner network to get matched with seekers actively looking for proven delivery capability - vetted once, then visible to every relevant project.
Whether you're seeking a project or offering implementation capability, SYNE can manage the match end-to-end.