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代谢解偶联剂对甲苯降解生物滴滤塔性能的影响。

Effect of metabolic uncouplers on the performance of toluene-degrading biotrickling filter.

机构信息

Chemical and Process Engineering Department, University of Canterbury, Christchurch, New Zealand.

Camarines Norte State College, F. Pimentel Avenue, 4600, Daet, Camarines Norte, Philippines.

出版信息

Environ Sci Pollut Res Int. 2021 Aug;28(31):41881-41895. doi: 10.1007/s11356-021-13708-w. Epub 2021 Mar 31.

DOI:10.1007/s11356-021-13708-w
PMID:33791957
Abstract

The biomass control potential of three metabolic uncouplers (carbonyl cyanide-p-trifluoromethoxyphenylhydrazone (FCCP), carbonyl cyanide m-chlorophenylhydrazone (CCCP), and m-chlorophenol (m-CP)) was tested in biotrickling filters (BTFs) degrading toluene. The experiments employed two types of reactors: a traditional column design and a novel differential BTF (DBTF) reactor developed by De Vela and Gostomski (J Environ Eng 147:04020159, 2021). Uncouplers caused the toluene elimination capacity (EC) (~33 g/mh for column reactors and ~600 g/mh for DBTF) to decrease by 15-97% in a dose-dependent fashion. The EC completely recovered in the column reactor in 3 to 13 days, while only partial recovery happened in the DBTF. Short-term (1 to 3 days) true uncoupling was indicated by the 20-160% increase in %CO recovery, depending on concentration. FCCP and CCCP increased the pressure drop due to increased extracellular polymeric substances (EPS) production for protection against the uncouplers. The 4.0-mM m-CP weakened the biofilm in the BTF bed, as evidenced by the 130-500% increase in the total organic carbon in the liquid sump of the column and DBTF reactors. Moreover, a microbial shift led to the proliferation of genera that degrade uncouplers, further demonstrating that the uncouplers tested were not a sustainable biomass control strategy in BTFs.

摘要

三种代谢解偶联剂(羰基氰化物-对三氟甲氧基苯腙(FCCP)、羰基氰化物 m-氯苯腙(CCCP)和 m-氯苯酚(m-CP))在降解甲苯的生物滴滤塔(BTF)中的生物量控制潜力进行了测试。实验采用了两种类型的反应器:传统柱式设计和由 De Vela 和 Gostomski 开发的新型差分 BTF(DBTF)反应器(J Environ Eng 147:04020159, 2021)。解偶联剂使甲苯去除容量(EC)(柱式反应器约 33 g/mh,DBTF 约 600 g/mh)以剂量依赖的方式降低了 15-97%。EC 在柱式反应器中 3 至 13 天内完全恢复,而在 DBTF 中仅部分恢复。根据浓度的不同,1 至 3 天的短期真正解偶联导致 %CO 回收率增加 20-160%。FCCP 和 CCCP 由于增加了细胞外聚合物(EPS)的产生以保护它们免受解偶联剂的影响,从而增加了压力降。4.0mM 的 m-CP 削弱了 BTF 床中的生物膜,这可以从柱式和 DBTF 反应器中液体池中的总有机碳增加 130-500%中得到证明。此外,微生物转移导致降解解偶联剂的属的增殖,进一步证明测试的解偶联剂不是 BTF 中生物量控制的可持续策略。

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