生态与农村环境学报2026,Vol.42Issue(4):497-507,11.DOI:10.19741/j.issn.1673-4831.2025.1016
地下水水化学条件影响下微纳层状双金属氢氧化物(LDHs)对全氟辛酸(PFOA)的吸附性能与机制
Adsorption of Perfluorooctanoic Acid(PFOA)by Micro/Nanoscale Layered Double Hydroxides(LDHs)under Groundwater Hydrochemical Conditions:Performance and Mechanisms
摘要
Abstract
Perfluorooctanoic acid(PFOA),a representative per-and polyfluoroalkyl substance(PFAS),has attracted widespread concern because of its extreme persistence,mobility,and frequent occurrence in groundwater and other aquatic environments,where it poses potential risks to health.Adsorption is considered a practical option for PFAS removal be-cause of its operational simplicity and relatively low cost.Among available adsorbents,layered double hydroxides(LDHs),which possess positively charged metal hydroxide layers and exchangeable interlayer anions,exhibit strong affin-ity for anionic contaminants and therefore show promise for PFOA removal.In this study,MgAl-LDH,NiAl-LDH,and ZnAl-LDH were synthesized via a urea hydrolysis route using Mg,Ni,and Zn as divalent metals and Al as the trivalent metal.Their adsorption performance toward PFOA at groundwater-relevant concentrations was systematically evaluated,and the governing mechanisms were explored under representative groundwater geochemical conditions.All three LDHs showed rapid adsorption kinetics,reaching more than 95%of equilibrium uptake within 30 min.The adsorption data were well fitted by the Langmuir model,with NiAl-LDH exhibiting the highest adsorption capacity(qmax=1 483.46 μg·g-1)and affinity(lg Kd=4.56).Groundwater matrix experiments further showed that Cl-and NO3-(10 mg·L-1),natural or-ganic matter(<10 mg·L-1),and coexisting PFAS exerted only minor effects on PFOA removal,whereas HCO3-and SO42-(10 mg·L-1)significantly inhibited adsorption.Combined with the pH-dependent zeta potential responses and chain-length-dependent removal trends,these results indicate that PFOA adsorption is mainly driven by electrostatic attrac-tion to positively charged surface sites,with additional contributions from non-electrostatic interaction such as hydrogen bonding and pore filling.Overall,this study clarifies the performance and environmental applicability of LDHs for PFOA removal under groundwater-relevant hydrochemical conditions and provides practical guidance for adsorbent selection and remediation strategy development at PFAS-impacted sites.关键词
全氟辛酸/吸附/层状双金属氢氧化物/地下水修复Key words
perfluorooctanoic acid(PFOA)/adsorption/layered double hydroxides/groundwater remediation分类
资源环境引用本文复制引用
王梦琪,陈云,杜培培,杨明辉,孙敦宇,韦婧,李成涛,龙涛..地下水水化学条件影响下微纳层状双金属氢氧化物(LDHs)对全氟辛酸(PFOA)的吸附性能与机制[J].生态与农村环境学报,2026,42(4):497-507,11.基金项目
国家自然科学基金项目(42207108) (42207108)
国家重点研发计划(2023YFC3706805) (2023YFC3706805)
土壤污染防治与安全全国重点实验室开放课题(SPCS202502006) (SPCS202502006)
生态环境部南京环境科学研究所优秀青年基金项目(ZX2024SZY079) (ZX2024SZY079)
中央级公益性科研院所基本科研业务专项(GY-ZX20250101,GYZX20250202) (GY-ZX20250101,GYZX20250202)