首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Estimating the potential of energy saving and carbon emission mitigation of cassava-based fuel ethanol using life cycle assessment coupled with a biogeochemical process model
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Estimating the potential of energy saving and carbon emission mitigation of cassava-based fuel ethanol using life cycle assessment coupled with a biogeochemical process model

机译:利用生物地缘化学过程模型借生命周期评估估算木薯燃料乙醇节能和碳排放潜力

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摘要

Global warming and increasing concentration of atmospheric greenhouse gas (GHG) have prompted considerable interest in the potential role of energy plant biomass. Cassava-based fuel ethanol is one of the most important bioenergy and has attracted much attention in both developed and developing countries. However, the development of cassava-based fuel ethanol is still faced with many uncertainties, including raw material supply, net energy potential, and carbon emission mitigation potential. Thus, an accurate estimation of these issues is urgently needed. This study provides an approach to estimate energy saving and carbon emission mitigation potentials of cassava-based fuel ethanol through LCA (life cycle assessment) coupled with a biogeochemical process modelGEPIC (GIS-based environmental policy integrated climate) model. The results indicate that the total potential of cassava yield on marginal land in China is 52.51 million t; the energy ratio value varies from 0.07 to 1.44, and the net energy surplus of cassava-based fuel ethanol in China is 92,920.58 million MJ. The total carbon emission mitigation from cassava-based fuel ethanol in China is 4593.89 million kgC. Guangxi, Guangdong, and Fujian are identified as target regions for large-scale development of cassava-based fuel ethanol industry. These results can provide an operational approach and fundamental data for scientific research and energy planning.
机译:全球变暖和越来越多的大气温室气体(GHG)促使能源植物生物质潜在作用的相当大的兴趣。基于木薯的燃料乙醇是最重要的生物能源之一,并引起了发达国家和发展中国家的巨大关注。然而,基于木薯的燃料乙醇的发展仍然面临着许多不确定性,包括原料供应,净能量潜力和碳排放潜力。因此,迫切需要准确地估计这些问题。本研究提供了一种通过与生物地球化学过程模型(GIS为基础的环境政策综合气候)模型的LCA(生命周期评估)来估计基于木薯的燃料乙醇的节能和炭发射缓解电位的方法。结果表明,中国边际土地的木薯产量总潜力为5251万吨;能量比值在0.07至1.44之间变化,中国木薯型燃料乙醇的净能量盈余为92,92058万MJ。中国木薯型燃料乙醇的总炭排放减缓4593.89万KGC。广西,广东和福建被确定为木薯燃料乙醇行业大规模发展的目标区域。这些结果可以为科学研究和能源规划提供操作方法和基本数据。

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