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Life cycle assessment of residual lignocellulosic biomass-based jet fuel with activated carbon and lignosulfonate as co-products

机译:以活性炭和木质素磺酸盐为副产物的木质纤维素残渣为基础的喷气燃料的生命周期评估

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摘要

BackgroundBio-jet fuels are emerging as a valuable alternative to petroleum-based fuels for their potential for reducing greenhouse gas emissions and fossil fuel dependence. In this study, residual woody biomass from slash piles in the U.S. Pacific Northwest is used as a feedstock to produce iso-paraffinic kerosene, through the production of sugar and subsequent patented proprietary fermentation and upgrading. To enhance the economic viability and reduce the environmental impacts of iso-paraffinic kerosene, two co-products, activated carbon and lignosulfonate, are simultaneously produced within the same bio-refinery. A cradle-to-grave life cycle assessment (LCA) is performed for the residual woody biomass-based bio-jet fuel and compared against the cradle-to-grave LCA of petroleum-based jet fuel. This paper also discusses the differences in the environmental impacts of the residual biomass-based bio-jet fuel using two different approaches, mass allocation and system expansion, to partition the impacts between the bio-fuel and the co-products, which are produced in the bio-refinery.
机译:背景技术生物喷气燃料因其减少温室气体排放和减少对化石燃料的依赖而正在成为石油基燃料的重要替代物。在这项研究中,美国西北太平洋地区斜线桩中残留的木质生物质被用作原料,通过生产糖和随后获得专利的专利发酵和升级来生产异链烷烃煤油。为了提高经济可行性并减少异链烷烃煤油对环境的影响,在同一生物精炼厂中同时生产了两种副产品,即活性炭和木质素磺酸盐。对残留的木质生物质基生物喷气燃料进行了从摇篮到坟墓的生命周期评估(LCA),并将其与石油基喷气燃料的从摇篮到坟墓的LCA相比较。本文还使用质量分配和系统扩展这两种不同方法,讨论了残留生物质基生物喷气燃料对环境影响的差异,以划分生物燃料和副产品之间的影响。生物精炼厂。

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