School of Metallurgy and Environment, Central South University, Changsha 410083, PR China.
School of Metallurgy and Environment, Central South University, Changsha 410083, PR China.
Sci Total Environ. 2022 Sep 10;838(Pt 3):156462. doi: 10.1016/j.scitotenv.2022.156462. Epub 2022 Jun 2.
Fenton oxidation process is effective in organic pollutant degradation during wastewater treatment, but subject to narrow pH range and secondary pollution. In this work, an application-promising alternative, i.e., coordination-driven Cu-based Fenton-like process, was proposed for wastewater treatment using humic-acid (HA) as the target contaminant. The results showed that the removal of HA through Cu-based Fenton-like process can reach 70% under the condition of pH 8.0, 146.8 mmol/L HO, 146.8 μmol/L Cu (II), 50 °C, and 4 h. Addition of Cl could significantly accelerate the reaction process through coordination with copper ions, while HCO and PO exhibited opposite effects. Increasing temperature is also beneficial for advancing the reaction, and the removal of HA followed pseudo-first-order kinetics. Fluorescence spectroscopic analyses showed that the removal of HA experienced a two-stage process, i.e., oxidation followed by degradation, which is dependent of the presence of coordination ions. Parallel factor analysis was used to characterize the change of fluorescence components. Three fluorescent components, i.e., terrestrial humic-like, UV/visible terrestrial humic-like and protein-like component were identified, all of which were effectively removed. This study deepens our understanding on Cu-based Fenton-like process, and may provide a promising technology for refractory wastewater treatment.
芬顿氧化法在废水处理中有效降解有机污染物,但受到较窄 pH 范围和二次污染的限制。本工作提出了一种有应用前景的替代方法,即配位驱动的 Cu 基类芬顿氧化法,以腐殖酸(HA)为目标污染物进行废水处理。结果表明,在 pH 值为 8.0、HO 为 146.8mmol/L、Cu(II)为 146.8μmol/L、50°C 和 4 h 的条件下,Cu 基类芬顿氧化法可去除 70%的 HA。Cl 的加入可通过与铜离子配位显著加速反应过程,而 HCO 和 PO 则表现出相反的效果。升高温度也有利于推进反应,HA 的去除遵循准一级动力学。荧光光谱分析表明,HA 的去除经历了氧化和降解两个阶段,这取决于配位离子的存在。平行因子分析用于表征荧光组分的变化。鉴定出三种荧光组分,即陆生腐殖质样、UV/可见陆生腐殖质样和蛋白质样组分,它们均被有效去除。本研究深化了我们对 Cu 基类芬顿氧化法的认识,为难处理废水处理提供了一种有前景的技术。