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Cost and Life-Cycle Greenhouse Gas Implications of Integrating Biogas Upgrading and Carbon Capture Technologies in Cellulosic Biorefineries

机译:成本和生命周期温室气体对纤维素生物料综合升级和碳捕获技术集成的影响

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摘要

Gaseous streams in biorefineries have been undervalued and underutilized. In cellulosic biorefineries, coproduced biogas is assumed to be combusted alongside lignin to generate process heat and electricity. Biogas can instead be upgraded to compressed biomethane and used as a transportation fuel. Capturing CO_2-rich streams generated in biorefineries can also contribute to greenhouse gas (GHG) mitigation goals. We explore the economic and life-cycle GHG impacts of biogas upgrading and CO_2 capture and storage (CCS) at ionic liquid-based cellulosic ethanol biorefineries using biomass sorghum. Without policy incentives, biorefineries with biogas upgrading systems can achieve a comparable minimum ethanol selling price (MESP) and reduced GHG footprint ($1.38/liter gasoline equivalent (LGE) and 12.9 gCO_2e/MJ) relative to facilities that combust biogas onsite ($1.34/LGE and 24.3 gCO_2e/MJ). Incorporating renewable identification number (RIN) values advantages facilities that upgrade biogas relative to other options (MESP of $0.72/LGE). Incorporating CCS increases the MESP but dramatically decreases the GHG footprint (-21.3 gCO_2e/MJ for partial, -110.7 gCO_2e/MJ for full CCS). The addition of CCS also decreases the cost of carbon mitigation to as low as $52-$78/t CO_2, depending on the assumed fuel selling price, and is the lowest-cost option if both RIN and California's Low Carbon Fuel Standard credits are incorporated.
机译:生物杂种中的气流已经被低估并未充分利用。在纤维素生物料中,假设副屈曲的沼气与木质素一起燃烧以产生工艺热量和电力。沼气可以替代地升级到压缩的生物甲烷并用作运输燃料。捕获生物猎物中产生的富含CO_2的溪流也可以有助于温室气体(GHG)缓解目标。我们使用生物质高粱探讨了沼气升级和CO_2捕获和储存(CCS)的经济和生命周期GHG影响,并使用生物质高粱在离子液体型纤维素乙醇生物料理中的影响。如果没有政策激励措施,具有沼气升级系统的生物杂种可以相对于燃烧沼气现场燃烧(1.34美元/ LGE)的设施来实现相当的最小乙醇销售价格(MES)和减少GHG足迹(1.38美元/升汽油等效(LGE)和12.9 GCO_2E / MJ)(1.34美元/ LGE和24.3 gco_2e / mj)。合并可再生识别号码(RIN)值优势升级沼气相对于其他选项的设施(MES $ 0.72 / LGE)。合并CCS增加了MES,但显着降低了GHG足迹(用于Partial,-110.7 GCO_2E / MJ的MOG占位道(-21.3 GCO_2E / MJ)。根据假定的燃料销售价格,增加CCS的CCS还将碳减缓的成本降低到低至52-78美元/ T CO_2,并且如果载入的低碳燃料标准信贷均注入,则是最低成本选项。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|12810-12819|共10页
  • 作者单位

    Life-cycle Economics and Agronomy Division joint BioEnergy Institute and Biological Systems and Engineering Division Lawrence Berkeley National Laboratory Berkeley California 91720 United States;

    Life-cycle Economics and Agronomy Division joint BioEnergy Institute and Biological Systems and Engineering Division Lawrence Berkeley National Laboratory Berkeley California 94720 United States;

    Energy Analysis and Environmental Impacts Division Lawrence Berkeley National Laboratory Berkeley California 94720 United States;

    Energy Analysis and Environmental Impacts Division Lawrence Berkeley National Laboratory Berkeley California 94720 United States;

    Life-cycle Economics and Agronomy Division Joint BioEnergy Institute Biological Systems and Engineering Division and Energy Analysis and Environmental Impacts Division Lawrence Berkeley National Laboratory Berkeley California 94720 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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