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Pierced cylindrical gas inlet device for sulfur dioxide removal from waste gas streams

机译:穿孔的圆柱形进气装置,用于从废气流中去除二氧化硫

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摘要

Configuration of a gas inlet device can significantly affect the performance of a tower for gas purification or separation. In this paper, a pierced cylindrical inlet device is investigated which consists of an evenly perforated wall and is tangentially located at the lower portion of a jet bubble reactor where an absorbent slurry exists. Incoming gas streams are evenly distributed into and flow through the absorbent slurry after leaving the inlet device, therefore, intensive agitation is resulted. Consequently, the gas, liquid, and solid phases mix completely, and the interfacial area for mass transfer within the tower increases dramatically. Results show that the tower achieved 95% SO2 removal and over 90% dust removal at a pressure drop of about 3 kPa for the entire tower, an incoming SO2 concentration of 0.12% (v/v) and a gas flux of about 2000 m~3/h. When the depth of immersion of the grid holes increased from 0 mm to 100 mm, the pressure drop within the tower increased from 1.5 kPa to 3 kPa, and removal efficiency of SO2 increased from 50% to 95%. This gas inlet device overcame the problems of uneven distribution and short-circuiting of gas streams within a typical gas inlet device in a jet bubble reactor, and removal efficiency of SO2 by the tower was improved considerably. Clogging and scaling within the tower were also avoided. This type of gas inlet device is simple and effective for purification and treatment of waste gas streams.
机译:进气装置的配置会严重影响气体净化或分离塔的性能。在本文中,研究了一种穿孔的圆柱形进口装置,该装置由均匀穿孔的壁组成,并且切向位于喷射浆反应器的下部,那里存在吸收性浆料。进入的气体流在离开入口装置之后均匀地分配到吸收剂浆液中并流过吸收剂浆液,因此,导致剧烈搅拌。因此,气相,液相和固相完全混合,并且塔内传质的界面面积急剧增加。结果表明,在整个塔内约3 kPa的压降下,塔实现了95%的SO2去除率和90%以上的除尘率,输入的SO2浓度为0.12%(v / v),气体通量约为2000 m〜。 3 /小时。当格栅孔的浸入深度从0 mm增加到100 mm时,塔内的压降从1.5 kPa增加到3 kPa,SO2的去除效率从50%增加到95%。该气体入口装置克服了喷射气泡反应器中典型的气体入口装置内的气流分布不均和短路的问题,并且塔中SO 2的去除效率得到显着提高。还避免了塔内的堵塞和结垢。这种类型的进气装置对于废气流的净化和处理是简单而有效的。

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