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Biofiltration of high concentration of H2S in waste air under extreme acidic conditions

机译:极端酸性条件下废气中高浓度H2S的生物过滤

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摘要

Removal of high concentrations of hydrogen sulfide using a biofilter packed with expanded schist under extreme acidic conditions was performed. The impact of various parameters such as H2S concentration, pH changes and sulfate accumulation on the performances of the process was evaluated. Elimination efficiency decreased when the pH was lower than 1 and the sulfate accumulation was more than 12 mg S-SO42-/g dry media, due to a continuous overloading by high H2S concentrations. The influence of these parameters on the degradation of H2S was clearly underlined, showing the need for their control, performed through an increase of watering flow rate. A maximum elimination capacity (ECmax) of 24.7 g m(-3) h(-1) was recorded. As a result, expanded schist represents an interesting packing material to remove high H2S concentration up to 360 ppmv with low pressure drops. In addition, experimental data were fitted using both Michaelis-Menten and Haldane models, showing that the Haldane model described more accurately experimental data since the inhibitory effect of H2S was taken into account.
机译:使用装有膨胀片岩的生物滤池在极端酸性条件下进行了高浓度硫化氢的去除。评估了各种参数(例如H2S浓度,pH变化和硫酸盐积累)对工艺性能的影响。当pH值低于1且硫酸盐积累超过12 mg S-SO42- / g干介质时,由于高H2S浓度持续超载,消除效率降低。明确强调了这些参数对H2S降解的影响,表明需要通过增加浇水流量来控制它们。记录的最大消除容量(ECmax)为24.7 g m(-3)h(-1)。结果,膨胀的片岩代表了一种有趣的包装材料,可在低压降下去除高达360 ppmv的高H2S浓度。此外,使用Michaelis-Menten模型和Haldane模型对实验数据进行拟合,结果表明,由于考虑到H2S的抑制作用,Haldane模型更准确地描述了实验数据。

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