数字农科院2.0

Capacity And Mechanism Of Arsenic A.dsorption On Red Soil S upplemented With Ferromanganese Oxide-Biochar Composites

文献类型: 外文期刊

作者: Zhou, Shiwei;Song, Zhengguo;Huang, Qing;Qiu, Weiwen;Huang, Yongchun;Lin, Lina

作者机构:

关键词: Ferromanganese oxide-biochar composite (FMBC); Arsenic; Red soil; Adsorption ability

期刊名称: ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH

ISSN: 0944-1344

年卷期: 2018 年 25 卷 20 期

页码:

摘要: Two ferromanganese oxide-biochar composites (FMBC1 and FMBC2) were prepared by an impregnation method to promote the adsorption of As on red soil. Maximum adsorption capacities (Q(m)) of 0.687 and 0.712 mg g(-1) were observed for FMBC1 and FMBC2, respectively, corresponding to increases of 104 and 111% relative to the control treatment (Q(m) = 0.337 mg g(-1)). Treatment with FMBC1 increased the pH of red soil, whereas a reverse trend was observed for FMBC2. A variety of analytical techniques were used to explain the differences between FMBC1 and FMBC2, revealing that the oxidation of As(M) to As(V) by Mn and Fe oxides was aided by interactions with the oxygen-containing functional groups of the ferromanganese oxide-biochar composites. Thus, red soil supplemented with the ferromanganese oxide-biochar composites mainly adsorbed As by chemisorption, thereby projecting ferromanganese oxide-biochar composites as potential absorbents for effectively remediating As-polluted red soil.

分类号:

  • 相关文献

[1]Responses of potential ammonia oxidation and ammonia oxidizers community to arsenic stress in seven types of soil. Wang Y., Zeng X., Zhang Y., Zhang N., Xu L., Wu C.. 2022

[2]Manure application facilitated electrokinetic remediation of antibiotic-arsenic co-contaminated paddy soil. Yan M., Zhu C., Li B., Su S., Li H.. 2022

[3]Effects of optimized water management on the uptake and translocation of cadmium and arsenic in Oryza sativa L. in two contaminated soils. Bao Q., Bao W., Ding Y., Huang Y.. 2022

[4]Characteristic Of Adsorption Cadmium Of R.ed Soil Amended With A Ferromanganese Oxide-Biochar Composite. Zhou, QW, Liao, BH, Lin, LN, Song, ZG, Khan, ZH, Lei, M. 2019

[5]The C/N Ratio And Phenolic Groups Of Exogenous Dissolved Organic Matter Together As An Indicator For Evaluating The Stability Of Mineral-Organic Associations In Red Soil. Zhang, XJ, Wang, YN, Wen, J, Zhang, Y, Su, SM, Wen, YJ, Yan, MM, Bai, LY, Wu, CX, Zeng, XB. 2021

[6]Enhanced Adsorption Removal Of Arsenic F.rom Mining Wastewater Using B irnessite Under Electrochemical Redox Reactions. Liu, LH, Tan, WF, Suib, SL, Qiu, GH, Zheng, LR, Su, SM. 2019

[7]Inoculating Chlamydospores Of Trichoderma Asperellum S.m-12F1 Changes Arsenic Availability A nd Enzyme Activity In Soils And Improves Water Spinach Growth. Su, SM, Zeng, XB, Bai, LY, Williams, PN, Wang, YN, Zhang, LL, Wu, CX. 2017

[8]Kinetic Release Of Arsenic After E.xogenous Inputs Into Two D ifferent Types Of Soil. Wang, JJ, Zeng, XB, Zhang, H, Li, YT, Zhao, SZ, Bai, LY, Su, SM, Wang, YN. 2018

[9]Adsorption of As(V) by the Novel and efficient adsorbent Cerium-manganese modified biochar. Ting Liang , Lianfang Li * , Changxiong Zhu *, Xue Liu, Hongna Li, Qianqian Su, Jing Ye. 2020

[10]Fe-Mn-Ce Oxide-Modified Biochar Composites As E.fficient Adsorbents For Removing A s(Iii) From Water: Adsorption Performance And Mechanisms. Liu, XW, Gao, ML, Qiu, WW, Khan, ZH, Liu, NB, Lin, LN, Song, ZG. 2019

[11]Quantitative Determination Of Arsenic Species I.n Feed Using Liquid C hromatography-Hydride Generation Atomic Fluorescence Spectrometry. Liu, CX, Xiao, ZM, Jia, Z, Tian, J, Liu, XL, Fan, X. 2018

[12]Reduced Arsenic Availability And Plant U.ptake And Improved Soil M icrobial Diversity Through Combined Addition Of Ferrihydrite And Trichoderma Asperellum Sm-12F1. Zhang, HX, Zeng, XB, Bai, LY, Shan, H, Wang, YA, Wu, CX, Duan, R, Su, SM. 2018

[13]Effects Of Fe-Mn Modified Biochar C.omposite Treatment On The P roperties Of As-Polluted Paddy Soil. Lin, LN, Li, ZY, Liu, XW, Qiu, WW, Song, ZG. 2019

[14]Relationships Between Pb, As, Cr, And Cd In Individual Cows' Milk And Milk Composition And Heavy Metal Contents In Water, Silage, And Soil. Zhou, XW, Zheng, N, Su, CY, Wang, JQ, Soyeurt, H. 2019

[15]Arsenic Adsorption On Layered Double Hydroxides Biochars And Their Amended Red And Calcareous Soils. Gao, X, Peng, YT, Guo, LL, Wang, Q, Guan, CY, Yang, F, Chen, Q. 2020

[16]Biochar Amendment Immobilizes Arsenic In F.armland And Reduces Its B ioavailability. Li, LF, Zhu, CX, Liu, XS, Li, F, Li, HN, Ye, J. 2018

[17]Arsenic contribution of poultry manure towards soils and food plants contamination and associated cancer risk in Khyber Pakhtunkhwa, Pakistan. Muhammad, Juma,Xu, Ping,Khan, Sardar,Su, Jian Qiang,Sarwar, Tasneem,Nazneen, Shahla,Khan, Alamgir. 2021

[18]Synthesis And Characterization Of Novel F.e-Mn-Ce Ternary Oxide-Biochar Composites A s Highly Efficient Adsorbents For As(Iii) Removal From Aqueous Solutions. Liu, XW, Zhang, GG, Lin, LN, Khan, ZH, Qiu, WW, Song, ZG. 2018

[19]Arsenic Immobilization for Paddy Field and Improvement of Rice (Oryza sativa L.) Growth through Cerium–Manganese Modified Wheat Straw Biochar Application. Liang Ting,, Li LIanfang. 2023

[20]HAG1 Regulates Arsenic Allocation and Accumulation in Rice Grains. Yang Huan,Yu Jing,Xie Manyi,Xu Ping,Cao Zhenzhen,Chen Mingxue,Cao Zhaoyun. 2025

作者其他论文 更多>>