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Flue Gas Conditioning For Reducing Suspended Particulate Matter From Thermal Power Stations

机译:烟气调节以减少火力发电厂的悬浮颗粒物

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Increased population and industrial development demands sustainable electricity, the majority of which is produced by thermal power stations, which utilize coal as a fuel all over the world. Coal burning results in generation of large quantities of coal residues, which contains very fine particles that tend to become air-borne and which contribute to the formation of suspended particulate matter (SPM). Hence, in order to safeguard the environment against the emission of SPM, pollution control devices, such as cyclone separators, bag filters and electrostatic precipitators (ESPs) have been employed. In addition, flue gas conditioning (FCC) is practiced to increase the efficiency of ESPs, with the addition of chemical additives, or sprinkling water to the flue gas. This process increases the collection efficiency of the electrostatic precipitators, and thereby results in reduction of the SPM level. However, the effects of the process, which play an important role in efficient FGC, need to be investigated thoroughly before utilizing this method. With this in view, a critical review of various flue gas conditioning techniques employed for controlling the SPM level in thermal power stations is presented in this paper. The present study also reports analyses of data obtained from different thermal power stations in India as well as the rest of the world.
机译:不断增长的人口和工业发展需要可持续的电力,其中绝大部分是由火力发电厂生产的,这些火力发电厂在世界各地都使用煤炭作为燃料。燃煤会导致产生大量的煤渣,其中含有非常细小的颗粒,这些颗粒往往会随空气传播,并有助于形成悬浮颗粒物(SPM)。因此,为了保护环境免受SPM的排放,已采用了污染控制设备,例如旋风分离器,袋式除尘器和静电除尘器(ESP)。另外,通过添加化学添加剂或向烟气中洒水,实践了烟气调节(FCC)来提高ESP的效率。该过程提高了静电除尘器的收集效率,从而导致SPM水平降低。但是,在使用此方法之前,需要对彻底影响此过程的效果(在高效FGC中起重要作用)进行研究。有鉴于此,本文提出了对用于控制火力发电厂SPM水平的各种烟气调节技术的严格审查。本研究还报告了对从印度以及世界其他地方的不同火力发电厂获得的数据的分析。

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