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A carbon footprint of HVO biopropane

机译:HVO生物丙烷的碳足迹

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Biopropane made by hydrogenating vegetable or animal oil/fat is being commercialized as a biofuel alternative to liquefied petroleum gas (LPG). Its carbon footprint has been calculated from field to tank, using public data for each process in the supply chain, for six main feedstocks: palm oil, palm oil fatty acid distillate, tallow, used cooking oil, rape oil, and soy oil. Scenarios have been applied to the calculations using four main variables: allocation method, i.e., economic or energy; methane capture at the oil mill (or not); application of indirect land-use change (or not); and classification of the feedstock as a residue (or not). HVO biopropane's carbon footprint varies, depending on the feedstock and the four variables, from as low as 5g CO(2)e/MJ to as high as 102g. In most cases, this qualifies for government support, i.e., financial credits and biofuel mandates enacted by EU member states under the Renewable Energy Directive. (c) 2017 The Authors. Biofuels, Bioproducts and Biorefining published by Society of Chemical Industry and John Wiley & Sons, Ltd.
机译:通过氢化植物或动物油/脂肪制备的生物丙烷作为生物燃料替代液化石油气(LPG)。它的碳足迹已经从现场计算到坦克,使用供应链中的每个过程的公共数据,六个主要原料:棕榈油,棕榈油脂肪酸馏出物,牛油,用过的食用油,油菜油和豆油。使用四个主要变量应用于计算的场景:分配方法,即经济或能源;甲烷捕获在油厂(或不);适用间接土地使用变化(或不);并作为残留物(或不)原料的分类。 HVO生物丙烷的碳足迹因原料和四个变量而异,从低至5G CO(2)E / MJ至高达102g。在大多数情况下,欧盟成员国在可再生能源指令下颁布的政府支持,即金融信贷和生物燃料授权有资格。 (c)2017作者。由化学工业社会发表的生物燃料,生物源和生物化,约翰瓦里和儿子有限公司发表

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