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Rapid Start-Up of a High Performance Bio-Trickling Filter Removal of H2S

机译:快速启动高效生物滴滤除H2S

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hydrogen sulfur was regarded as the research object in this study. Correlated research of biological treatment of hydrogen sulfide was investigated. Domestication in an aeration flask was employed to screen out the optimal bacteria (Thiobacillus). Na2S was used as the inducer in the domestication period. Gas-liquid phase joint inoculation method could start up biotrickling filter effectively. The effect of air surface velocity (0.20-1.00 m3/h), the concentration of SO42- and S2- in the liquid, empty bed residence time (EBRT) (150-11s) and the removal capacity were investigated. The overall start-up period was only 2days with high removal efficiency of 99%. In this study, biotrickling filter run more than 150 days with high removal performance. The optimal empty bed residence time was 30 s when in a constant inlet loading of 35.5gH2S/m3/h. The experiment showed that domestication in aeration flask could select the optimal bacteria to degrade H2S. Gas-liquid inoculation method could shorten the start-up period. Furthermore, the biotrickling filter exhibited a high performance in the long running.
机译:氢硫被认为是该研究中的研究目的。研究了对硫化氢生物处理的相关研究。使用曝气烧瓶中的驯化以筛选出最佳的细菌(硫嘧啶)。 Na2s被用作驯化期的诱导剂。气液相位接种方法可以有效地启动生物轧制过滤器。研究了空气表面速度(0.20-1.00m3 / h),SO42-和S2中的浓度,空床停留时间(EBRT)(150-11s)和去除能力的影响。整体启动期仅为2天,较高效率为99%。在这项研究中,生物立滤网超过150天,拆除性能高。在35.5gH2s / m3 / h的恒定入口负载下,最佳空床停留时间为30秒。实验表明,通气烧瓶中的驯化可以选择最佳的细菌来降解H2。气液接种方法可以缩短启动期。此外,生物轧制过滤器在长时间运行中表现出高性能。

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