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Solutions for Sustainable Aviation Fuel & Biofuel Producers

A Carbon Intensity score built for the audit, not the press release

The value of sustainable aviation fuel and sustainable biofuel depends on a verified Carbon Intensity score that withstands regulatory scrutiny. Our platform provides field-level carbon measurement and traceability to validate the carbon intensity of fuels from the start.
This enables reliable carbon certification and supports carbon neutral certification, strengthening credibility in evolving low carbon fuel markets.

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Sustainable aviation fuel carbon intensity score backed by field data

From field data to a bankable Carbon Intensity score

We deliver granular carbon measurement and traceability across your feedstock supply chain. This enables accurate validation of the carbon intensity of fuels, supporting low carbon fuel claims and strengthening eligibility for sustainable aviation fuel and biofuel markets.

Sustainable aviation fuel documentation for IRA 45Z and 40B compliance

Clarity for IRA 45Z and 40B

Our platform provides auditable documentation and carbon measurement to validate the carbon intensity of fuels for sustainable aviation fuel and sustainable biofuel. By aligning data with regulatory frameworks, we simplify carbon certification and support compliance in low carbon fuel markets.

Sustainable aviation fuel carbon measurement supporting investor confidence

Carbon ROI, beautifully uneventful.

By delivering verifiable, science-based proof of your feedstock’s sustainability performance, we de-risk your entire project. Reliable carbon measurement and transparent data flows strengthen investor confidence, support carbon neutral certification objectives, and reinforce the long-term viability of your low carbon fuel strategy.

Complexity, managed

We replace spreadsheets and fragmented data silos with a unified carbon measurement platform. By consolidating data collection across multiple fields and suppliers, we create a single, reliable source of truth that supports carbon certification, carbon intensity validation, and scalable sustainable biofuel operations.

We de-risk carbon projects with rigorous science, solid data, and lower costs.

01

Smart Sampling Design

We begin by optimizing the sampling layout using uncertainty-driven design and our own stratification + DSM layers to ensure every sample adds maximum information value.

02

High-Resolution Field Mapping

ChrysaLabs probes provide dense, rapid in-field measurements that map soil variability in real time, strengthening strata boundaries and reducing required lab samples.

03

Automated Data Management & Traceability

All probe, lab, and spatial data flow into our automated data pipeline, ensuring seamless QA/QC, version control, and project-ready documentation at scale.

04

Advanced Modelling & Predictive Accuracy

Our modelling framework integrates probe signals, lab carbon, and geospatial features to produce highly accurate carbon predictions while minimizing statistical uncertain

05

Profit Maximization & Uncertainty Reduction

By combining optimal design, dense field mapping, strong data infrastructure, and high-performance modelling, we deliver lower uncertainty, higher carbon estimates, and ultimately greater credit revenue for the

Analyst report: the rise of the next generation of carbon credits

Read our report on the state of the carbon credit market and what is driving confidence and buyers towards high-integrity assets

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Let’s talk soil carbon data for real carbon asset decisions

FAQ Sustainable Aviation Fuel

How does ChrysaLabs improve the accuracy of our Carbon Intensity (CI) score?

A CI score is only as strong as the field data behind it. We measure soil carbon directly at the feedstock level, depth-resolved and field-specific, rather than relying on regional defaults or modeled emission factors. That tightens the uncertainty in your CI calculation and gives you a score that holds up under audit.

Does this help with IRA 45Z or 40B compliance regulations specifically?

Yes. Both 45Z and 40B require documented, defensible feedstock carbon data to support the credit calculation, and our field measurement and reporting are structured to provide exactly that kind of audit-ready documentation.

Our feedstock comes from many different farms and fields. Can your platform handle that scale?

Yes, that's the typical use case. Our automated data pipeline consolidates probe, lab, and spatial data from many fields and suppliers into one consistent dataset, instead of leaving you to reconcile spreadsheets from each source separately.

How does better carbon data affect investor or buyer confidence in our project?

Investors and fuel buyers increasingly ask what's behind a CI score before committing capital or signing supply agreements. Verifiable, field-level carbon data de-risks that conversation by giving them a documented basis for the number, rather than asking them to take a modeled estimate on faith.

What’s the difference between using ChrysaLabs and relying on default emission factor lookup tables?

Default lookup tables apply broad regional or crop-level averages to every feedstock supplier, regardless of their actual practices or soil conditions. ChrysaLabs replaces those defaults with direct, field-level measurement, which almost always reveals a more favorable and more defensible carbon intensity, especially for growers using practices that improve soil carbon.