Fourth Harbor Engineering Institute Co., Ltd., China Communications Construction Co., Ltd., Guangzhou 510230, China; Key Laboratory of Environmental Protection & Safety of Communication Foundation Engineering, China Communications Construction Co., Ltd., Guangzhou 510230, China.
The Key Lab of Pollution Control and Ecosystem Restoration in Industry Clusters, Ministry of Education, School of Environment and Energy, South China University of Technology, Guangzhou 510006, China.
J Environ Sci (China). 2023 Feb;124:89-97. doi: 10.1016/j.jes.2021.11.009. Epub 2022 Feb 1.
In situ and simultaneous remediation of a variety of pollutants in sediments remains a challenge. In this study, we report that the combination of electrocoagulation (EC) and electrooxidation (EO) is efficient in the immobilization of phosphorus and heavy metals and in the oxidation of ammonium and toxic organic matter. The integrated mixed metal oxide (MMO)/Fe anode system allowed the facile removal of ammonium and phosphorus in the overlying water (99% of 10 mg/L NH-N and 95% of 10 mg/L P disappeared in 15 and 30 min, respectively). Compared with the controls of the single Fe anode and single MMO anode systems, the dual MMO/Fe anode system significantly improved the removal of phenanthrene and promoted the transition of Pb and Cu from the mobile species to the immobile species. The concentrations of Pb and Cu in the toxicity characteristic leaching procedure extracts were reduced by 99% and 97% after an 8 hr operation. Further tests with four real polluted samples indicated that substantial proportions of acid-soluble fraction Pb and Cu were reduced (30%-31% for Pb and 16%-23% for Cu), and the amounts of total organic carbon and NH-N decreased by 56%-71% and 32%-63%, respectively. It was proposed that the in situ electrogenerated Fe(II) at the Fe anode and the active oxygen/chlorine species at the MMO anode are conducive to outstanding performance in the co-treatment of multiple pollutants. The results suggest that the EC/EO method is a powerful technology for the in situ remediation of sediments contaminated with different pollutants.
原位同时修复沉积物中的多种污染物仍然是一个挑战。在这项研究中,我们报告了电凝(EC)和电氧化(EO)的组合在固定磷和重金属以及氧化氨和有毒有机物方面非常有效。集成的混合金属氧化物(MMO)/Fe 阳极系统允许在地表水中轻松去除氨氮和磷(10mg/L NH-N 的 99%和 10mg/L P 的 95%分别在 15 和 30 分钟内消失)。与单独的 Fe 阳极和单独的 MMO 阳极系统的对照相比,双 MMO/Fe 阳极系统显著提高了菲的去除率,并促进了 Pb 和 Cu 从可移动物种向不可移动物种的转变。毒性特征浸出程序提取物中的 Pb 和 Cu 浓度在 8 小时运行后分别降低了 99%和 97%。对四个实际污染样品的进一步测试表明,酸溶态 Pb 和 Cu 的比例大大降低(Pb 降低 30%-31%,Cu 降低 16%-23%),总有机碳和 NH-N 的量分别减少了 56%-71%和 32%-63%。据推测,Fe 阳极原位生成的 Fe(II)和 MMO 阳极的活性氧/氯物质有利于多种污染物的协同处理。结果表明,EC/EO 方法是一种原位修复受不同污染物污染沉积物的有效技术。