Biochemical Engineering Department, Faculty of Chemical Engineering, Tarbiat Modares University, Tehran, Iran.
Department of Water Supply, Sanitation and Environmental Engineering, IHE Delft Institute for Water Education, P.O. Box 3015, 2611 AX, Delft, the Netherlands.
Chemosphere. 2023 Nov;341:140022. doi: 10.1016/j.chemosphere.2023.140022. Epub 2023 Aug 30.
A gaseous mixture of methanol (M), α-pinene (P), and hydrogen sulfide (H) was treated in one/two-liquid phase biotrickling filters (OLP/TLP-BTFs) at varying inlet concentrations and at an empty bed residence time (EBRT) of 57 s. The performance of TLP-BTF [BTF (A)] improved significantly in terms of M and P removal due to the presence of silicone oil at 5% v/v. The maximum elimination capacities (ECs) of M, P, and H in BTF (A) were obtained as 309, 73, and 56 g m h, respectively. While, the maximum ECs achieved in the BTF operated without silicone oil [BTF (B)] were 172, 28, and 21 g m h for M, P, and H removal, respectively. Increasing the inlet concentration of H from 32 to 337 ppm inhibited P removal in both the BTFs. The presence of silicone oil enhanced gas-liquid mass transfer, prevented the BTF from experiencing substrate inhibition effects and allowed reaching high ECs for M and P. The experiments showed promising results for the long-term operation of removal of M, P, and H mixture in a one-stage TLP-BTF with the decreasing negative effects of M and H on P degradation.
甲醇(M)、α-蒎烯(P)和硫化氢(H)的气态混合物在一/两相生物滴滤塔(OLP/TLP-BTF)中进行处理,入口浓度不同,空床停留时间(EBRT)为 57 s。由于存在 5%v/v 的硅油,TLP-BTF [BTF(A)]的性能在 M 和 P 的去除方面有了显著提高。BTF(A)中 M、P 和 H 的最大去除容量(EC)分别达到 309、73 和 56 g m h。而在没有硅油的 BTF 中[BTF(B)],M、P 和 H 的最大 EC 分别为 172、28 和 21 g m h。将 H 的入口浓度从 32 ppm 增加到 337 ppm 抑制了两种 BTF 中 P 的去除。硅油的存在增强了气-液传质,防止 BTF 受到基质抑制效应的影响,并允许达到 M 和 P 的高 EC。实验结果表明,在一阶段 TLP-BTF 中,通过降低 M 和 H 对 P 降解的负面影响,长期运行时去除 M、P 和 H 混合物具有很大的潜力。