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Performance of biotrickling filters for hydrogen sulfide removal under starvation and shock loads conditions

机译:在饥饿和冲击负荷条件下生物滴滤池去除硫化氢的性能

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摘要

In the industrial operation of biotrickling filters for hydrogen sulfide (H2S) removal, shock loads or starvation was common due to process variations or equipment malfunctions. In this study, effects of starvation and shock loads on the performance of biotrickling filters for H2S removal were investigated. Four experiments were conducted to evaluate the changes of biomass and viable bacteria numbers in the biotrickling filters during a 24-d starvation. Compared to biomass, viable bacteria numbers decreased significantly during the starvation, especially when airflow was maintained in the absence of spray liquid. During the subsequent re-acclimation, all the bioreactors could resume high removal efficiencies within 4 d regardless of the previous starvation conditions. The results show that the re-acclimation time, in the case of biotrickling filters for H2S removal, is mainly controlled by viable H2S oxidizing bacteria numbers. On the other hand, the biotrickling filters can protect against shock loads in inlet fluctuating H2S concentration after resuming normal operation. When the biotrickling filters were supplied with H2S at an input of lower than 1700 mg/m3, their removal efficiencies were nearly 98% regardless of previous H2S input.
机译:在用于脱除硫化氢(H2S)的生物滴滤池的工业运行中,由于工艺变化或设备故障而引起的冲击负荷或饥饿是很普遍的。在这项研究中,研究了饥饿和冲击负荷对生物滴滤池去除H2S性能的影响。进行了四个实验,以评估24 d饥饿期间生物滴滤池中生物量和活菌数量的变化。与生物量相比,饥饿期间的存活细菌数量显着减少,尤其是在没有喷雾液​​体的情况下保持气流的情况下。在随后的重新适应过程中,无论之前的饥饿条件如何,所有生物反应器都可以在4天内恢复高去除效率。结果表明,在采用生物滴滤池去除H2S的情况下,重新适应时间主要受可行的H2S氧化细菌数量控制。另一方面,生物滴流过滤器可在恢复正常运行后,防止进口中波动的H2S浓度引起冲击负荷。当向生物滴滤滤池供入的H2S低于1700 mg / m 3 时,无论以前的H2S输入如何,其去除效率均接近98%。

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