Key Laboratory of Exploration Technologies for Oil and Gas Resources (Yangtze University), Ministry of Education, China; School of Resources and Environment, Yangtze University, Wuhan 430100, China.
School of Resources and Environment, Yangtze University, Wuhan 430100, China.
J Hazard Mater. 2019 Feb 5;363:170-178. doi: 10.1016/j.jhazmat.2018.09.058. Epub 2018 Sep 26.
Effective and affordable treatment of hydraulic fracturing flowback and produced water (FPW) is a major challenge for the sustainability of unconventional shale-gas exploration and development. We investigated the effectiveness of different combinations of activated sludge (AS), three microbial preparations, and ten plants (ryegrass, water dropwort, typha, reed, iris, canna, water caltrop, rape, water spinach, and Alternanthera philoxeroides) on the treatment performance of FPW. Water quality parameters (NH-N, NO-N, NO-N, COD, and BOD) and the algal toxicity of the treated FPW were used as metrics to assess the treatment efficiency. The results showed that AS had higher treatment efficiency than the prepared microorganisms, and water dropwort was the best plant candidate for boosting performance of AS treatment of FPW. The treated FPW showed improved water quality and microbial diversity. The Shannon-Wiener index increased from 4.76 to 7.98 with FPW treatment. The relative abundance of microbes with a greater resistance to high salt conditions, such as Bacteroidetes, Firmicutes, Chloroflexi, increased substantially in the treated FPW. The combination of water dropwort and AS showed the greatest improvement in water quality, the highest algal density and microbial diversity, thus indicating good potential for this candidate in the treatment of FPW.
有效且经济实惠的水力压裂返排液和采出水(FPW)处理是非常规页岩气勘探和开发可持续性的主要挑战。我们研究了不同组合的活性污泥(AS)、三种微生物制剂和十种植物(黑麦草、水芹、香蒲、芦苇、鸢尾、美人蕉、菱角、油菜、空心菜和空心莲子草)对 FPW 处理性能的有效性。水质参数(NH-N、NO-N、NO-N、COD 和 BOD)和处理后的 FPW 的藻类毒性被用作评估处理效率的指标。结果表明,AS 的处理效率高于制备的微生物,水芹是提高 AS 处理 FPW 性能的最佳植物候选物。处理后的 FPW 水质和微生物多样性得到改善。FPW 处理后,Shannon-Wiener 指数从 4.76 增加到 7.98。对高盐条件具有更高抗性的微生物(如拟杆菌门、厚壁菌门、绿弯菌门)的相对丰度在处理后的 FPW 中大量增加。水芹和 AS 的组合在水质改善、藻类密度和微生物多样性方面表现出最大的提高,因此表明该候选物在 FPW 处理方面具有良好的潜力。