Department of Environmental Engineering, National Cheng Kung University, No. 1, University Road, Tainan 701, Taiwan.
Bioresour Technol. 2013 Aug;141:131-7. doi: 10.1016/j.biortech.2013.03.122. Epub 2013 Mar 25.
This study investigated the linkage between performance of two full-scale membrane bioreactor (MBR) systems treating thin-film transistor liquid crystal display (TFT-LCD) wastewater and the population dynamics of dimethylsulfoxide (DMSO)/dimethylsulfide (DMS) degrading bacteria. High DMSO degradation efficiencies were achieved in both MBRs, while the levels of nitrification inhibition due to DMS production from DMSO degradation were different in the two MBRs. The results of real-time PCR targeting on DMSO/DMS degrading populations, including Hyphomicrobium and Thiobacillus spp., indicated that a higher DMSO oxidation efficiency occurred at a higher Hyphomicrobium spp. abundance in the systems, suggesting that Hyphomicrobium spp. may be more important for complete DMSO oxidation to sulfate compared with Thiobacillus spp. Furthermore, Thiobacillus spp. was more abundant during poor nitrification, while Hyphomicrobium spp. was more abundant during good nitrification. It is suggested that microbial population of DMSO/DMS degrading bacteria is closely linking to both DMSO/DMS degradation efficiency and nitrification performance.
本研究调查了两个全规模膜生物反应器(MBR)系统处理薄膜晶体管液晶显示器(TFT-LCD)废水的性能与二甲基亚砜(DMSO)/二甲基硫(DMS)降解菌种群动态之间的关系。两个 MBR 均实现了高 DMSO 降解效率,而由于 DMSO 降解产生的 DMS 对硝化的抑制程度在两个 MBR 中有所不同。针对 DMSO/DMS 降解菌群(包括 Hyphomicrobium 和 Thiobacillus 属)的实时 PCR 结果表明,系统中 Hyphomicrobium spp. 丰度越高,DMSO 氧化效率越高,这表明与 Thiobacillus spp. 相比,Hyphomicrobium spp. 可能对将 DMSO 完全氧化为硫酸盐更为重要。此外,在硝化不良时,Thiobacillus spp. 的丰度更高,而在硝化良好时,Hyphomicrobium spp. 的丰度更高。这表明 DMSO/DMS 降解菌的微生物种群与 DMSO/DMS 降解效率和硝化性能密切相关。