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全球变暖因素在 40 种通用城市废物管理情景中进行建模。

Global warming factors modelled for 40 generic municipal waste management scenarios.

机构信息

Department of Environmental Engineering, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.

出版信息

Waste Manag Res. 2009 Nov;27(9):871-84. doi: 10.1177/0734242X09350333. Epub 2009 Oct 16.

Abstract

Global warming factors (kg CO(2)-eq.-tonne(-1) of waste) have been modelled for 40 different municipal waste management scenarios involving a variety of recycling systems (paper, glass, plastic and organics) and residual waste management by landfilling, incineration or mechanical-biological waste treatment. For average European waste composition most waste management scenarios provided negative global warming factors and hence overall savings in greenhouse gas emissions: Scenarios with landfilling saved 0-400, scenarios with incineration saved 200-700, and scenarios with mechanical-biological treatment saved 200- 750 kg CO(2)-eq. tonne(- 1) municipal waste depending on recycling scheme and energy recovery. Key parameters were the amount of paper recycled (it was assumed that wood made excessive by paper recycling substituted for fossil fuel), the crediting of the waste management system for the amount of energy recovered (hard-coal-based energy was substituted), and binding of biogenic carbon in landfills. Most other processes were of less importance. Rational waste management can provide significant savings in society's emission of greenhouse gas depending on waste composition and efficient utilization of the energy recovered.

摘要

已针对涉及各种回收系统(纸、玻璃、塑料和有机物)和通过填埋、焚烧或机械-生物废物处理进行剩余废物管理的 40 种不同城市废物管理情景,对全球变暖因素(kg CO2-eq.-吨-1 废物)进行建模。对于欧洲平均废物成分,大多数废物管理情景提供了负的全球变暖因素,从而实现了温室气体排放的总体节省:填埋情景节省 0-400kg CO2-eq. 吨-1 城市废物,焚烧情景节省 200-700kg CO2-eq. 吨-1 城市废物,机械-生物处理情景节省 200-750kg CO2-eq. 吨-1 城市废物,具体取决于回收方案和能源回收情况。关键参数是回收的纸张数量(假设通过纸张回收产生的过量木材替代了化石燃料)、废物管理系统对所回收能源数量的核算(硬煤基能源被替代)以及填埋场中生物成因碳的固定。其他大多数过程的重要性较小。根据废物成分和所回收能源的有效利用,合理的废物管理可以为社会温室气体排放提供显著节省。

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