首页> 外文期刊>Waste management & research >Environmental assessment of waste incineration in a life-cycle-perspective (EASEWASTE)
【24h】

Environmental assessment of waste incineration in a life-cycle-perspective (EASEWASTE)

机译:生命周期内废物焚化的环境评估(EASEWASTE)

获取原文
获取原文并翻译 | 示例
       

摘要

A model for life-cycle assessment of waste incinerators is described and applied to a case study for illustrative purposes. As life-cycle thinking becomes more integrated into waste management, quantitative tools for assessing waste management technologies are needed. The presented model is a module in the life-cycle assessment model EASEWASTE. The module accounts for all uses of materials and energy and credits the incinerator for electricity and heat recovered. The energy recovered is defined by the user as a percentage of the energy produced, calculated on the lower heating value of the wet waste incinerated. Emissions are either process-specific (related to the amount of waste incinerated) or input-specific (related to the composition of the waste incinerated), while mass transfer to solid outputs are governed by transfer coefficients specified by the user. The waste input is defined by 48 material fractions and their chemical composition. The model was used to quantify the environmental performance of the incineration plant in Aarhus, Denmark before and after its upgrading in terms of improved flue gas cleaning and energy recovery. It demonstrated its usefulness in identifying the various processes and substances that contributed to environmental loadings as well as to environmental savings. The model was instrumental in demonstrating the importance of the energy recovery system not only for electricity but also heat from the incinerator.
机译:描述了废物焚化炉的生命周期评估模型,并将其应用于案例研究以进行说明。随着生命周期思维越来越融入废物管理中,需要用于评估废物管理技术的定量工具。提出的模型是生命周期评估模型EASEWASTE中的模块。该模块说明了材料和能源的所有使用,并将焚化炉的电能和热能记入贷方。用户将回收的能量定义为所产生的能量的百分比,该百分比是根据焚化的湿废物的较低热值计算得出的。排放要么是特定于过程的(与焚化的废物量有关),要么是特定投入(与焚化的废物的成分有关),而向固体输出的质量转移则由用户指定的转移系数来控制。废物输入是由48种材料成分及其化学成分定义的。该模型用于量化丹麦奥尔胡斯焚化厂升级前后的环境绩效,以改善烟道气清洁和能量回收。它证明了其在识别导致环境负荷和环境节约的各种过程和物质方面的有用性。该模型有助于证明能量回收系统的重要性,不仅对于电力,而且对于焚烧炉的热量也是如此。

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