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首页> 外文期刊>Journal of Industrial Ecology >Using Life-Cycle Assessment in Process Design Supercritical Water Gasification of Organic Feedstocks
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Using Life-Cycle Assessment in Process Design Supercritical Water Gasification of Organic Feedstocks

机译:在产品原料的超临界水气化工艺设计中使用生命周期评估

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This article presents the application of life-cycle assessment in early phases of process design in the context of technology that employs a bio-based material.The goal is to identify hot spots in the process chains with regard to environmental impacts by performing a dominance analysis.By focusing his activities on the hot spots identified,the designer is given the opportunity to efficiently improve environmental performance.This approach is illustrated for the case of supercritical water gasification,a novel technology for the treatment of organic feedstock with high moisture content.In the reactor under supercritical conditions,organic components are converted into a high-caloric synthesis gas,with hydrogen,methane,and carbon dioxide as the main products.The data used for the assessment are obtained from laboratory tests and the literature,completed by assumptions for missing data.The scope of assessment ranges from the extraction of raw materials to the product,that is,hydrogen (cradle to gate) with sewage sludge of a municipal waste water treatment plant used as feedstock.The assessment identifies the mam sources of environmental impacts.The predominant process step in terms of global warming potential is the supply of the gasification process with additional heat.The production of a blending agent in the dewatering step is the mam source of the impact category of acidification,whereas the wastewater treatment plant is the origin of emissions that lead to eutro-phication.The revealed sources are analyzed further and options for reducing the environmental impacts are discussed.
机译:本文介绍了生命周期评估在采用生物基材料的技术背景下的过程设计早期阶段中的应用,目的是通过执行优势分析来确定过程链中与环境影响有关的热点通过将活动集中在确定的热点上,设计师有机会有效地改善环境绩效。这种方法在超临界水气化的情况下得到了说明,这是一种用于处理高水分含量有机原料的新技术。反应器在超临界条件下,以氢,甲烷和二氧化碳为主要产物,将有机成分转化为高热量的合成气。用于评估的数据来自实验室测试和文献,并根据以下假设进行了完善:缺失的数据。评估范围从原材料的提取到产品,即氢气(cr污水处理厂的污水污泥用作原料)。评估确定了对环境影响的主要来源。就全球变暖潜力而言,主要的工艺步骤是向气化工艺提供额外的热量。脱水步骤中混合剂的生产是酸化影响类别的主要来源,而废水处理厂是导致富营养化的排放源。进一步分析了所揭示的来源以及减少环境影响的选择讨论。

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