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Performance of three pilot-scale immobilized-cell biotrickling filters for removal of hydrogen sulfide from a contaminated air steam

机译:三种中试规模的固定化细胞生物滴滤器的性能用于从受污染的空气蒸汽中去除硫化氢

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摘要

Hydrogen sulfide (H2S) is a major malodorous compound emitted from wastewater treatment plants. In this study, the performance of three pilot-scale immobilized-cell biotrickling filters (BTFs) spacked with combinations of bamboo charcoal and ceramsite in different ratios was investigated in terms of H2S removal. Extensive tests were performed to determine the removal characteristics, pressure drops, metabolic products, and removal kinetics of the BTFs. The BTFs were operated in continuous mode at low loading rates varying from 0.59 to 5.00 g H2S m−3 h−1 with an empty bed retention time (EBRT) of 25 s. The removal efficiency (RE) for each BTF was >99% in the steady-state period, and high standards were met for the exhaust gas. It was found that a multilayer BTF had a slight advantage over a perfectly mixed BTF for the removal of H2S. Furthermore, an impressive amount >97% of the H2S was eliminated by 10% of packing materials near the inlet of the BTF. The modified Michaelis–Menten equation was adopted to describe the characteristics of the BTF, and Ks and Vm values for the BTF with pure bamboo charcoal packing material were 3.68 ppmv and 4.26 g H2S m−3 h−1, respectively. Both bamboo charcoal and ceramsite demonstrated good performance as packing materials in BTFs for the removal of H2S, and the results of this study could serve as a guide for further design and operation of industrial-scale systems.
机译:硫化氢(H2S)是废水处理厂排放的主要恶臭化合物。在这项研究中,从H2S去除方面研究了三种中试规模的固定化细胞生物滴滤滤池(BTF),它们以不同的比例组合了竹炭和陶粒的组合。进行了广泛的测试以确定BTF的去除特性,压降,代谢产物和去除动力学。 BTF在连续模式下以0.59至5.00 g H2S m -3 h -1 的低负载率运行,空床保留时间(EBRT)为25s 。在稳态期间,每种BTF的去除效率(RE)均> 99%,并且达到了废气的高标准。已发现,多层BTF在除去H2S方面比完全混合的BTF略有优势。此外,BTF入口附近的10%的填充材料消除了数量可观的> 97%的H2S。采用修正的Michaelis–Menten方程描述BTF的特性,纯竹炭包装材料的BTF的Ks和Vm值为3.68 ppmv和4.26 g H2S m −3 h -1 。竹炭和陶粒都表现出作为BTF中H2S去除包装材料的良好性能,这项研究的结果可为进一步设计和运行工业规模系统提供指导。

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