首页> 外文期刊>Energy & fuels >Emissions from the Premixed Combustion of Gasified Polyethylene
【24h】

Emissions from the Premixed Combustion of Gasified Polyethylene

机译:气化聚乙烯预混燃烧的排放

获取原文
获取原文并翻译 | 示例
       

摘要

An investigation was conducted on pollutants emitted from steady-state, steady-flow gasification and combustion of polyethylene (PE) in a two-stage furnace. The polymer, in pulverized form, was first pyrolyzed at 1000 ℃, and subsequently, its gaseous pyrolyzates were burned, upon mixing with air at high temperatures (900-1100 ℃). The motivation for this indirect type of burning PE was to attain nominally premixed combustion of the pyrolyzate gases with air, thereby achieving lower pollutant emissions than those emanating from the direct burning of the solid PE polymer. This work assessed the effluents of the two-stage furnace and examined the effects of the combustion temperature, as well as the polymer feed rate and the associated fuel/air equivalence ratio (0.3 < φ > < 1.4). It was found that, whereas the yield of pyrolysis gas decreased with an increasing polymer feed rate, its composition was nearly independent of the feed rate. CO_2 emissions peaked at an equivalence ratio near unity, while the CO emissions increased with an increasing equivalence ratio. The total light volatile hydrocarbon and semivolatile polycyclic aromatic hydrocarbon (PAH) emissions of combustion increased with an increasing equivalence ratio. The generated particulates were mostly submicrometer in size. Overall, PAH and soot emissions from this indirect burning of PE were an order of magnitude lower than corresponding emissions from the direct burning of the solid polymer, obtained previously in this laboratory using identical sampling and analytical techniques. Because pyrolysis of this polymer requires a nominal heat input that amounts to only a diminutive fraction of the heat released during its combustion, implementation of this technique is deemed advantageous.
机译:在两级炉中对稳态,稳定流化气化和聚乙烯(PE)燃烧排放的污染物进行了研究。粉末状的聚合物首先在1000℃下热解,然后在高温(900-1100℃)下与空气混合时燃烧其气态热解物。这种间接燃烧PE的动机是使热解气体与空气进行名义上的预混合燃烧,从而比直接燃烧固体PE聚合物产生的污染物排放更低。这项工作评估了两级炉的流出物,并检查了燃烧温度,聚合物进料速率和相关的燃料/空气当量比(0.3 <φ> <1.4)的影响。发现,尽管热解气体的产率随着聚合物进料速率的增加而降低,但是其组成几乎与进料速率无关。 CO_2排放以当量比接近1达到峰值,而CO排放随着当量比增加而增加。燃烧的总轻质挥发性烃和半挥发性多环芳烃(PAH)排放随着当量比的增加而增加。产生的颗粒的大小大多为亚微米。总体而言,这种PE间接燃烧所产生的PAH和烟尘排放量比固体聚合物直接燃烧所产生的相应排放量低一个数量级,后者是以前在该实验室中使用相同的采样和分析技术获得的。由于该聚合物的热解需要标称的热量输入,该热量仅相当于其燃烧过程中释放的热量的很小一部分,因此该技术的实施被认为是有利的。

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