Zhang Qi
a School of Science , East China Jiaotong University , No. 808, Shuanggandong Road, Nanchang Economic and Technological Development Zone, Jiangxi Province, Nanchang 330013 , People's Republic of China.
Environ Technol. 2015 Jan-Feb;36(1-4):515-20. doi: 10.1080/09593330.2014.952678. Epub 2014 Sep 3.
In this study, the Fe/Cu/C and Fe/Al/C inner micro-electrolysis systems were used to treat actual oilfield produced water to evaluate the feasibility of the technology. Effects of reaction time, pH value, the dosage of metals and activated carbon, and Fe:C mass ratio on the treatment efficiency of wastewater were studied. The results showed that the optimum conditions were reaction time 120 min, initial solution pH 4.0, Fe dosage 13.3 g/L, activated carbon dosage 6.7 g/L, Cu dosage 2.0 g/L or Al dosage 1.0 g/L. Under the optimum conditions, the removal efficiencies of chemical oxygen demand (COD) were 39.3%, 49.7% and 52.6% in the Fe/C, Fe/Cu/C and Fe/Al/C processes, respectively. Meanwhile, the ratio of five-day biochemical oxygen demand to COD was raised from 0.18 to above 0.35, which created favourable conditions for the subsequent biological treatment. All these led to an easy maintenance and low operational cost.
在本研究中,采用铁/铜/炭和铁/铝/炭内电解系统处理实际油田采出水,以评估该技术的可行性。研究了反应时间、pH值、金属和活性炭投加量以及铁炭质量比对废水处理效果的影响。结果表明,最佳条件为反应时间120 min、初始溶液pH值4.0、铁投加量13.3 g/L、活性炭投加量6.7 g/L、铜投加量2.0 g/L或铝投加量1.0 g/L。在最佳条件下,铁/炭、铁/铜/炭和铁/铝/炭工艺中化学需氧量(COD)的去除率分别为39.3%、49.7%和52.6%。同时,五日生化需氧量与COD的比值从0.18提高到0.35以上,为后续生物处理创造了有利条件。所有这些都使得该工艺易于维护且运行成本低。