Anaerobic biodegradation of partially hydrolyzed polyacrylamide in long-term methanogenic enrichment cultures from production water of oil reservoirs

被引:0
|
作者
Hao Hu
Jin-Feng Liu
Cai-Yun Li
Shi-Zhong Yang
Ji-Dong Gu
Bo-Zhong Mu
机构
[1] East China University of Science and Technology,State Key Laboratory of Bioreactor Engineering and Institute of Applied Chemistry
[2] The University of Hong Kong,School of Biological Sciences
[3] Shanghai Collaborative Innovation Center of Biomanufacturing Technology,undefined
来源
Biodegradation | 2018年 / 29卷
关键词
Partially hydrolyzed polyacrylamide; Anaerobic biodegradation; Microbial community; Mechanism; Oil reservoir production water;
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中图分类号
学科分类号
摘要
The increasing usage of partially hydrolyzed polyacrylamide (HPAM) in oilfields as a flooding agent to enhance oil recovery at so large quantities is an ecological hazard to the subsurface ecosystem due to persistence and inertness. Biodegradation of HPAM is a potentially promising strategy for dealing with this problem among many other methods available. To understand the responsible microorganisms and mechanism of HPAM biodegradation under anaerobic conditions, an enrichment culture from production waters of oil reservoirs were established with HPAM as the sole source of carbon and nitrogen incubated for over 328 days, and analyzed using both molecular microbiology and chemical characterization methods. Gel permeation chromatography, High-pressure liquid chromatography and Fourier-transformed infrared spectroscopy results indicated that, after 328 days of anaerobic incubation, some of the amide groups on HPAM were removed and released as ammonia/ammonium and carboxylic groups, while the carbon backbone of HPAM was converted to smaller polymeric fragments, including oligomers and various fatty acids. Based on these results, the biochemical process of anaerobic biodegradation of HPAM was proposed. The phylogenetic analysis of 16S rRNA gene sequences retrieved from the enrichments showed that Proteobacteria and Planctomycetes were the dominant bacteria in the culture with HPAM as the source of carbon and nitrogen, respectively. For archaea, Methanofollis was more abundant in the anaerobic enrichment. These results are helpful for understanding the process of HPAM biodegradation and provide significant insights to the fate of HPAM in subsurface environment and for possible bioremediation.
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页码:233 / 243
页数:10
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