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Concomitant Adsorption And Desorption Of Organic Vapor In Dry And Humid Air Streams Using Microwave And Direct Electrothermal Swing Adsorption

机译:微波和直接电热摆动吸附技术在干湿空气流中同时吸附和解吸有机蒸气

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Industrial gas streams can contain highly variable organic vapor concentrations that need to be processed before they are emitted to the atmosphere. Fluctuations in organic vapor concentrations make it more difficult to operate a biofilter when compared to a constant vapor concentration. Hence, there is a need to stabilize the concentration of rapidly fluctuating gas streams for optimum operation of biofilters. This paper describes new concomitant adsorption desorption (CAD) systems used with variable organic vapor concentration gas streams to provide the same gas stream, but at a user-selected constant vapor concentration that can then be more readily processed by a secondary air pollution control device such as a biofilter. The systems adsorb organic vaporfrom gas streams and simultaneously heat the adsorbent using microwave or direct electrothermal energy to desorb the organic vapor at a user-selected set-point concentration. Both systems depicted a high degree of concentration stabilization with a mean relative deviation between set-point and stabilized concentration of 0.3-0.4%. The direct electrothermal CAD system was also evaluated to treat a humid gas stream (relative humidity = 85%) that contained a variable organic vapor concentration. The high humidity did not interfere with CAD operation as water vapor did not adsorb but penetrated through the adsorbent. These results are important because they demonstrate the ability of CAD to effectively dampen concentration fluctuation in gas streams.
机译:工业气流可能包含高度可变的有机蒸气浓度,需要将其排放到大气中之前进行处理。与恒定蒸汽浓度相比,有机蒸汽浓度的波动使操作生物过滤器更加困难。因此,为了生物过滤器的最佳操作,需要稳定快速波动的气流的浓度。本文介绍了新的伴随吸附解吸(CAD)系统,该系统与可变有机蒸气浓度的气流一起使用,以提供相同的气流,但是处于用户选择的恒定蒸气浓度下,然后可以通过二级空气污染控制设备更轻松地对其进行处理。作为生物过滤器。该系统从气流中吸收有机蒸气,并同时使用微波或直接电热能加热吸附剂,从而以用户选择的设定浓度解吸有机蒸气。两种系统均显示出高度的浓度稳定度,设定点和稳定浓度之间的平均相对偏差为0.3-0.4%。还评估了直接电热CAD系统,以处理含有可变有机蒸气浓度的潮湿气流(相对湿度= 85%)。高湿度不会干扰CAD操作,因为水蒸气不会吸附,但会穿透吸附剂。这些结果很重要,因为它们证明了CAD有效抑制气流中浓度波动的能力。

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