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· Chemical Engineering Online
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Dioxycle, a French-American startup, is scaling up an electrochemical platform that converts industrial by-products—especially captured CO2—into critical chemicals using low‑carbon electricity, reducing dependence on fossil-fuel imports. Its first commercial focus is a single-step CO2-to-formic-acid process now being deployed with significant industrial backing to help decarbonize chemical supply chains.

Which applications or markets do you think will adopt CO2-derived formic acid first, and what barriers—cost, infrastructure, or policy—must be overcome for broad deployment?

New electrochemical route to critical chemicals is scaling up with significant industrial support

This article was originally posted on chemengonline.com.

A new electrochemical process developed by French-American startup firm Dioxycle produces critical chemicals from industrial by-products and electricity, independent from fossil-fuel imports. Recently, the company announced the deployment of their platform for the conversion of captured CO2 into formic acid in a single step using low-carbon electricity.

The post New electrochemical route to critical chemicals is scaling up with significant industrial support appeared first on Chemical Engineering.

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