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Biostimulation of Indigenous Microbial Community for Bioremediation of Petroleum Refinery Sludge

机译:原生微生物群落对石油炼制污泥的生物修复的生物刺激作用

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摘要

Nutrient deficiency severely impairs the catabolic activity of indigenous microorganisms in hydrocarbon rich environments (HREs) and limits the rate of intrinsic bioremediation. The present study aimed to characterize the microbial community in refinery waste and evaluate the scope for biostimulation based in situ bioremediation. Samples recovered from the wastewater lagoon of Guwahati refinery revealed a hydrocarbon enriched [high total petroleum hydrocarbon (TPH)], oxygen-, moisture-limited, reducing environment. Intrinsic biodegradation ability of the indigenous microorganisms was enhanced significantly (>80% reduction in TPH by 90 days) with nitrate amendment. Preferred utilization of both higher- (>C30) and middle- chain (C20-30) length hydrocarbons were evident from GC-MS analysis. Denaturing gradient gel electrophoresis and community level physiological profiling analyses indicated distinct shift in community’s composition and metabolic abilities following nitrogen (N) amendment. High throughput deep sequencing of 16S rRNA gene showed that the native community was mainly composed of hydrocarbon degrading, syntrophic, methanogenic, nitrate/iron/sulfur reducing facultative anaerobic bacteria and archaebacteria, affiliated to γ- and δ-Proteobacteria and Euryarchaeota respectively. Genes for aerobic and anaerobic alkane metabolism (alkB and bssA), methanogenesis (mcrA), denitrification (nirS and narG) and N2 fixation (nifH) were detected. Concomitant to hydrocarbon degradation, lowering of dissolve O2 and increase in oxidation-reduction potential (ORP) marked with an enrichment of N2 fixing, nitrate reducing aerobic/facultative anaerobic members [e.g., Azovibrio, Pseudoxanthomonas and Comamonadaceae members] was evident in N amended microcosm. This study highlighted that indigenous community of refinery sludge was intrinsically diverse, yet appreciable rate of in situ bioremediation could be achieved by supplying adequate N sources.
机译:营养不足严重损害了富含烃类环境(HRE)中土著微生物的分解代谢活性,并限制了固有生物修复的速度。本研究旨在表征炼油厂废物中的微生物群落,并评估基于原位生物修复的生物刺激范围。从Guwahati炼油厂的污水泻湖中回收的样品显示出富含碳氢化合物[高总石油烃(TPH)],氧气受限,水分受限的还原环境。硝酸盐改良剂显着提高了土著微生物的内在生物降解能力(TPH降低90%,TPH降低了80%以上)。从GC-MS分析中可以明显看出,较高级(> C30)和中链(C20-30)长度的烃的优选利用。变性梯度凝胶电泳和社区水平的生理概况分析表明,氮(N)修正后,社区的组成和代谢能力发生了明显变化。对16S rRNA基因的高通量深度测序表明,该天然群落主要由烃降解,同养,产甲烷,硝酸盐/铁/硫还原兼性厌氧细菌和古细菌组成,分别属于γ-和δ-变形杆菌和Euryarchaeota。检测到有氧和无氧烷烃代谢(alkB和bssA),甲烷生成(mcrA),反硝化(nirS和narG)和N2固定(nifH)的基因。伴随碳氢化合物的降解,溶解氮的降低和氧化还原电位(ORP)的增加以N2固定的富集为特征,硝酸盐还原好氧/兼性厌氧菌[例如,Azovibrio,Pseudoxanthomonas和Comamonadaceae菌]在N修正的微观世界中很明显。 。这项研究强调,本地的炼厂污泥社区本质上是多样的,但是通过提供充足的氮源,可以实现可观的原位生物修复率。

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