Department of Agricultural & Biological Engineering, Purdue University, W. Lafayette, IN, USA.
Department of Food Science, Purdue University, W. Lafayette, IN, USA.
Environ Pollut. 2023 Aug 15;331(Pt 1):121864. doi: 10.1016/j.envpol.2023.121864. Epub 2023 May 22.
The electrocoagulation (EC) and electrooxidation (EO) processes are employed widely as treatment processes for industrial, agricultural, and domestic wastewater. In the present study, EC, EO, and a combination of EC + EO were evaluated as methods of removing pollutants from shrimp aquaculture wastewater. Process parameters for electrochemical processes, including current density, pH, and operation time were studied, and response surface methodology was employed to determine the optimum condition for the treatment. The effectiveness of the combined EC + EO process was assessed by measuring the reduction of targeted pollutants, including dissolved inorganic nitrogen species, total dissolved nitrogen (TDN), phosphate, and soluble chemical oxygen demand (sCOD). Using EC + EO process, more than 87% reduction was achieved for inorganic nitrogen, TDN, and phosphate, while 76.2% reduction was achieved for sCOD. These results demonstrated that the combined EC + EO process provided better treatment performance in removing the pollutants from shrimp wastewater. The kinetic results suggested that the effects of pH, current density, and operation time were significant on the degradation process when using iron and aluminum electrodes. Comparatively, iron electrodes were effective at reducing the half-life (t) of each of the pollutants in the samples. The application of the optimized process parameters on shrimp wastewater could be used for large-scale treatment in aquaculture.
电化学(EC)和电化学氧化(EO)过程被广泛应用于工业、农业和生活废水的处理。本研究评估了 EC、EO 以及 EC+EO 联合工艺作为去除虾养殖废水中污染物的方法。研究了电化学过程的工艺参数,包括电流密度、pH 值和操作时间,并采用响应面法确定了处理的最佳条件。通过测量目标污染物(包括溶解无机氮物种、总溶解氮(TDN)、磷酸盐和可溶性化学需氧量(sCOD))的减少来评估 EC+EO 联合工艺的效果。使用 EC+EO 工艺,无机氮、TDN 和磷酸盐的去除率超过 87%,而 sCOD 的去除率达到 76.2%。这些结果表明,EC+EO 联合工艺在去除虾养殖废水中的污染物方面提供了更好的处理性能。动力学结果表明,在使用铁和铝电极时,pH 值、电流密度和操作时间对降解过程的影响显著。相比之下,铁电极在降低样品中每种污染物的半衰期(t)方面更有效。优化后的工艺参数在虾养殖废水中的应用可用于水产养殖的大规模处理。