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Using a hybrid of green chemistry and industrial ecology to make chemical production greener

机译:利用绿色化学和工业生态的混合化工制造化学品生产绿色

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We proposed a model to extend green chemistry beyond the boundary of a single product by hybridizing it with the concept of industrial ecology in a chemical industrial park. The model works at three levels: single product, product food web, and infrastructure sharing. At the single product level, the core measures are cleaner production, the design of a green process that employs the "24 principles" of green chemistry and green chemical engineering in condensed forms, PRODUCTIVELY and IMPROVEMENTS respectively. The food web level is the key to extending the system boundary of a single product. At this level, collaboration among different firms in the chemical industrial park can be facilitated through designing, uncovering, and fostering horizontal and vertical integration among different stakeholders. Infrastructure sharing is an essential characteristic of eco-industrial development of chemical industrial parks. The model is exemplified in-depth in a typical Chinese chemical industrial park. We assessed the performance of disperse dyestuff manufacturing in the park and found that the park showed substantial reduction in its sulfuric acid consumption, water pollutants emission, and hazardous solid waste generation in disperse dyestuff production from 2011 to 2015. Integrating green chemistry and industrial ecology in the context of chemical industrial parks will be insightful for other chemical industrial parks aiming to facilitate green development. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出了一种模型,通过将其与化学工业园区工业生态的概念杂交来扩展绿色化学超出单一产品的边界。该模型适用于三级:单一产品,产品食品网和基础设施共享。在单一产品水平上,核心措施是清洁生产,设计绿色工艺的设计,采用绿色化学和绿化学工程的24原理,分别生产,高效和改善。食品网级是扩展单个产品系统边界的关键。在此级别,通过在不同利益相关者之间设计,揭示和培养水平和垂直整合,可以促进化学工业园区不同公司之间的合作。基础设施分担是化学工业园区生态产业发展的重要特征。该模型在典型的中国化学工业园中举例说明。我们评估了分散染料制造在公园中的性能,发现该公园在2011年至2015年的分散染料生产中的硫酸消耗,水污染物排放和危险固体废物产生的显着降低。集成绿色化学和工业生态化学工业园区的背景将对旨在促进绿色发展的其他化学工业园区有洞察力。 (c)2017 Elsevier B.v.保留所有权利。

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