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首页> 外文期刊>Environmental Research Letters >Quantifying the uncertainties in life cycle greenhouse gas emissions for UK wheat ethanol
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Quantifying the uncertainties in life cycle greenhouse gas emissions for UK wheat ethanol

机译:量化英国小麦乙醇生命周期温室气体排放的不确定性

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Biofuels are increasingly promoted worldwide as a means for reducing greenhouse gas (GHG) emissions from transport. However, current regulatory frameworks and most academic life cycle analyses adopt a deterministic approach in determining the GHG intensities of biofuels and thus ignore the inherent risk associated with biofuel production. This study aims to develop a transparent stochastic method for evaluating UK biofuels that determines both the magnitude and uncertainty of GHG intensity on the basis of current industry practices. Using wheat ethanol as a case study, we show that the GHG intensity could span a range of 40–110?gCO2e?MJ?1 when land use change (LUC) emissions and various sources of uncertainty are taken into account, as compared with a regulatory default value of 44?gCO2e?MJ?1. This suggests that the current deterministic regulatory framework underestimates wheat ethanol GHG intensity and thus may not be effective in evaluating transport fuels. Uncertainties in determining the GHG intensity of UK wheat ethanol include limitations of available data at a localized scale, and significant scientific uncertainty of parameters such as soil N2O and LUC emissions. Biofuel polices should be robust enough to incorporate the currently irreducible uncertainties and flexible enough to be readily revised when better science is available.
机译:在世界范围内,越来越多地推广生物燃料,以减少运输过程中的温室气体排放。但是,当前的监管框架和大多数学术生命周期分析都采用确定性方法来确定生物燃料的温室气体排放强度,因此忽略了与生物燃料生产相关的固有风险。这项研究旨在开发一种透明的随机方法来评估英国的生物燃料,该方法可以根据当前行业惯例确定温室气体强度的大小和不确定性。以小麦乙醇为例,我们发现,考虑到土地利用变化(LUC)排放和各种不确定性来源,GHG强度的范围可能在40–110?gCO2e?MJ?1范围内。监管默认值为44?gCO2e?MJ?1。这表明当前的确定性监管框架低估了小麦乙醇温室气体的强度,因此可能无法有效地评估运输燃料。确定英国小麦乙醇的GHG强度的不确定性包括局部范围内可用数据的局限性,以及土壤N2O和LUC排放等参数的重大科学不确定性。生物燃料政策应具有足够的鲁棒性,以纳入当前无法减少的不确定性,并且应具有足够的灵活性,以在可获得更好的科学时易于修改。

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