Magnetic biochar-supported layered double hydroxide for simultaneous remediation of As and Cd in soil: Effectiveness, retention durability, and insight into a new immobilization mechanism
文献类型: 外文期刊
作者: Lyu P.;Li L.;Huang J.;Ye J.;Zhu C.
作者机构:
关键词: Arsenic and cadmium;Ca–Mg–Al layered double hydroxide;Durability and stability;Modified biochar;Simultaneous immobilization
期刊名称: Journal of Cleaner Production
ISSN: 0959-6526
年卷期: 2024 年 434 卷
页码:
收录情况: SCIE(2024版) ; ; EI(2024版)
摘要: Immobilization/stabilization is a common technique for remediating As and Cd-contaminated soil. However, the effectiveness of employed stabilizer plays a crucial role in determining the fate of these contaminants. This study investigated the effectiveness and durability of a magnetic biochar-supported Ca–Mg–Al layered double hydroxide composite (FLBC) and its components in simultaneous remediation of As and Cd in Phaeozem (BS) and Krasnozem soils (RS). Results demonstrated that 5 wt% FLBC amendment immobilized >85% of As and Cd and converted them into immobile fractions even in a reduction environment. Moreover, FLBC treatment effectively resisted leaching of As and Cd by > 70% under acidic rainwater filtration, thus displaying excellent retention durability. The new immobilization mechanisms were proved using transmission electron microscope technology, where layered double hydroxide (LDH) acted as a nano-bridge to bind FLBC and soil colloids ensuring FLBC stability and synergistic immobilization. During this process, X-ray photoelectron analysis demonstrated the re-oxidation of As(III) to As(V) driven by ferric reduction that resulted in the formation of multiple stable species on the soil surface via the confirmation of X-ray absorption near fine structure and extended X-ray absorption fine structure. This species included Ca/Fe/Cd–As(V) and γ-Cd(OH)2 co-precipitation, as well as As(V)–O–Fe(III)/Ca and As–Fe tridentate-hexanuclear corner-sharing complexes. Furthermore, FLBC amendment favored the immobilization of As and Cd in RS soil compared to BS soil due to a weaker reduction potential and an increased participation of metal-(hydr)oxides for As and Cd complexation. This study provides valuable references for predicting the impact of LDH-coupled magnetic biochar technology on the fate of As and Cd in actual soil environments. © 2023
分类号:
- 相关文献
作者其他论文 更多>>
-
Monospecific and ultrasensitive detection of ofloxacin: A computational chemistry-assisted hapten screening strategy and analysis of molecular recognition mechanism
作者:Xiao J.;Qin L.;Zhao D.;Huang N.;Xu W.;Zhang L.;Pan X.;Han S.;Ding M.;Li L.;Le T.;Peng D.
关键词:(0-1-4)Computational simulation;Hapten screening;Molecular mechanism;Monospecificity;Ofloxacin;Residue detection
-
Synergistic dual-mechanism raised structure and vertically aligned porous 3D hydrogel fabric for ultra-high salt-resistant water desalination
作者:Zhang Z.;Wang X.;Li G.;Zhao K.;Liu G.;Wang Y.;Li Z.;Huang J.;Xu Z.;Lai Y.;Qian X.;Zhang S.
关键词:PVA hydrogel;Raised fabric;Seawater desalination;Solar evaporator
-
Different crystalline manganese dioxide and biochar co-conditioning aerobic composting: Reduced ammonia volatilization and improved organic fertilizer quality
作者:He W.;Rong S.;Wang J.;Zhao Y.;Liang Y.;Huang J.;Meng L.;Feng Y.;Xue L.
关键词:Cost-benefit analysis;Humic acid and fulvic acid;Hydrochar;Manganese oxides;Pyrochar
-
An efficient artificial intelligence algorithm for predicting the sensory quality of green and black teas based on the key chemical indices
作者:Lu L.;Wang L.;Liu R.;Zhang Y.;Zheng X.;Lu J.;Wang X.;Ye J.
关键词:Black tea;Chemical index;Green tea;Modelling, artificial intelligence algorithm;Tea sensory quality
-
Different Infectivity of Swine Enteric Coronaviruses in Cells of Various Species
作者:Li Z.;Chen Y.;Li L.;Xue M.;Feng L.
关键词:aminopeptidase N (APN);PDCoV;PEDV;replication;TGEV
-
The mechanisms of target and non-target resistance to QoIs in Corynespora Cassiicola
作者:Sun B.;Zhou R.;Zhu G.;Xie X.;Chai A.;Li L.;Fan T.;Zhang S.;Li B.;Shi Y.
关键词:Corynespora cassiicola;G143A mutation;MFS transporter;Mitochondrial heterogeneity;QoIs resistance
-
Antioxidant capacity of sesamol in Caenorhabditis elegans model system
作者:Huang J.;Qi S.;Sun Q.;Song G.;Tang J.;Duan Y.
关键词:Antioxidant;Caenorhabditis elegans;Lifespan;Reactive oxygen species;Sesamol