Istanbul University-Cerrahpasa, Faculty of Engineering, Department of Environmental Engineering, Avcilar Campus, Avcilar, 34320, Istanbul, Turkey.
Istanbul University-Cerrahpasa, Faculty of Engineering, Department of Environmental Engineering, Avcilar Campus, Avcilar, 34320, Istanbul, Turkey.
Chemosphere. 2020 Aug;253:126713. doi: 10.1016/j.chemosphere.2020.126713. Epub 2020 Apr 8.
In the present work, advanced treatment of carwash wastewater with an integrated electrocoagulation-nanofiltration (EC-NF) process to reuse the treated wastewater as rinsing water was investigated. The wastewater was pretreated by EC process under various operating parameters such as temperature (25 °C, 35 °C, 45 °C), stirring speed (150 rpm, 250 rpm, 350 rpm), and electrode connection mode (MP-P, MP-S, BP-S) using Fe electrode. The best results were achieved at 25 °C, 250 rpm and MP-P connection mode for EC, considering both pollutant removals and energy consumptions. EC sludge was characterized scanning electron microscopy-energy dispersive index (ESEM-EDX) analysis. The pretreated carwash wastewater using EC process was further treated by NF process using NF 270 and Desal 5DL membranes. Desal 5 DL membrane provided the highest treatment performance for chloride (92%), conductivity (80%) and total hardness (90%) parameters for EC-NF process. Resistance in series model was used for a deeper discussion of the reasons for flux decline. In addition, Fourier transform infrared (FTIR) spectroscopy and contact angle measurements were conducted for membrane fouling characterization. The foulants mainly accumulated on the membrane surface forming a cake layer and lower extent of membrane fouling was occurred for both membranes. As a result, this study showed that the water quality for reuse in carwashing process could be achieved with an integrated EC-NF process.
在本工作中,采用集成电絮凝-纳滤(EC-NF)工艺对洗车废水进行深度处理,并将处理后的废水回用作为冲洗水。采用铁电极在不同操作参数下(温度为 25°C、35°C、45°C,搅拌速度为 150rpm、250rpm、350rpm,电极连接方式为 MP-P、MP-S、BP-S)对洗车废水进行预处理。考虑到污染物去除率和能耗,EC 过程的最佳结果是在 25°C、250rpm 和 MP-P 连接方式下获得的。通过扫描电子显微镜-能谱分析(ESEM-EDX)对 EC 污泥进行了表征。采用 NF270 和 Desal5DL 膜对 EC 工艺预处理后的洗车废水进行进一步处理。对于 EC-NF 工艺,Desal5DL 膜对氯(92%)、电导率(80%)和总硬度(90%)参数的处理性能最高。采用串联电阻模型对通量下降的原因进行了更深入的讨论。此外,还进行了傅里叶变换红外(FTIR)光谱和接触角测量,以对膜污染特性进行表征。污染物主要在膜表面积累形成滤饼层,两种膜的膜污染程度都较低。因此,本研究表明,采用集成 EC-NF 工艺可以达到洗车过程回用的水质要求。