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生物质深度脱碳转化工艺.pdf

上传人: 山哈 编号:724941 2025-07-04 10页 2.03MB

1、Deep Decarbonization of Biomass Conversion ProcessesZia Abdullah,PhD.Carbon-Efficient Conversion Process SessionClean Fuels&Products Earth ShotApril 9,2024We Are Utilizing Multiple Biological And Catalytic Processes To Convert Diverse Biomass Sources To Fuels And ChemicalsBiological Conversion Pathw

2、ayGasification PathwayCatalytic Pyrolysis PathwayAlgae PathwayNREL|2Carbon Efficiency of Current Conversion Processes Can be Improved Significantly,Which will Reduce Feedstock Volume NeededCurrent State Of Technology 345 MMT carbon 40 Billion GGE biofuel40 B GGE740 MMT agricultural and forestry resi

3、dues NREL|330%Carbon70%CarbonNREL|4Our Near-Term Goal Is Deployment and Longer-Term Goal is to Deeply Decarbonize While Achieving Grand Challenge Volume TargetsFeedstock Conversion interface Reliable feeding of biomass into reactors.Refinery integration to accelerate deploymentPurpose grown ve carbo

4、n feedstocks Enable ve carbon fuelsNegative Carbon flightsCarbon&energy efficient conversion Carbon efficiency 30%Electro-fuels Decrease Carbon Intensity Use CO2&waste gasesGen 1 EtOH refineries Decarbonize ATJ PathwaysBroaden feedstock MSW,wet waste,CO2,flue gasesNear Term Focus on DeploymentLonger

5、 Term Focus on Deep DecarbonizationNegative Carbon shippingGoal:Develop bolt-on technologies that use renewable electricity to increase the efficiency of bioconversion.Leverages Inter-Lab and Industry expertise across the Conversion value chain:Feedstocks,Electro/BioCatalysis,and Analysis 12 Project

6、s at 5 Natl labsBiological UpgradingAnalysis and ModelingCO2 Electrolysis(LTE)Poor carbon yields limit the Carbon Intensity reduction potential of current bioconversion pathways.Emerging direct electrification pathways show promise for conversion of biogenic CO2 Initial period of performance reveale

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本文主要介绍了生物质转化过程的深度脱碳研究,旨在提高碳效率,减少原料需求,并实现负碳排放目标。关键点如下: 1. 多种生物和催化过程被用于将不同生物质转化为燃料和化学品。 2. 目前的转化过程碳效率约为30%,通过改进技术,可显著提高。 3. 目标是短期内实现技术应用,长期内深度脱碳,达到挑战性体积目标。 4. 利用可再生能源提高生物转化效率,12个项目在5个国家实验室进行。 5. 二氧化碳电解技术(LTE)可减少生物质转化路径的碳强度。 6. 提出了一种无二氧化碳发酵的集成过程,可使用CO和H2作为能源。 7. 研究集中于提高生物质过程的碳效率,以减少生物质量,降低碳强度,提高能量效率。 核心数据引用: - 当前技术状态:345亿吨碳,40亿加仑当量生物燃料。 - 目标:实现大于85%的温室气体减排,相比化石路径。 - 碳效率:约为30%,有显著提升空间。
"如何深度脱碳生物质转化?" "生物催化能实现负碳排放吗?" "航空燃料的环保革新之路?"
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