Department of Civil and Environmental Engineering, Faculty of Science and Technology, University of Macau, Macau 999078, China.
State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin, Heilongjiang 150006, China.
Sci Total Environ. 2022 Apr 10;816:151524. doi: 10.1016/j.scitotenv.2021.151524. Epub 2021 Nov 6.
Hydraulic fracturing wastewater (HFW), a byproduct of hydraulic fracturing oil extraction, contains a complex mixture of oil, aldehydes, and benzene compounds. Efficient and eco-friendly HFW treatment means are critical for the oil extraction industry, particularly in developing countries. In this study, two biological processes namely an anaerobic/anoxic/moving bed biofilm reactor (A-MBBR) and an A-MBBR with a microfiltration membrane (A-MFMBBR) were established, and assessed for the real HFW treatment. Removal efficiencies of chemical oxygen demand (COD) and NH-N were over 92% and 95%, respectively, in both processes with a hydraulic retention time of 72 h. The majority of organic compounds in both systems identified by GC-MS were degraded in the anaerobic units. In comparison, A-MFMBBR demonstrated higher removal efficiencies for oil, total suspended solids, and complex compounds. The average relative abundances of refractory compound degrading bacteria were 43.4% and 51.6% in the A-MBBR and A-MFMBBR, respectively, which was consistent with the COD and oil removal, and suggested that the MBR could maintain a high diversity of microorganisms and contribute to deep recalcitrant organics degradation. This study sheds light on the potential of using a compact biological process for the real HFW treatment.
水力压裂废水(HFW)是水力压裂采油的副产品,含有复杂的油、醛和苯化合物混合物。高效、环保的 HFW 处理方法对采油行业至关重要,特别是在发展中国家。在这项研究中,建立了两种生物处理工艺,即厌氧/缺氧/移动床生物膜反应器(A-MBBR)和带微滤膜的 A-MBBR(A-MFMBBR),并对实际 HFW 处理进行了评估。在水力停留时间为 72 小时的情况下,两种工艺对化学需氧量(COD)和 NH-N 的去除率均超过 92%和 95%。GC-MS 鉴定的两种系统中的大多数有机化合物在厌氧单元中降解。相比之下,A-MFMBBR 对油、总悬浮固体和复杂化合物的去除效率更高。在 A-MBBR 和 A-MFMBBR 中,难降解化合物降解菌的平均相对丰度分别为 43.4%和 51.6%,与 COD 和油的去除率一致,表明 MBR 可以保持微生物的高度多样性,并有助于深度降解难降解有机物。本研究为实际 HFW 处理提供了一种紧凑生物处理工艺的潜力。