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Optimization of an integrated solid waste management system based on greenhouse gas emissions taking into consideration materials flow due to product reuse

机译:基于温室气体排放的综合固体废物管理系统的优化,其中考虑了由于产品再利用而产生的物料流

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摘要

Product reuse contributes favorably to waste management and resource recovery by diverting products from terminal disposal to second-hand markets. Activities that promote the process of reuse make valuable products available to second-hand customers, contribute to waste prevention, and help mitigate the adverse impact of solid waste management on the environment. To quantify the contributions of product reuse to waste prevention and the evaluation of its contributions to the alleviation of adverse effects on the environment required three fundamental developmental steps, which can be summarized as follows: (a) the development of a methodological framework to allow the quantitative analysis of second-hand products flowing through the economy. The novel methodology standardizes record keeping and characterizes commonly reused post-consumer products by assessing the outgoing product flow from reuse enterprises. The approach groups material composition of individual products into primary product categories, creating a simplified method to characterize products, (b) the study of the flow of second-hand products required the assessment of the disposal habits and acquisition practices of adults for second-hand products. Three separate surveys were conducted for three commonly reused products (books, clothing and furniture) using the Amazon Mechanical Turk online platform. Associations were observed between disposal and acquisition methods of used products and demographics, such as age, gender and education level. The existence of preferred disposal routes and acquisition channels of second-hand products allows the recovery of reusable products in a more efficient manner by combining efforts in initiatives that can impact disposal and acquisition of goods. And (c) finally, the development of an optimization model to minimize the greenhouse gas emissions of an integrated solid waste management system that includes reuse strategies and practices such as reuse enterprises, online platforms, and materials exchanges along with traditional solid waste management practices such as recycling, landfilling, and incineration. Using material flow analysis in combination with life-cycle assessment, the optimization model, identified hereafter as Fortuna ISWM (Integrated Solid Waste Management) optimization model, provides the best outcome regarding greenhouse gas emissions by redistributing product flows in the integrated solid waste management system to the least impacting routes and processes. The optimization model provides a basis for understanding the contributions of reuse to the environmental benefits of the integrated solid waste management system and the exploration of effects of the reuse sector on waste prevention.
机译:产品再利用通过将产品从终端处置转向二手市场,有利于废物管理和资源回收。促进再利用过程的活动使有价值的产品可供二手客户使用,有助于废物预防,并有助于减轻固体废物管理对环境的不利影响。为了量化产品再利用对废物预防的贡献并评估其对减轻对环境的不利影响的贡献,需要三个基本的发展步骤,可以概括为以下三个步骤:(a)建立方法框架,以实现对流经经济的二手产品进行定量分析。这种新颖的方法可以标准化记录保存,并通过评估重复利用企业的流出产品流来表征经常重复使用的消费后产品。该方法将单个产品的材料成分分为主要产品类别,从而创建了一种简化产品表征的方法,(b)对二手产品流向的研究要求评估二手成年人的处置习惯和获取习惯产品。使用Amazon Mechanical Turk在线平台对三种常用的产品(书籍,衣服和家具)进行了三个单独的调查。在使用过的产品的处置和获取方法与人口统计(例如年龄,性别和教育程度)之间存在关联。首选产品的处置途径和二手产品的获取渠道的存在,可以通过结合可能影响商品处置和购买的计划中的努力,以更有效的方式回收可重复使用的产品。 (c)最后,开发一种优化模型以最大程度地减少综合固体废物管理系统的温室气体排放,其中包括再利用策略和实践,例如再利用企业,在线平台和材料交换,以及传统的固体废物管理实践,例如作为回收,填埋和焚化。通过将物质流分析与生命周期评估相结合,此优化模型(以下称为Fortuna ISWM(综合固体废物管理)优化模型)可以通过将产品流重新分配至综合固体废物管理系统中来提供有关温室气体排放的最佳结果。影响最小的路线和过程。优化模型为理解再利用对综合固体废物管理系统的环境效益的贡献以及探索再利用部门对废物预防的影响提供了基础。

著录项

  • 作者

    Fortuna, Lorena M.;

  • 作者单位

    The City College of New York.;

  • 授予单位 The City College of New York.;
  • 学科 Environmental engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:30

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