首页> 外文期刊>Journal of Hazardous Materials >The biological treatment of synthetic fracking fluid in an extractive membrane bioreactor: Selective transport and biodegradation of hydrophobic and hydrophilic contaminants
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The biological treatment of synthetic fracking fluid in an extractive membrane bioreactor: Selective transport and biodegradation of hydrophobic and hydrophilic contaminants

机译:萃取膜生物反应器中合成压裂液的生物处理:疏水性和亲水性污染物的选择性转运和生物降解

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The biodegradation of selected organic constituents present in hydraulic fracturing wastewater were examined in an extractive membrane bioreactor (EMB) operating with Hytrel (TM) 3548 tubing. Synthetic hydraulic fracturing wastewater was generated via an extensive literature review and contained high concentrations (1000 mg L-1) of contaminant compounds of varied hydrophobicity, viz. methyl ethyl ketone, benzene, phenol and acetic acid, as well as 30-120 g L-1 of Cl- at low pH. This hostile wastewater was circulated through the polymeric tubing, selectively transporting the organic compounds through the membrane for biological degradation by an enriched bacterial consortium. 16S rDNA analysis revealed the presence of five dominant microbial strains within the consortium, including: Pseudomonas sp., Comamonas sp., Achromobacter sp., Lysinibacillus sp., and Oxalobacter sp. EMBs in batch operation achieved 99% removal of methyl ethyl ketone, benzene, and phenol after 72 h and effectively removed acetic acid up to its ionization point. Continuous EMB operation provided 99% removal of benzene and phenol, 96% removal of methyl ethyl ketone, and 53% of acetic acid. The treatment of synthetic hydraulic fracturing fluid demonstrated the effectiveness of carefully selected amphiphilic polymers in EMBs for treating the hydrophilic and hydrophobic organic profile found in hydraulic fracturing wastewaters.
机译:在使用Hytrel(TM)3548管操作的萃取膜生物反应器(EMB)中检查了水力压裂废水中存在的所选有机成分的生物降解情况。合成的水力压裂废水是通过广泛的文献综述而产生的,其中包含高浓度(1000 mg L-1)的各种疏水性的污染化合物。甲乙酮,苯,苯酚和乙酸,以及30-120 g L-1的Cl-在低pH下。这种有害废水通过聚合物管循环,有选择地将有机化合物输送通过膜,以通过富集的细菌财团进行生物降解。 16S rDNA分析显示该联盟中存在五个主要的微生物菌株,包括:假单胞菌属,Comamonas属,无色杆菌属,Lysinibacillus属和Oxalobacter属。批量运行的EMB在72小时后达到了99%的甲乙酮,苯和苯酚去除率,并有效去除了高达其离子化点的乙酸。连续的EMB操作可除去99%的苯和苯酚,96%的甲乙酮和53%的乙酸。合成水力压裂液的处理表明,EMB中精心选择的两亲聚合物可有效处理水力压裂废水中的亲水性和疏水性有机特性。

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