College of Environmental Science and Engineering, Hunan University, Changsha, 410082, China; Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha, 410082, Hunan, China.
College of Environmental Science and Engineering, Hunan University, Changsha, 410082, China; Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha, 410082, Hunan, China.
Chemosphere. 2022 Aug;300:134449. doi: 10.1016/j.chemosphere.2022.134449. Epub 2022 Mar 29.
The problems of high salinity and coexistence of antibiotics in mariculture wastewater pose a great challenge to the traditional wastewater treatment technology. Herein, an electrocatalytic system based on cathodes to sustain reactive chlorine species (RCS) in a high chlorine environment was proposed. The results show that the content of RCS is affected by cathodes. The electrocatalytic system with FeNi/NF as cathode has the largest RCS retention capacity when compared with other cathode systems (carbon felt, nickel foam, copper foam, stainless steel, and nickel-iron foam). This is related to FeNi/NF's higher hydrogen production activity, which inhibits the reduction reaction of RCS. Furthermore, the degradation of tetracycline by the proposed FeNi/NF system maintained long-term effective performance across 20 cycles. Thus, the application of high chlorine resistance electrocatalysis system provides a possibility for practical electrocatalysis treatment of mariculture wastewater.
海水养殖废水中高盐度和抗生素共存的问题对传统废水处理技术构成了巨大挑战。在此,提出了一种基于阴极在高氯环境中持续产生活性氯物种(RCS)的电催化系统。结果表明,RCS 的含量受阴极的影响。与其他阴极系统(碳纤维毡、泡沫镍、泡沫铜、不锈钢和镍铁泡沫)相比,以 FeNi/NF 作为阴极的电催化系统具有最大的 RCS 保持能力。这与 FeNi/NF 更高的析氢活性有关,析氢活性抑制了 RCS 的还原反应。此外,所提出的 FeNi/NF 系统对四环素的降解在 20 个循环中保持了长期有效的性能。因此,高耐氯电催化系统的应用为海水养殖废水的实际电催化处理提供了可能性。