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Biodegradation of carbon tetrachloride from groundwater in an upflow solid-phase biofilm system

机译:溢流固相生物膜系统中地下水中四氯化碳的生物降解

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In the present study, an upflow solid-phase denitrification biofilm reactor (US-DBR) was applied for simultaneous carbon tetrachloride (CT) and nitrate removal from groundwater by using poly(butylene succinate) (PBS) as carbon source and biocarrier. After 80 days continuous operation, the nitrate and CT removal efficiencies in the biofilm reactor were high of 98% and 94.3%, respectively. After PBS-biofilm formation, protein (PN) content in loosely bound extracellular polymeric substances (LB-EPS) and tightly bound EPS (TB-EPS) significantly increased 2.6 and 4.0 times higher in the presence of CT than those of absence of CT, while PS increased 1.9 and 2.0 times higher. According to excitation-emission matrix (EEM), CT exposure contributed to the increased fluorescent intensities of the aromatic PN-like and tryptophan PN-like substances. Along with the height of US-DBR, the denitrification activity was inhibited by the CT exposure, and most of CT was significant transformed accompanied by nitrate removal. Two components of soluble microbial products (SMP) were identified, including humic-like substances for component 1 and PN-like substances for component 2, respectively. It was found from high-throughput 16S rRNA gene sequencing analysis that significant differences were observed at genus level by taxonomic assignments to CT exposure. Thiobacillus , Thauera , Candidatus_Competibacter and Hydrogenophaga were the main genus in the presence of CT at the proportion of 6.77%, 5.47%, 3.59% and 3.17%, respectively.
机译:在本研究中,通过使用聚(丁烯琥珀酸酯)(PBS)作为碳源和生物载体,将溢出的固相脱硝生物膜反应器(US-DBR)施用用于同时碳四氯化碳(CT)和从地下水中除去硝酸盐。 80天连续操作后,生物膜反应器中的硝酸盐和CT去除效率分别为98%和94.3%。在PBS-Biofilm形成后,在CT的情况下,松散地结合的细胞外聚合物物质(LB-EPS)和紧密结合的EPS(TB-EPS)的蛋白质(PN)含量明显增加2.6%和4.0倍,虽然PS增加了1.9倍和2.0倍。根据激发 - 发射基质(EEM),CT暴露有助于增加芳族PN样和色氨酸PN样物质的荧光强度。随着US-DBR的高度,通过CT暴露抑制脱氮活性,并且大部分CT的显着转化伴随着硝酸盐去除。鉴定了可溶性微生物产品(SMP)的两种组分,包括分别用于组分1和Pn样物质的腐殖质物质。从高通量16s rRNA基因测序分析中发现,通过分类分类分配到CT暴露,在Genus级别观察到显着差异。 Thiobacillus,Thauera,Candidatus_compacter和氢气是CT的主要属,分别为6.77%,5.47%,3.59%和3.17%的比例。

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