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Greenhouse gas balances of molasses based ethanol in Nepal

机译:尼泊尔基于糖蜜的乙醇的温室气体平衡

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摘要

This paper evaluates life cycle greenhouse gas (GHG) balances in production and use of molasses-based ethanol (EtOH) in Nepal. The total life cycle emissions of EtOH is estimated at 432.5 kgCO_(2eq) m~(-3) ethanol (i.e. 20.4 gCO_(2eq) MJ~(-1)). Avoided emissions are 76.6% when conventional gasoline is replaced by molasses derived ethanol. A sensitivity analysis was performed to verify the impact of variations in material and energy flows, and allocation ratios in the GHG balances. Market prices of sugar and molasses, amount of nitrogen-fertilizers used in sugarcane production, and sugarcane yield per hectare turn out to be important parameters for the GHG balances estimation. Sales of the surplus electricity derived from bagasse could reduce emissions by replacing electricity produced in diesel power plants. Scenario analysis on two wastewater processes for treatment of effluents obtained from ethanol conversion has also been carried out. If wastewater generated from ethanol conversion unit is treated in pond stabilization (PS) treatment process, GHG emissions alarmingly increase to a level of 4032 kgCC>2eq m ~(-3) ethanol. Results also show that the anaerobic digestion process (ADP) and biogas recovery without leakages can significantly avoid GHG emissions, and improve the overall emissions balance of EtOH in Nepal. At a 10% biogas leakage, life cycle emissions is 1038 kgCO_(2eq)m~(-3) ethanol which corresponds to 44% avoided emissions compared to gasoline. On the other hand, total emissions surpass the level of its counterpart (i.e. gasoline) when the leakage of biogas exceeds 23.4%.
机译:本文评估了尼泊尔生产和使用基于糖蜜的乙醇(EtOH)的生命周期温室气体(GHG)平衡。 EtOH的总生命周期排放量估计为432.5 kgCO_(2eq)m〜(-3)乙醇(即20.4 gCO_(2eq)MJ〜(-1))。当传统的汽油被糖蜜衍生的乙醇代替时,避免的排放为76.6%。进行了敏感性分析,以验证物质和能量流的变化以及温室气体平衡中分配比例的影响。糖和糖蜜的市场价格,用于甘蔗生产的氮肥的量以及每公顷甘蔗的产量被证明是估算温室气体平衡的重要参数。甘蔗渣产生的剩余电力的销售可以通过替换柴油发电厂产生的电力来减少排放。还进行了两种废水处理工艺的情景分析,这些工艺用于处理乙醇转化制得的废水。如果将乙醇转化装置产生的废水进行池塘稳定(PS)处理过程,温室气体排放量将惊人地增加到4032 kgCC> 2eq m〜(-3)乙醇。结果还表明,无泄漏的厌氧消化过程(ADP)和沼气回收可以显着避免温室气体排放,并改善尼泊尔EtOH的总体排放平衡。沼气泄漏量为10%时,生命周期排放为1038 kgCO_(2eq)m〜(-3)乙醇,与汽油相比,避免了44%的排放。另一方面,当沼气泄漏量超过23.4%时,总排放量将超过其对应的排放量(即汽油)。

著录项

  • 来源
    《Journal of Cleaner Production》 |2011年第13期|p.1471-1485|共15页
  • 作者单位

    Division of Energy and Climate Studies, Department of Energy Technology, School of Industrial Engineering and Management, Royal Institute of Technology (KTH), KTH,Brinellvagen 68, SE - 100 44, Stockholm, Sweden;

    Division of Energy and Climate Studies, Department of Energy Technology, School of Industrial Engineering and Management, Royal Institute of Technology (KTH), KTH,Brinellvagen 68, SE - 100 44, Stockholm, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    greenhouse gas balances; life cycle analysis; molasses based ethanol; nepal;

    机译:温室气体平衡;生命周期分析;糖蜜基乙醇;尼泊尔;
  • 入库时间 2022-08-17 14:04:53

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