College of Environmental Science and Engineering, Guilin University of Technology, Guilin, 541006, China; Ocean College, Zhejiang University, Zhoushan, 316021, Zhejiang, China.
Ocean College, Zhejiang University, Zhoushan, 316021, Zhejiang, China.
Chemosphere. 2022 Sep;302:134870. doi: 10.1016/j.chemosphere.2022.134870. Epub 2022 May 7.
Fracturing flowback fluids (FFFs), which is generated from the process of oil and gas exploitation, is one of the major environmental concerns. In this study, a bacterial strain, Bacillus sp. SS15, capable of producing both bioflocculant (BF) and biosurfactant (BS), was isolated from oil-contaminated mudflat sediment. The BS produced by SS15 was identified as lipopeptide, which could reduce the surface tension of water from 74.2 mN/m to 36.6 mN/m with a critical micelle concentration of 44.4 mg/L. It also exhibited strong tolerance against a wide range of pH (2-12), temperature (4-60 °C), and salinity (0-100 g/L). Meanwhile, the BF produced by SS15 exhibited high flocculating activity (84.9%) for kaolin suspension, and was confirmed to be thermostable, salt-tolerant, and alkaliphilic. The combined treatment of bioremediation (introducing SS15 and BS) followed by flocculation (introducing BF) greatly promoted the removal of chroma (85.7% reduction), suspended solids (94.4% reduction), chemical oxygen demand (84.9% reduction), n-alkanes (50.0% reduction), and polycyclic aromatic hydrocarbons (66.5% reduction), respectively. The genome analysis showed that strain SS15 possessed abundant genes related to the synthesis of carbohydrate, protein, and lipid, which might play an important role in BF and BS synthesis. The findings in this study demonstrated that Bacillus sp. SS15 has promising prospect in the remediation of FFFs.
从油气开采过程中产生的压裂返排液是主要的环境问题之一。在这项研究中,从受石油污染的泥滩沉积物中分离出一株能够同时产生生物絮凝剂(BF)和生物表面活性剂(BS)的细菌菌株 Bacillus sp. SS15。SS15 产生的 BS 被鉴定为脂肽,它可以将水的表面张力从 74.2 mN/m 降低到 36.6 mN/m,临界胶束浓度为 44.4 mg/L。它还表现出对广泛的 pH 值(2-12)、温度(4-60°C)和盐度(0-100 g/L)的强耐受性。同时,SS15 产生的 BF 对高岭土悬浮液表现出高絮凝活性(84.9%),并被证实具有热稳定性、耐盐性和嗜碱性。生物修复(引入 SS15 和 BS)与絮凝(引入 BF)的联合处理大大促进了色度(减少 85.7%)、悬浮物(减少 94.4%)、化学需氧量(减少 84.9%)、正烷烃(减少 50.0%)和多环芳烃(减少 66.5%)的去除。基因组分析表明,SS15 菌株具有丰富的与碳水化合物、蛋白质和脂质合成相关的基因,这些基因可能在 BF 和 BS 合成中发挥重要作用。本研究结果表明,Bacillus sp. SS15 在压裂返排液的修复中具有广阔的应用前景。