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Removal of SO2 from gas streams by oxidation using plasma-generated hydroxyl radicals

机译:使用等离子体产生的羟基自由基通过氧化去除气流中的SO2

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The key problem for the removal of SO2 by electrical discharge methods is how to obtain the hydroxyl radicals at high concentration and large production rates. With the micro-gap discharge method, O-2 and H2O in simulated gas streams (N-2/O-2/H2O/SO2) are ionized into a large number of OH. radicals to oxidize SO2 into SO3 which reacts with H2O forming H2SO4 droplets at 120 degrees C in the absence of any catalyst or absorbent. The droplets are captured with an electrostatic precipitator. As a result, conversion of SO2 to primarily H2SO4 is limited by the generation of OH. radicals. By increasing the reduced field and concentrations of O-2 and H2O, the amount of OH. radicals increase resulting in more removal of SO2 from gas streams. The removal efficiency of SO2 reaches 100% when the residence time is only 0.74 s. Therefore, a new gas-phase oxidation method for removal of SO2 without NH3 additive is found.
机译:通过放电方法除去SO 2的关键问题是如何以高浓度和高生产率获得羟基自由基。通过微间隙放电法,模拟气流(N-2 / O-2 / H2O / SO2)中的O-2和H2O被电离成大量的OH。自由基将SO2氧化成SO3,SO2与H2O反应,在没有任何催化剂或吸收剂的情况下,在120摄氏度下与H2O形成H2SO4液滴。用静电除尘器捕获液滴。结果,通过OH的产生限制了SO 2向主要为H 2 SO 4的转化。部首。通过增加减少的磁场以及O-2和H2O的浓度,可以提高OH的含量。自由基增加,导致从气流中更多地去除SO2。当停留时间仅为0.74 s时,SO2的去除效率达到100%。因此,找到了一种新的气相氧化方法,用于在不添加NH3的情况下去除SO2。

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