首页> 外文期刊>Environmental Science and Pollution Research >Characteristics of volatile compound emission and odor pollution from municipal solid waste treating/disposal facilities of a city in Eastern China
【24h】

Characteristics of volatile compound emission and odor pollution from municipal solid waste treating/disposal facilities of a city in Eastern China

机译:中国市政固体废物处理/处置设施挥发复合排放及气味污染的特征

获取原文
获取原文并翻译 | 示例
           

摘要

Transfer station, incineration plant, and landfill site made up the major parts of municipal solid waste disposal system of S city in Eastern China. Characteristics of volatile compounds (VCs) and odor pollution of each facility were investigated from a systematic perspective. Also major index related to odor pollution, i.e., species and concentration of VCs, olfactory odor concentration, and theoretic odor concentration, was quantified. Oxygenated compounds and hydrocarbons were the most abundant VCs in the three facilities. Different chemical species were quantified, and the following average concentrations were obtained: transfer station, 54 VCs, 2472.47 mu g/m(3); incineration plant, 75 VCs, 33,129.25 mu g/m(3); and landfill site, 71 VCs, 1694.33 mu g/m(3). Furthermore, the average olfactory odor concentrations were 20,388.80; 50,677.50; and 4951.17, respectively. The highest odor nuisance was detected in the waste tipping port of the incineration plant. A positive correlation between the olfactory and chemical odor concentrations was found with R-2 = 0.918 (n = 15, P < 0.01). The result shows odor pollution risk transfer from landfill to incineration plant when adopting thermal technology to deal with the non-source-separated waste. Strong attention thus needs to be paid on the enclosed systems in incineration plant to avoid any accidental odor emission.
机译:转车站,焚烧厂和垃圾填埋场占中国东部城市市政固体废物处理系统的主要部分。从系统的角度研究了每个设施的挥发性化合物(VCs)和气味污染的特征。还定量了与气味污染有关的主要指数,即VCS的物种和浓度,嗅觉气味浓度和理论气味浓度。含氧化合物和烃是三种设施中最丰富的VCS。量化不同的化学物质,得到以下平均浓度:转移站,54 Vcs,2472.47μg/ m(3);焚烧植物,75 VCS,33,129.25 mu g / m(3);和垃圾填埋场,71 vcs,1694.33 mu g / m(3)。此外,平均嗅觉气味浓度为20,388.80; 50,677.50;和4951.17分别。在焚烧厂的废倾翻港中检测到最高气味滋扰。发现嗅觉和化学气味浓度之间的正相关性,R-2 = 0.918(n = 15,p <0.01)。结果表明,在采用热技术时,从垃圾填埋场到焚烧厂的气味污染风险转移,以应对非源分离的废物。因此,需要在焚烧厂中的封闭系统上支付强烈的注意,以避免任何意外的气味排放。

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