Zhu Zongqiang, Kong Yusong, Yang Hongqu, Tian Yan, Zhou Xiaobin, Zhu Yinian, Fang Zhanqiang, Zhang Lihao, Tang Shen, Fan Yinming
Collaborative Innovation Center for Water Pollution Control and Water Safety in Karst Area, Guilin University of Technology, Guilin 541004, China.
The Guangxi Key Laboratory of Theory and Technology for Environmental Pollution Control, Guilin University of Technology, Guilin 541004, China.
Nanomaterials (Basel). 2023 Jan 12;13(2):325. doi: 10.3390/nano13020325.
In this study, coupling electrokinetic (EK) with the permeable reactive barriers (PRB) of Fe/Mn/C-LDH composite was applied for the remediation of arsenic-contaminated soils. By using self-made Fe/Mn/C-LDH materials as PRB filler, the effects of pretreatment and polarization shielding on EK-PRB of Fe/Mn/C-LDH for remediation of arsenic contaminated soils were investigated. For the pretreatment, phosphoric acid, phosphoric acid and water washing, and phosphate were adopted to reduce the influence of iron in soil. The addition of phosphate could effectively reduce the soil leaching toxicity concentration. The removal rate of the soil pretreated with phosphoric acid or phosphoric acid and water washing was better than with phosphate pretreatment. For the polarization shielding, circulating electrolyte, electrolyte type, anion and cation membranes, and the exchange of cathode and anode were investigated. The electrolyte circulates from the cathode chamber to the anode chamber through the peristaltic pump to control the pH value of the electrolyte, and the highest arsenic toxicity removal rate in the soil reaches 97.36%. The variation of total arsenic residue in soil using anion and cation membranes is the most regular. The total arsenic residue gradually decreases from cathode to anode. Electrode exchange can neutralize H and OH produced by electrolyte, reduce the accumulation of soil cathode area, shield the reduction of repair efficiency caused by resistance polarization, enhance current, and improve the removal rate of arsenic in soil.
在本研究中,将电动动力学(EK)与Fe/Mn/C-LDH复合材料的渗透反应屏障(PRB)相结合用于修复砷污染土壤。以自制的Fe/Mn/C-LDH材料作为PRB填料,研究了预处理和极化屏蔽对Fe/Mn/C-LDH的EK-PRB修复砷污染土壤的影响。对于预处理,采用磷酸、磷酸与水洗以及磷酸盐来降低土壤中铁的影响。添加磷酸盐可有效降低土壤浸出毒性浓度。用磷酸或磷酸与水洗预处理的土壤去除率优于用磷酸盐预处理的土壤。对于极化屏蔽,研究了循环电解液、电解液类型、阴阳离子膜以及阴阳极交换。电解液通过蠕动泵从阴极室循环至阳极室以控制电解液的pH值,土壤中砷毒性去除率最高可达97.36%。使用阴阳离子膜时土壤中总砷残留量的变化最为规律。总砷残留量从阴极到阳极逐渐降低。电极交换可中和电解液产生的H⁺和OH⁻,减少土壤阴极区域的积累,屏蔽电阻极化导致的修复效率降低,增强电流,并提高土壤中砷的去除率。