Institute of Chemistry, Federal University of Rio Grande do Norte, Lagoa Nova, CEP 59078-970, Natal, RN, Brazil.
Science and TechnologySchool, Federal University of Rio Grande do Norte, Lagoa Nova, CEP 59078-970, Natal, RN, Brazil.
Chemosphere. 2018 Nov;211:998-1006. doi: 10.1016/j.chemosphere.2018.08.044. Epub 2018 Aug 11.
Electrochemical advanced oxidation processes such as electrooxidation (EO), electrooxidation with hydrogen peroxide generation (EO-HO) and electro-Fenton process (EF) have been investigated as alternative treatment techniques for complete removal of anionic surfactants and organic matters from real carwash wastewater. The electrochemical processes were performed with acidified real carwash wastewater using boron doped anode and carbon felt cathode. In all cases, the chemical oxygen demand (COD) removal efficiency was always increased with rise in applied current and complete organic matter decay was achieved at applied current of 500 mA or above after 6 h of electrolysis. Faster and higher COD decay was observed with EF compared to either EO or EO-HO treatment, at all currents and electrolysis time. Besides, complete degradation of anionic surfactants - the major organic content of the wastewater could be achieved at all applied currents studied irrespective of the process used, indicating the efficacy of processes for total remediation of real carwash wastewater. The short-chain carboxylic acids formed as the final organic byproducts were identified and quantified by ion-exclusion chromatography. More so, lower energy consumption and higher current efficiency were achieved with EF compared to EO-HO. Electrochemical treatment was found to be a powerful technology for the complete abatement of organic matter in carwash wastewater for possible reuse.
电化学高级氧化工艺,如电氧化(EO)、电氧化生成过氧化氢(EO-HO)和电芬顿工艺(EF),已被研究作为从实际洗车废水中完全去除阴离子表面活性剂和有机物的替代处理技术。使用酸化的实际洗车废水,在硼掺杂的阳极和碳纤维毡阴极上进行电化学处理。在所有情况下,随着施加电流的增加,COD 去除效率始终提高,在 6 小时的电解后,施加电流为 500 mA 或更高时,可实现完全的有机物衰减。与 EO 或 EO-HO 处理相比,EF 在所有电流和电解时间下,COD 衰减更快、更高。此外,无论使用哪种工艺,都可以在所有研究的施加电流下完全降解阴离子表面活性剂——废水的主要有机成分,表明这些工艺对实际洗车废水的总修复具有有效性。通过离子排斥色谱法鉴定并量化了形成的最终有机副产物——短链羧酸。此外,与 EO-HO 相比,EF 实现了更低的能耗和更高的电流效率。电化学处理被发现是一种强大的技术,可以完全去除洗车废水中的有机物,以实现可能的再利用。