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首页> 外文期刊>ACS Omega >Mechanistic Influence of Chemical Agglomeration Agents on Removal of Inhalable Particles from Coal Combustion
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Mechanistic Influence of Chemical Agglomeration Agents on Removal of Inhalable Particles from Coal Combustion

机译:化学凝聚试剂对煤燃烧中可吸入可吸入颗粒的机械影响

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Particle pollution has been a research topic attracting the attention of the researchers around the world because inhalable particles are hazardous to humans and the environment. The major resource of particle pollution is the combustion of coal and biomass. Dust collectors, electrostatic precipitators, and bag filters are required to remove particles from flue. Because of the large specific surface areas of inhalable particles, they easily agglomerate to form larger aggregates; therefore, improving the capture efficiency of dust collectors is of importance. Herein, chemical agglomeration agents were sprayed into a turbulent agglomeration chamber to improve the removal efficiency of inhalable particles. The results showed that the total removal efficiency of inhalable particles was 59.2% for the three-composition agglomeration agents of kappa carrageenans/Tween-80/NH_(4)Cl (KC/TW/NH_(4)Cl). The mean particle diameter increased from 2.8 μm before agglomeration to above 10.0 μm after agglomeration. In the agglomeration process, nonionic TW accelerates the wetting properties, in which the polymer, KC, or anion polyacrylamide, promotes prolongation of the contact time between droplets and particles. Two different removal mechanisms are proposed to explain the effect of chemical agglomeration agents. Immersion agglomeration described the agglomeration process of only fine particles, and distribution agglomeration supported the capture of large particles for fine ones in polydispersed aerosols.
机译:粒子污染是一种研究主题,吸引了世界各地的研究人员的注意,因为可吸入的粒子对人类和环境有害。粒子污染的主要资源是煤和生物质的燃烧。灰尘收集器,静电除尘器和袋式过滤器需要从烟道中除去颗粒。由于可吸入颗粒的大的比表面积,它们易于聚集以形成较大的聚集体;因此,提高集尘器的捕获效率是重要的。这里,将化学聚凝聚剂喷射到湍流凝聚室中以提高可吸入颗粒的去除效率。结果表明,可吸入颗粒的总除去效率为κAbrageenans/ Tween-80 / NH_(4)Cl(KC / TW / NH_(4)Cl)的三组合聚集剂。聚集后,平均粒径从2.8μm增加到10.0μm以上的2.8μm。在聚集过程中,非离子型加速润湿性质,其中聚合物,Kc或阴离子聚丙烯酰胺,促进液滴和颗粒之间的接触时间延长。提出了两种不同的去除机制来解释化学聚凝聚剂的作用。浸渍凝聚描述了仅细颗粒的附聚过程,分配聚集支持捕获多分散的气溶胶中的细颗粒的大颗粒。

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