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采用新型电极构造的电絮凝法去除实际含油废水中的 COD。

Removal of COD from real oily wastewater by electrocoagulation using a new configuration of electrodes.

机构信息

Chemical Engineering Department, College of Engineering, Al-Qadisiyah University, Al-Qadisiyah, Iraq.

Chemical Engineering Department, College of Engineering, Al-Muthanna University, Samawah, Al-Muthanna, Iraq.

出版信息

Environ Monit Assess. 2023 May 9;195(6):651. doi: 10.1007/s10661-023-11257-y.

Abstract

In order to bring the chemical oxygen demand (COD) concentration down to safe levels for widespread use, this study plans to use a state-of-the-art electrocoagulation reactor (ECR) to treat real oily wastewater discharged from the Al-Muthanna petroleum refinery. A one-side finned (1SF) cathode tube was positioned between two tubular anodes in the continuous ECR, where the active area of the cathode was much more than its submerged volume. Each of these electrodes was made of aluminum and joined in a monopolar parallel to a DC power supply. On COD elimination efficiency, the impacts of operational parameters such as electrolysis time (4-60 min), current density (0.630-5.000 mA/cm), and flow rate (50-150 ml/min) were explored. In conclusion, Increasing current density and electrolysis duration increases COD removal efficiency, whereas increasing flow rate reduces it. COD removal efficiencies were 82% at optimal electrolysis times of 60 (min), 5 (mA/cm) current density, and 50 (ml/min) flow rate, with energy consumption of 4.787 (kWh/kg ) and electrode consumption of 0.544 (g). The investigation results demonstrated that the new reactor could treat oily wastewater within the specified operational limits. It might be used before other, more conventional treatments.

摘要

为了将化学需氧量(COD)浓度降低到可广泛使用的安全水平,本研究计划使用最先进的电凝反应器(ECR)处理来自穆萨纳石油精炼厂排放的实际含油废水。在连续 ECR 中,一个单侧翅片(1SF)阴极管被置于两个管状阳极之间,其中阴极的有效面积远大于其浸没体积。这些电极均由铝制成,并与直流电源以单极并联的方式连接。在 COD 去除效率方面,研究了操作参数(如电解时间(4-60 分钟)、电流密度(0.630-5.000 mA/cm)和流速(50-150 ml/min))的影响。结论是,增加电流密度和电解时间可以提高 COD 去除效率,而增加流速则会降低效率。在最佳电解时间为 60 分钟、电流密度为 5 mA/cm 和流速为 50 ml/min 的情况下,COD 去除效率达到 82%,能耗为 4.787 kWh/kg,电极消耗为 0.544 g。研究结果表明,新型反应器可以在规定的操作极限内处理含油废水。它可能会在其他更传统的处理方法之前使用。

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