<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Carbon-Management on Bioecon</title><link>https://en.bioecon.ru/oecd/carbon-management/</link><description>Recent content in Carbon-Management on Bioecon</description><generator>Hugo</generator><language>en-US</language><lastBuildDate>Sat, 11 Jul 2026 00:44:53 +0700</lastBuildDate><atom:link href="https://en.bioecon.ru/oecd/carbon-management/index.xml" rel="self" type="application/rss+xml"/><item><title>Bio-cementation &amp; MICP materials</title><link>https://en.bioecon.ru/technology/bio-cementation-micp-materials/</link><pubDate>Sat, 11 Jul 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/bio-cementation-micp-materials/</guid><description>Microbes and mineral carbonation bind aggregate into cement at room temperature — replacing the 1,500-degree kiln that makes Portland cement responsible for roughly 8% of global CO2 — turning concrete into a carbon-negative climate asset sold as tiles, self-healing structures and CO2-derived aggregates.</description></item><item><title>Biochar pyrolysis equipment &amp; process</title><link>https://en.bioecon.ru/technology/biochar-pyrolysis-equipment/</link><pubDate>Sat, 11 Jul 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/biochar-pyrolysis-equipment/</guid><description>The reactor and balance-of-plant hardware that carbonises biomass into biochar plus heat and power — modular continuous carbonisers, biomass-cogeneration-coupled pyrolysis, and batch or mobile units — supplied by specialist manufacturers whose equipment is what makes certified biochar carbon removal physically possible.</description></item><item><title>Biochar carbon removal</title><link>https://en.bioecon.ru/technology/biochar-carbon-removal/</link><pubDate>Fri, 10 Jul 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/biochar-carbon-removal/</guid><description>Pyrolysing biomass into stable biochar — or fast-pyrolysis bio-oil injected underground — turns atmospheric carbon into a durable, monetisable climate asset, with soil-amendment value and certified carbon-removal credits as the twin revenue streams.</description></item><item><title>Gas fermentation reactors</title><link>https://en.bioecon.ru/technology/gas-fermentation-reactors/</link><pubDate>Mon, 06 Jul 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/gas-fermentation-reactors/</guid><description>Purpose-built anaerobic bioreactors — tall bubble-column loop vessels, hollow-fiber cell-retention skids, and multi-stage gas cleanup trains — that let acetogenic bacteria convert steel-mill and refinery waste gas (CO, CO2, H2) into ethanol at commercial scale, one plant already running at 210,000 tonnes/year of biofuel-grade output.</description></item><item><title>DAC with biointegration (hybrid bio-DAC)</title><link>https://en.bioecon.ru/technology/hybrid-bio-dac/</link><pubDate>Tue, 30 Jun 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/hybrid-bio-dac/</guid><description>Direct air capture with bio-integration — carbonic-anhydrase-functionalized sorbents and engineered-microalgae photobioreactors that cut DAC regeneration energy and cost via low-temperature desorption.</description></item><item><title>Ocean alkalinity enhancement</title><link>https://en.bioecon.ru/technology/ocean-alkalinity-enhancement/</link><pubDate>Sun, 28 Jun 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/ocean-alkalinity-enhancement/</guid><description>Accelerating the ocean&amp;rsquo;s natural carbon sink by adding alkaline minerals to seawater to safely sequester CO2.</description></item><item><title>Biological carbon capture &amp; utilization (bio-CCU: gas fermentation, CO2-to-protein, e-fuels)</title><link>https://en.bioecon.ru/technology/biological-carbon-capture-utilization/</link><pubDate>Mon, 22 Jun 2026 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/biological-carbon-capture-utilization/</guid><description>Turning captured CO2 into fuels, proteins, polymers and methanol via microbial gas fermentation, engineered microbes and algae — a carbon-utilization value chain from industrial emissions to circular carbon products.</description></item><item><title>Carbon markets &amp; biofinancing</title><link>https://en.bioecon.ru/technology/carbon-markets-biofinancing/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>https://en.bioecon.ru/technology/carbon-markets-biofinancing/</guid><description>Carbon markets, Cap-and-Trade systems (ETS), and biofinancing transform bioeconomy ecosystem services into tradable financial assets, driving decarbonization and nature-based solutions.</description></item></channel></rss>