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首页> 外文期刊>Journal of Cleaner Production >Environmental sustainability of wood-derived ethanol: a life cycle evaluation of resource intensity and emissions in Maine, USA
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Environmental sustainability of wood-derived ethanol: a life cycle evaluation of resource intensity and emissions in Maine, USA

机译:木材衍生乙醇的环境可持续性:美国缅因州资源强度和排放的生命周期评估

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The existing methods of process-based life cycle assessment (LCA) fail to account for the role of ecosystem goods and services derived from natural capital. This study presents an in-depth analysis of resource consumption and atmospheric emissions across a wood-derived bioethanol supply chain. The analysis is based on energy consumption, Industrial Cumulative Exergy Consumption (ICEC), and Ecological Cumulative Exergy Consumption (ECEC) of resources used in the production of one ton of ethanol from woodchips using the near-neutral hemicellulose extraction technology. We found that when compared with fossil-based fuels and corn ethanol, wood-based cellulosic ethanol derived under the near-neutral hemicellulose extraction process demonstrated superior environmental performance. Renewable resources - mostly sunlight and detrital matters - are the dominant contributors to ICEC analysis, whereas non-renewable resources such as crushed stone, crude oil, ores and minerals contribute more to total ECEC. Lime manufacturing, inorganic chemicals production for green liquor preparation, and anthraquinone production have the highest resource consumption. The woodchip washing process and transportation stages consume relatively fewer resources. A performance metric analysis suggests that even though cellulosic ethanol uses a renewable feedstock, its environmental sustainability performance is reduced due to the large consumption of non-renewable resources during the ethanol production stage.
机译:基于过程的生命周期评估(LCA)的现有方法无法说明源自自然资本的生态系统商品和服务的作用。这项研究对木材衍生的生物乙醇供应链中的资源消耗和大气排放进行了深入分析。该分析基于使用近中性半纤维素提取技术从木片生产一吨乙醇所使用的资源的能源消耗,工业累积热能消耗(ICEC)和生态累积热能消耗(ECEC)。我们发现,与基于化石的燃料和玉米乙醇相比,在接近中性的半纤维素提取过程中衍生的木质纤维素纤维具有优异的环境性能。可再生资源-主要是阳光和碎屑-是ICEC分析的主要贡献者,而碎石,原油,矿石和矿物等不可再生资源对ECEC的贡献更大。石灰生产,用于制备绿液的无机化学品生产以及蒽醌生产具有最高的资源消耗。木片的洗涤过程和运输阶段消耗的资源相对较少。一项性能指标分析表明,即使纤维素乙醇使用可再生原料,由于其在乙醇生产阶段大量消耗不可再生资源,其环境可持续性性能也会降低。

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