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Surface Water Microbial Community Response to the Biocide 2,2-Dibromo-3-Nitrilopropionamide, Used in Unconventional Oil and Gas Extraction

机译:非常规油气提取中杀菌剂2,2-二溴-3-硝基丙酰胺的地表水微生物群落响应

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Production of unconventional oil and gas continues to rise, but the effects of high-density hydraulic fracturing (HF) activity near aquatic ecosystems are not fully understood. A commonly used biocide in HF, 2,2-dibromo-3-nitrilopropionamide (DBNPA), was studied in microcosms of HF-impacted (HF+) versus HF-unimpacted (HF?) surface water streams to (i) compare the microbial community response, (ii) investigate DBNPA degradation products based on past HF exposure, and (iii) compare the microbial community response differences and similarities between the HF biocides DBNPA and glutaraldehyde. The microbial community responded to DBNPA differently in HF-impacted versus HF-unimpacted microcosms in terms of the number of 16S rRNA gene copies quantified, alpha and beta diversity, and differential abundance analyses of microbial community composition through time. The differences in microbial community changes affected degradation dynamics. HF-impacted microbial communities were more sensitive to DBNPA, causing the biocide and by-products of the degradation to persist for longer than in HF-unimpacted microcosms. A total of 17 DBNPA by-products were detected, many of them not widely known as DBNPA by-products. Many of the brominated by-products detected that are believed to be uncharacterized may pose environmental and health impacts. Similar taxa were able to tolerate glutaraldehyde and DBNPA; however, DBNPA was not as effective for microbial control, as indicated by a smaller overall decrease of 16S rRNA gene copies/ml after exposure to the biocide, and a more diverse set of taxa was able to tolerate it. These findings suggest that past HF activity in streams can affect the microbial community response to environmental perturbation such as that caused by the biocide DBNPA.IMPORTANCE Unconventional oil and gas activity can affect pH, total organic carbon, and microbial communities in surface water, altering their ability to respond to new environmental and/or anthropogenic perturbations. These findings demonstrate that 2,2-dibromo-3-nitrilopropionamide (DBNPA), a common hydraulic fracturing (HF) biocide, affects microbial communities differently as a consequence of past HF exposure, persisting longer in HF-impacted (HF+) waters. These findings also demonstrate that DBNPA has low efficacy in environmental microbial communities regardless of HF impact. These findings are of interest, as understanding microbial responses is key for formulating remediation strategies in unconventional oil and gas (UOG)-impacted environments. Moreover, some DBNPA degradation by-products are even more toxic and recalcitrant than DBNPA itself, and this work identifies novel brominated degradation by-products formed.
机译:非常规油气的产量继续增长,但是对水生生态系统附近高密度水力压裂(HF)活动的影响尚未完全了解。在HF影响的(HF +)与不受HF影响的(HF?)地表水的微观世界中,研究了HF中常用的2,2,2-二溴-3-硝基丙酰胺(DBNPA)杀菌剂,以(i)比较微生物群落响应;(ii)根据过去的HF暴露调查DBNPA降解产物,以及(iii)比较HF杀菌剂DBNPA和戊二醛之间的微生物群落响应差异和相似性。在定量分析的16S rRNA基因拷贝数,α和β多样性以及微生物群落组成随时间的差异丰度分析方面,在HF影响的微观世界中与HF不受影响的微观世界中,微生物群落对DBNPA的反应不同。微生物群落变化的差异影响降解动力学。受HF影响的微生物群落对DBNPA更为敏感,导致降解的杀生物剂和副产物比不受HF影响的微观世界持续更长的时间。总共检测到17种DBNPA副产物,其中许多未被广泛称为DBNPA副产物。据认为,许多检测到的未表征的溴化副产物可能对环境和健康造成影响。类似的分类单元能够耐受戊二醛和DBNPA。然而,DBNPA对微生物控制的效果不佳,暴露于杀生物剂后16S rRNA基因拷贝/ ml的总体下降较小,这表明了这一点,并且更多种类的分类单元能够耐受它。这些发现表明,河流中过去的HF活性可以影响微生物群落对环境扰动的响应,例如由杀生物剂DBNPA引起的扰动。非常规油气活动可以影响地表水中的pH值,总有机碳和微生物群落,从而改变其应对新的环境和/或人为干扰的能力。这些发现表明,过去的HF暴露导致常见的水力压裂(HF)杀生物剂2,2-二溴-3-硝基丙酰胺(DBNPA)对微生物群落的影响不同,并在受HF影响的(HF +)水中持续更长的时间。这些发现还表明,无论HF影响如何,DBNPA在环境微生物群落中的功效均很低。这些发现令人感兴趣,因为了解微生物的反应是在非常规油气(UOG)影响的环境中制定补救策略的关键。此外,某些DBNPA降解副产物比DBNPA本身更具毒性和难降解性,这项工作确定了形成的新型溴化降解副产物。

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