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Greenhouse gases emissions and energy use of wheat grain-based bioethanol fuel blends

机译:小麦籽粒生物乙醇燃料混合物的温室气体排放和能源利用

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This study focuses on the potential energetic and environmental impacts associated with the production of wheat grain-based bioethanol in Lombardia (Italy), with a "seed-to-wheel" approach (i.e. taking into account the production and use phase). Greenhouse gas emissions (GHGs) were estimated through the CML 2 baseline 2000 methodology counting the CO_2 equivalent emissions, while the energy flow indicator was estimated using the Ecoindicator 95 methodology. The impact of the different phases involved in the production and use of bioethanol have been analysed: the agricultural production of wheat grain, its transformation into bioethanol, the production of gasoline and the use of 5 different blends (from pure gasoline to pure ethanol).rnThe results show that ethanol fuel, used in the form of blends in gasoline, can help reduce energy use and GHGs. In particular, the use of pure ethanol was found to be the best alternative presenting the lowest GHGs (saving about 32% of CO_2eq emissions in comparison to gasoline) and the minor energy use (63% saving). Differences between low-ethanol blends and gasoline are minimal and dependent on the specific fuel consumption of the vehicle. The sensitivity analysis performed to test the robustness of results through the change of some basic assumptions (specific fuel consumption, N_2O emissions from agricultural phase, allocation method) shows the sensitivity of GHGs saving to the adopted allocation method.
机译:这项研究采用“从种子到车轮”的方法(即考虑到生产和使用阶段),着重研究与伦巴第大区(意大利)基于小麦籽粒的生物乙醇生产相关的潜在能源和环境影响。温室气体排放量(GHG)是通过CML 2基准2000年方法学估算的CO_2当量排放量而得出的,而能流指标是使用Ecoindicator 95方法学估算的。已分析了生物乙醇生产和使用中不同阶段的影响:小麦籽粒的农业生产,其转化为生物乙醇,汽油的生产以及使用了5种不同的混合物(从纯汽油到纯乙醇)。结果表明,乙醇汽油以汽油混合物的形式使用,可以帮助减少能源消耗和温室气体排放。尤其是,发现纯乙醇是表现出最低温室气体排放量(与汽油相比,可节省约32%的CO_2eq排放)和较小的能源消耗(节省63%)的最佳选择。低乙醇混合物与汽油之间的差异很小,并且取决于车辆的特定燃料消耗。通过更改一些基本假设(比燃料消耗,农业阶段的N_2O排放量,分配方法)来进行敏感性分析以测试结果的鲁棒性,这表明节省的温室气体对采用的分配方法具有敏感性。

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