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Comparison of integration options for gasification-based biofuel production systems - Economic and greenhouse gas emission implications

机译:基于气化的生物燃料生产系统整合方案的比较-经济和温室气体排放的影响

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摘要

The impact of different integration options for gasification-based biofuel production systems producing synthetic natural gas, methanol and FT (Fischer-Tropsch) fuels on the NAP (net annual profit), FPC (fuel production cost) and the GHG (greenhouse gas) emission reduction potential are analysed. The considered integration options are heat deliveries to DH (district heating) systems or to nearby industries and integration with infrastructure for CO2 storage. The comparison is made to stand-alone configurations in which the excess heat is used for power production. The analysis considers future energy market scenarios and case studies in southwestern Sweden. The results show that integration with DH systems has small impacts on the NAP and the FPC and diverging (positive or negative) impacts on the GHG emissions. Integration with industries has positive effects on the economic and GHG performances in all scenarios. The FPCs are reduced by 7-8% in the methanol case and by 12-13% in the FT production case. The GHG emission reductions are strongly dependent on the reference power production. The storage of separated CO2 shows art increase in the GHG emission reduction potential of 70-100% for all systems, whereas the impacts on the economic performances are strongly dependent on the CO2e-charge. (C) 2016 Elsevier Ltd. All rights reserved.
机译:生产合成天然气,甲醇和FT(Fischer-Tropsch)燃料的基于气化的生物燃料生产系统的不同集成方案对NAP(年净利润),FPC(燃料生产成本)和GHG(温室气体)排放的影响还原潜力进行了分析。考虑的集成选项是将热量传输到DH(区域供热)系统或附近的行业,以及与二氧化碳存储基础设施集成。比较了将多余的热量用于发电的独立配置。该分析考虑了瑞典西南部地区未来的能源市场情景和案例研究。结果表明,与DH系统的集成对NAP和FPC的影响很小,而对GHG排放的影响却不同(正向或负向)。在所有情况下,与产业的融合都会对经济和温室气体绩效产生积极影响。在甲醇情况下,FPC减少了7-8%,在FT生产情况下,减少了12-13%。温室气体减排量在很大程度上取决于参考发电量。对所有系统而言,分离出的CO2的存储显示出70%至100%的温室气体减排潜力的增加,而对经济绩效的影响则强烈依赖于CO2e充气量。 (C)2016 Elsevier Ltd.保留所有权利。

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