College of Environmental Science and Engineering, Hunan University, Changsha 410082, PR China; Key Laboratory of Environment Biology and Pollution Control, Hunan University, Ministry of Education, Changsha 410082, PR China; School of Civil and Environmental, Hunan University of Science and Engineering, Yongzhou 425199, PR China.
College of Environmental Science and Engineering, Hunan University, Changsha 410082, PR China; Key Laboratory of Environment Biology and Pollution Control, Hunan University, Ministry of Education, Changsha 410082, PR China.
Sci Total Environ. 2022 Sep 10;838(Pt 1):155693. doi: 10.1016/j.scitotenv.2022.155693. Epub 2022 May 6.
Layered double hydroxides (LDHs) are ionic laminar composites composed of positively charged brucite-like layers with an interlayered region containing charged compensating anions and solvation molecules. Such functional LDHs materials present a strong potential for heavy metal treatment especially for wastewater and soil, due to the large surface area and layered structure. This paper started with the background of techniques for heavy metals treatment and then discussed the potential environmental toxic effects, feasibility, stability of LDH composites. The preparation strategies of LDHs composites, and their application were summarized, followed by main mechanisms involving chelation, complexation, surface precipitation, ion exchange. This work also presented the potential environmental toxic effects, feasibility, stability of LDHs composites, reuse of waste liquid and the ratio adjustment of M and N for LDHs synthesis. While most efforts focused on improving the absorption capacity of LDHs by composites construction, ignoring the toxicity effects and detailed mechanism investigation. Based on a thorough review of the latest development, the challenges and perspectives would be proposed, offering promising insights on environmental purification via LDHs based materials.
层状双氢氧化物(LDHs)是由带正电荷的水镁石样层与包含带电荷补偿阴离子和溶剂化分子的层间区域组成的离子层状复合材料。由于具有较大的表面积和层状结构,这种功能 LDHs 材料在重金属处理方面具有很大的潜力,特别是在废水和土壤方面。本文从重金属处理技术的背景出发,讨论了 LDH 复合材料的潜在环境毒性效应、可行性和稳定性。总结了 LDHs 复合材料的制备策略及其应用,并详细介绍了涉及螯合、络合、表面沉淀、离子交换等主要机制。此外,还介绍了 LDHs 复合材料的潜在环境毒性效应、可行性和稳定性、废液的再利用以及 LDHs 合成中 M 和 N 的比例调整。虽然大多数研究都集中在通过复合材料构建来提高 LDHs 的吸附能力上,但却忽略了毒性效应和详细的机制研究。在对最新进展进行全面回顾的基础上,提出了挑战和展望,为通过 LDHs 基材料进行环境净化提供了有前景的思路。