首页> 外文期刊>Resources, Conservation and Recycling >Carbon footprint of integrated waste management systems with implications of food waste diversion into the wastewater stream
【24h】

Carbon footprint of integrated waste management systems with implications of food waste diversion into the wastewater stream

机译:综合废物管理系统的碳足迹,具有食物废料转移到废水流的影响

获取原文
获取原文并翻译 | 示例
           

摘要

This paper introduces a comprehensive model developed to assess the carbon footprint of integrated solid waste management systems including the diversion at source of the food waste component into the wastewater/sludge management systems using household food waste disposers. In addition to the current state of practice in developed economies, the model includes emissions from waste management processes still practiced in developing economies (such as open dumping, open burning, poorly operated landfills with flaring systems and auxiliary fuel needed to satisfy the low heating value (LHV) during incineration) commonly not considered in most life cycle assessment (LCA)-based models. It can disaggregate emissions by source (from collection to final disposal), or type (direct-operating, indirect-upstream, indirect-downstream), or gas (CH4, CO2, N2O) and offers users the flexibility to select processes or modify input parameters while examining their impact on uncertainty in model simulations. Equally important is a clarity in deriving and applying emission factors used to quantify emissions from waste management systems. The model was tested in the context of developed and developing economies to assess the impact of waste composition, management processes, energy consumption and other parameters on variations in emissions. The results demonstrated that best practices through material recycling, biological treatment, food waste diversion, and/or energy recovery can contribute to significant savings in emissions that ranged between 24 and 95%, depending on the tested systems. In closure, we argue the benefits of the model application in providing guidelines for policy planning and decision making about process viability for investing in carbon credit.
机译:本文介绍了一种综合模型,用于评估综合固体废物管理系统的碳足迹,包括使用家庭食品废物处理器进入废水/污泥管理系统的食物废物组分源的转移。除了发达经济体的现行实践状态外,该模型还包括废物管理过程的排放仍在发展中经济(如开放式倾销,开放式燃烧​​,具有燃烧系统和辅助燃料的垃圾填埋场不良,以满足低热量值所需的燃烧燃料。 (LHV)在焚烧期间)通常在大多数生命周期评估(LCA)的模型中常见。它可以通过源(从收集到最终处理)或型(直接操作,间接 - 上游,间接下游)或气体(CH4,CO2,N2O)分解排放,并为用户提供灵活选择进程或修改输入参数检查模拟模拟中对不确定性的影响。同样重要的是透明和应用用于量化废物管理系统排放的排放因子的清晰度。该模型在发达和发展中经济体的背景下进行了测试,以评估废物成分,管理流程,能源消耗和其他参数对排放变化的影响。结果表明,通过材料回收,生物处理,食品废物转移和/或能量回收的最佳实践可以有助于在24至95%之间的排放量大,这取决于测试系统。在关闭时,我们认为模型适用于提供政策规划和决策关于投资碳信用的工艺存取的决策指导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号