首页> 外文会议>NAWTEC20;ASME annual North American waste to energy conference >Resource Recovery - The Contribution of Energy-f rom-Waste Plants
【24h】

Resource Recovery - The Contribution of Energy-f rom-Waste Plants

机译:资源回收-垃圾发电厂的贡献

获取原文

摘要

Energy-from-Waste plants using grate-based systems have gained world-wide acceptance as the preferred method for the sustainable treatment of waste. Key factors are not only the reduction of waste volume and mass and the destruction or separation of pollutants but also the efficient production and use of energy (electricity, district heating/ cooling, process steam), compliant disposal and the recovery of resources from combustion residues (e.g. metals, rare earths). International requirements relating to energy efficiency and materials recovery by means of thermo-recycling in Energy-from-Waste plants call for the continuing development and optimization of existing technologies and concepts. The technologies and processes for the recovery of reusable materials from dry-discharged bottom ash and from filter ash point to the key role that Energy-from-Waste plants are able to play in the efficient conservation of resources. It is primarily thermal treatment with dry discharge and subsequent processing of the bottom ash fractions that enables Energy-from-Waste plants to justify their status as universal recyclers. In addition to recovery of the energy inherent in the waste, the treatment of dry-discharged bottom ash is an important contribution to compliance with raw material and climate policies and to the promotion of closing the material cycle in general. Furthermore, dry bottom ash discharge represents a further step towards waste-free operation and 'after-care-free' landfills. This paper documents the potential of Energy-from-Waste plants for the recovery of resources and provides examples of recent developments and large-scale implementations of innovative recovery technologies in Europe.
机译:使用基于炉排的系统的垃圾焚烧发电厂已经获得了全世界的认可,成为可持续处理垃圾的首选方法。关键因素不仅是减少废物的数量和质量以及污染物的破坏或分离,而且还包括有效生产和使用能源(电,区域供热/制冷,工艺蒸汽),合规处置以及从燃烧残余物中回收资源(例如金属,稀土)。有关废热能源工厂中通过热循环进行能源效率和材料回收的国际要求要求对现有技术和概念进行持续开发和优化。从干排放的底灰和过滤灰中回收可再利用材料的技术和过程,都表明了废料能源工厂在有效节约资源方面所起的关键作用。它主要是通过干排料进行的热处理以及对底部灰分的后续处理,从而使垃圾焚烧发电厂能够证明其作为通用回收站的地位。除了回收废物中固有的能量外,干排灰的处理对遵守原材料和气候政策以及促进总体上结束材料循环也具有重要作用。此外,干底灰的排放代表了向无废料运营和“无后处理”垃圾填埋场迈出的又一步。本文记录了废料能源工厂在资源回收方面的潜力,并提供了欧洲创新回收技术的最新发展和大规模实施的实例。

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