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首页> 外文期刊>Journal of Industrial Ecology >Island Waste Management Systems Statistics, Challenges, and Opportunities for Applied Industrial Ecology
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Island Waste Management Systems Statistics, Challenges, and Opportunities for Applied Industrial Ecology

机译:岛屿废物管理系统的统计,应用工业生态面临的挑战和机遇

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摘要

Island waste management professionals are faced with limited land resources, high energy costs, large seasonal fluctuations in waste volumes, and complex social and political dynamics that stem from their often closely knit societies. These and other factors can discourage typical waste management practices, but they also provide opportunities for island governments and businesses to explore alternative technologies and policies that suit their particular circumstances and that might be environmentally preferable. This critical review discusses the waste management literature on islands to date, including several industrial ecology (IE) studies. Common advantages and disadvantages faced by island waste management challenges are presented from the perspectives of business and municipal management. Waste generation data are presented from more than 40 islands around the world and tested for correlation with economic and geographic parameters and using cluster analysis, with the aim of identifying trends among island types. Poor data quality and comparability are ongoing challenges that underscore the potential benefits of a consistent program of island waste management data collection. Finally, the review explores opportunities for applying IE research to generate useful insights and policies in the areas of material flow analysis, industrial symbiosis, life cycle assessment, and social ecology.
机译:岛屿废物管理专业人员面临着有限的土地资源,高昂的能源成本,废物量的季节性大波动以及因其经常紧密联系的社会而产生的复杂的社会和政治动力。这些因素和其他因素可能会阻止典型的废物管理做法,但它们也为岛屿政府和企业提供了机会,以探索适合其特定情况的替代技术和政策,并且在环境上可能更可取。这篇重要的评论讨论了迄今为止有关岛屿的废物管理文献,包括一些工业生态学(IE)研究。从商业和市政管理的角度介绍了岛屿废物管理面临的共同利弊。收集了来自全球40多个岛屿的废物产生数据,并测试了其与经济和地理参数的相关性,并使用聚类分析进行了分析,目的是确定岛屿类型之间的趋势。不良的数据质量和可比性是持续存在的挑战,这些挑战凸显了实施一致的岛屿废物管理数据收集计划的潜在好处。最后,本综述探讨了应用IE研究在材料流分析,工业共生,生命周期评估和社会生态学领域产生有用的见解和政策的机会。

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