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首页> 外文期刊>Journal of Cleaner Production >Life cycle assessment of reduction of environmental impacts via industrial symbiosis in an energy-intensive industrial park in China
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Life cycle assessment of reduction of environmental impacts via industrial symbiosis in an energy-intensive industrial park in China

机译:在中国一个能源密集型工业园区中通过工业共生减少环境影响的生命周期评估

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Industrial symbiosis (IS) is a collective approach to attain competitive advantage through the physical exchanges of materials, energy, water, and by-products, especially for the energy-intensive industrial parks. To highlight the reduction of potential environmental impacts of IS in a more complicated system, the extent of synergistic interactions among different industries, including power plants, aluminum, chemicals, iron and steel industries, in Yongcheng Economic Development Zone, Henan Province, China was explored. Specifically, a total of nine plants were used for IS analysis with thirteen IS links from the 2017 data. Different from the four environmental impact categories in previous studies, the reduction of potential environmental impacts through eight environmental impact categories adopting life cycle assessment method, including primary energy, greenhouse gas (GHG) emission, acidification potential, eutrophication potential, particulate matter (PM), human toxicity, respiratory inorganics, and ozone formation potential were evaluated, in addition to economic gains. The results show that effective impact reductions can be attained via thirteen symbiosis links, including 9456 TJ of primary energy, 850 kt CO(2)eq of GHG, 3297 t SO(2)eq of acidification, 242 t PO(4)(3-)eq of eutrophication, 24 t PM(10)eq of particulate matter, 2529 t 1,4-dichlorobenzene-eq of human toxicity, 4087 t PM(2.5)eq of respiratory inorganics and 20.6 t C(2)H(4)eq of ozone formation potential. In addition, 958 million RMB (1 USD approximate to 6.7 RMB in 2017) could be saved, accounting for 5.5% of the total value added of the park in 2017. The greatest contribution is from steam exchange between the power plants, methanol/ethylene glycol chemical plant, and other enterprises. In total, IS is an important way to reduce environmental impacts and gain economic benefits in this energy-intensive industrial park. The government should speed up the promotion of IS and make it a feasible approach to more eco-efficient development in industrial parks. (C) 2019 Elsevier Ltd. All rights reserved.
机译:工业共生(IS)是一种通过物质,能源,水和副产品的物理交换获得竞争优势的集体方法,特别是对于能源密集型工业园区。为了强调在更复杂的系统中减少信息系统潜在的环境影响,探索了中国河南省永城市经济开发区不同行业(包括电厂,铝,化工,钢铁行业)之间的协同相互作用的程度。具体来说,总共有9家工厂用于IS分析,其中包含2017年数据中的13条IS链接。与先前研究中的四个环境影响类别不同,采用生命周期评估方法通过八个环境影响类别减少潜在的环境影响,包括一次能源,温室气体(GHG)排放,酸化潜力,富营养化潜力,颗粒物(PM)除了经济收益外,还评估了人体毒性,呼吸性无机物和臭氧形成的潜力。结果表明,可以通过13个共生环节实现有效的影响减少,包括9456 TJ的一次能源,850 kt CO(2)eq的温室气体,3297 t的SO(2)eq的酸化,242 t的PO(4)(3) -)富营养化当量,24 t PM(10)eq颗粒物,2529 t 1,4-二氯苯当量对人体的毒性,4087 t PM(2.5)eq的呼吸性无机物和20.6 t C(2)H(4)臭氧当量的当量此外,可节省9.58亿元人民币(1美元约合2017年的6.7元人民币),占2017年园区总增加值的5.5%。最大的贡献来自电厂之间的蒸汽交换,甲醇/乙烯乙二醇化工厂等企业。总体而言,在这个能源密集型工业园区中,信息系统是减少环境影响并获得经济利益的重要途径。政府应加快信息系统的推广,使其成为在工业园区内提高生态效率的可行方法。 (C)2019 Elsevier Ltd.保留所有权利。

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