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The role of pressure drop and flow redistribution on modeling mercury control using sorbent injection in baghouse filters

机译:袋式除尘器中使用吸附剂注入时,压降和流量重新分布对汞控制建模的作用

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A mathematical model based on simple cake filtration theory was coupled to a previously developed two-stage mathematical model for mercury (Hg) removal using powdered activated carbon injection upstream of a bag-house filter. Values of the average permeability of the filter cake and the filter resistance extracted from the model were 4.4 x 10(-13) m(2) and 2.5 X 10(-4) m(-1), respectively. The flow is redistributed during partial cleaning of the filter, with flows higher across the newly cleaned filter section. The calculated average Hg removal efficiency from the baghouse is lower because of the high mass flux of Hg exiting the filter in the newly cleaned section. The model shows that calculated average Hg-removal is affected by permeability, filter resistance, fraction of the baghouse cleaned, and cleaning interval.
机译:将基于简单滤饼过滤理论的数学模型与先前开发的两级数学模型相结合,该模型使用袋式除尘器上游的粉末状活性炭喷射去除汞(Hg)。从模型中提取的滤饼的平均渗透率和滤池阻力的值分别为4.4 x 10(-13)m(2)和2.5 X 10(-4)m(-1)。在部分清洁过滤器时,流量会重新分配,新清洁的过滤器部分的流量会更高。从袋式除尘器算出的平均Hg去除效率较低,这是因为在新清洁区中有大量Hg从过滤器中排出。该模型表明,计算出的平均除汞量受渗透性,过滤器阻力,袋式除尘器清洁比例和清洁间隔的影响。

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