Simultaneous and efficient removal of Cd(II) and As(III) by a magnesium-manganese codoped biochar composite: Sorption performance and governing mechanisms
文献类型: 外文期刊
作者: Zulqarnain Haider Khan;Zhongyang Li;Minling Gao;Md Shafiqul Islam;Ling Xiao;Weiwen Qiu;Zhengguo Song
作者机构:
关键词: Adsorption mechanisms;Arsenic and cadmium;Biochar;Co-contamination remediation;Magnesium-Manganese codoped composite
期刊名称: Journal of Environmental Chemical Engineering
ISSN: 2213-3437
年卷期: 2023 年 11 卷 3 期
页码:
收录情况: SCIE(2023版) ; ; EI(2023版)
摘要: As(III) and Cd(II) co-existence results in co-contamination in soil and water. It is still a great challenge for As(III) and Cd(II) simultaneous removal in the aqueous medium due to their contrasting chemical behaviour. Herein, we prepared a novel magnesium-manganese modified biochar composite (Mg/Mn@BC) for simultaneous Cd(II) and As(III) elimination from contaminated water. The synergistic effect of Mg/Mn@BC composite on synchronous Cd(II) and As(III) removal was confirmed. In the mixed sorption system, the Langmuir sorption capacity of Mg/Mn@BC for As(III) and Cd(II) was 164 and 316 mg g−1, respectively, which was more than that in the single adsorption system (75 and 295 mg g−1). In the single sorption system, the Mg/Mn@BC sorption efficiency was > 61% and 100% for As(III) and Cd(II), respectively, while > 87% and 100% in the mixed adsorption system. The characterization results revealed that synergistic adsorption was mainly attributed to anion-bridging (Mn/MgO–As–Cd) and cation-bridging (Mn/MgO–Cd–As). The ion exchange, precipitation, Cd–π binding and inner-sphere surface complexation with functional groups were predominant in the sorption process, while hydrogen bonding force and ternary complexation were the primary pathways in mixed adsorption system to eliminate Cd(II) and As(III). The results suggested that Mg/Mn@BC composite can be a potential material for wastewater treatment.
分类号:
- 相关文献
作者其他论文 更多>>
-
Modelling cadmium binding to plant-based biochars using the three-site NICA-Donnan model
作者:Yifan Huang;Gerwin F. Koopmans;Zhengguo Song;Rob N.J. Comans;Liping Weng
关键词:
-
Soil sample size and physical properties matter in experimental studies of the moisture and temperature response of soil respiration
作者:Zhongyang Li;Yuan Liu;Pengfei Huang;Chuncheng Liu;Zhifeng Yan;Xiaoxian Zhang;Andrew L. Neal
关键词:Anaerobic CO2 production;Incubation;Modelling;Physical processes;Soil respiration;Soil structure
-
Optimizing initial C/N ratio of returned straw with urea mitigates the spread of antibiotic resistance genes in soil
作者:Lijuan Zhao;Zhen Tao;Siyi Li;Taotao Chen;Zhongyang Li;Yuan Liu
关键词:ARGs;C/N ratio;Soil;Straw return
-
Community structure and selected genes abundance shift of rhizosphere and endophyte bacteria from roots associated with the sludge application under reclaimed water irrigation
作者:Bingjian Cui;Haishu Sun;Erping Cui;Chao Hu;Xiangyang Fan;Zhongyang Li;Chuncheng Liu
关键词:Bacterial community;Deleterious genes;Functional genes;Reclaimed water irrigation;Sludge application
-
Sensitivity analysis of SWAT streamflow and water quality to the uncertainty in soil properties generated by the SoLIM model
作者:Qiuliang Lei;Tianpeng Zhang;Miaoying An;Jiafa Luo;Lihuan Qin;A. Xing Zhu;Weiwen Qiu;Xinzhong Du;Hongbin Liu
关键词:Sensitivity;SoLIM Model;SWAT Model;Uncertainty
-
Silicon Improves Soil Environment and Promotes Crop Growth under Compound Irrigation via Brackish Water and Reclaimed Water
作者:Chuncheng Liu;Bingjian Cui;Pengfei Huang;Chao Hu;Jieru Zhao;Zhongyang Li;Juan Wang
关键词:brackish water;compound irrigation;reclaimed water;secondary soil salinization;silicon fertilizer
-
Global warming potential assessment under reclaimed water and livestock wastewater irrigation coupled with co-application of inhibitors and biochar
作者:Zhen Tao;Yuan Liu;Siyi Li;Baogui Li;Xiangyang Fan;Chuncheng Liu;Chao Hu;Hongen Liu;Zhongyang Li
关键词:Biochar;Global warming potential;Livestock wastewater irrigation;Nitrification inhibitor;Urease inhibitor