首页> 外文会议>International Conference on Environmental Economics and Investment Assessment; 2006; Mykonos(GR) >Life cycle evaluation and economic considerations of the pyrolysis-gasitication of municipal solid waste in Singapore
【24h】

Life cycle evaluation and economic considerations of the pyrolysis-gasitication of municipal solid waste in Singapore

机译:新加坡城市固体废物热解气化的生命周期评估和经济考虑

获取原文
获取原文并翻译 | 示例

摘要

Due to limited territory for landfills in Singapore, incineration is given top priority for the treatment of wastes that are not recovered, reused or recycled. Unfortunately, incineration emissions contain gases which possess high polluting characteristics that can severely affect human health in the long run. In this paper, a pyrolysis-gasification technology is introduced and compared with an existing incinerator operating in Singapore. Pyrolysis-Gasification technologies have received increasing attention because the process can produce high quality fuels, such as Syngas. A life cycle assessment approach was employed to study the stream of MS W - from generation to its final conversion. The economic considerations, including social costs of air emissions associated with the stream of MSW at each stage, as well as, the economic values of the final products (electricity or Syngas), was evaluated. It was projected that the existing incineration and proposed plants' annual values (P~(Total)) were nearly similar - approximately 70 million/year without considering the social or economic costs of pollution. When the costs of air emissions were taken into account, the new pyrolysis-gasification technology displayed a significant advantage over Incineration. Sensitivity analysis demonstrated that the time to "pay back" the capital expenditure for the proposed plant changed considerably with fluctuations in the amount of Syngas produced and operating costs, but less with capital costs.
机译:由于新加坡填埋场的范围有限,焚化是处理未回收,再利用或回收的废物的重中之重。不幸的是,焚烧排放的气体具有高污染特性,从长远来看会严重影响人类健康。本文介绍了一种热解气化技术,并将其与新加坡现有的焚化炉进行了比较。热解气化技术已受到越来越多的关注,因为该过程可以产生高质量的燃料,例如合成气。生命周期评估方法被用于研究MS W的流-从产生到最终转化。评估了经济考虑因素,包括每个阶段与城市固体废弃物流相关的空气排放的社会成本,以及最终产品(电力或合成气)的经济价值。预计现有焚化厂和拟建工厂的年产值(P〜(总计))几乎相似-大约为每年7000万,而没有考虑污染的社会或经济成本。考虑到废气排放成本后,新的热解气化技术比焚化技术具有明显优势。敏感性分析表明,“偿还”拟建工厂的资本支出的时间随着合成气产量和运营成本的波动而发生了很大变化,而随着资本成本的变化却有所减少。

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