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Removal optimization of heavy metals from effluent of sludge dewatering process in oil and gas well drilling by nanofiltration

机译:纳滤技术优化油气井钻井污泥脱水工艺废水中重金属的去除优化

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摘要

Oil and gas well drilling industries discharge large volumes of contaminated wastewater produced during oil and gas exploration process. In this study, the effect of different operational variables, including temperature, pH and transmembrane pressure on process performance of a commercially available nanofiltration membrane (JCM-1812-50N, USA) for removing Ba, Ni, Cr, NaCl and TDS from produced wastewater by dewatering unit of an oil and gas well drilling industry was evaluated. In optimum experimental conditions (T = 25 ℃, P = 170 psi and pH = 4) resulted from Thaguchi method, 85.3, 77.4, 58.5, 79.6 and 56.3% removal efficiencies were achieved for Ba, Ni, Cr, NaCl and TDS, respectively. Also, results from a comparison of the Schuller and Wilcox diagrams revealed that the effluent of the membrane system is usable for drinking water, irrigating and agriculture purposes. Moreover, the process effluent quality showed a scaling feature, according to Langelier saturation index and illustrated that the necessary proceedings should be taken to prevent scaling for industrial application. The nanofiltration membrane process with an acceptable recovery rate of 47.17% represented a good performance in the wastewater treatment.
机译:油气井钻探行业排放在油气勘探过程中产生的大量污染废水。在这项研究中,包括温度,pH和跨膜压力在内的不同操作变量对市售纳滤膜(JCM-1812-50N,美国)从生产废水中去除Ba,Ni,Cr,NaCl和TDS的工艺性能的影响通过石油和天然气钻井行业的脱水装置进行了评估。在Thaguchi方法的最佳实验条件下(T = 25℃,P = 170 psi,pH = 4),Ba,Ni,Cr,NaCl和TDS的去除效率分别达到85.3%,77.4、58.5、79.6和56.3%。 。而且,通过比较Schuller图和Wilcox图得出的结果表明,膜系统的流出物可用于饮用水,灌溉和农业用途。此外,根据Langelier饱和指数,工艺废水质量显示出结垢特性,并说明应采取必要的措施来防止结垢用于工业应用。纳滤膜工艺的回收率为47.17%,在废水处理中表现出良好的性能。

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