Adsorption characteristics of modified rice straw biochar for Zn and in-situ remediation of Zn contaminated soil
文献类型: 外文期刊
作者: Liu, Shichao 1 ; Xie, Zhonglei 2 ; Zhu, Yintao 1 ; Zhu, Yanmiao 1 ; Jiang, Yan 1 ; Wang, Yujun 1 ; Gao, Hongjun 5 ;
作者机构: 1.Jilin Agr Univ, Coll Resources & Environm, Changchun 130118, Peoples R China
2.Jilin Univ, Coll Plant Sci, Changchun 130062, Peoples R China
3.Changchun Sci Tech Univ, Coll Construct Engn, Changchun 130600, Peoples R China
4.Ningbo Raw Water Grp Ltd Zhejiang Prov, Ningbo 31500, Peoples R China
5.Jilin Acad Agr Sci, Inst Agr Resources & Environm, Northeast Agr Res Ctr China, Changchun 130033, Peoples R China
关键词: Biochar; Modification; Zinc; Adsorption characteristics; In situ remediation
期刊名称:ENVIRONMENTAL TECHNOLOGY & INNOVATION ( 影响因子:3.356; 五年影响因子:3.404 )
ISSN: 2352-1864
年卷期: 2021 年 22 卷
页码:
收录情况: SCI
摘要: Remediation of heavy metal pollution in farmland soil is very important to protect human health and ecological security, and biochar has a certain adsorption and fixation effect on soil heavy metals. In this paper, three kinds of biochar (unmodified biochar, acid modified biochar and biochar from pyrolysis of alkali modified rice straw, abbreviated as RBC, HRBC and KRBC, respectively) were prepared from rice straw, the surface morphology characteristics of RBC, HRBC and KRBC were characterized with SEM scanning, BET specific surface area measurement and porosity measurement and the adsorption characteristics of Zn in/on the three kinds of biochar and the in-situ immobilization effect for the soil Zn were investigated through the laboratory simulation. The results showed that KRBC had larger specific surface area, richer porosity, more oxygen-containing functional groups on the surface, as well as higher aromaticity and carbonization degree than that of RBC and HRBC; the adsorption kinetic characteristics of Zn in RBC, HRBC and KRBC were fitted well with the quasi second-order kinetic model and the adsorption thermodynamic characteristics of Zn in RBC, HRBC and KRBC could be described well with both the models of Langmuir and Freundlich, the maximum adsorption capacity of Zn was the order of KRBC>RBC>HRBC; KRBC had the strongest immobilization ability for Zn in soil, which was related to the strongest ability of KRBC to improve soil pH and soil organic carbon. Therefore, biochar from pyrolysis of alkali modified rice straw (KRBC) was being of the significant immobilization remediation effect on soil Zn pollution. This study can provide theoretical and technical support basis for remediation of Zn contaminated soil. (C) 2021 Elsevier B.V. All rights reserved.
- 相关文献
作者其他论文 更多>>
-
Enhancing Black Soil Fertility and Microbial Community Structure via Microbial Agents to Reduce Chemical Fertilizer Dependency: A Strategy to Boost Maize Yield
作者:Zhang, Fenglin;Wang, Nan;Zhao, Chenyu;Yang, Luze;Zhao, Xingmin;Wang, Hongbin;Huang, Ning;Gao, Hongjun;Zhang, Fugui
关键词:absolute quantitative 16S rRNA sequencing; bacterial community; microbial agent; maize yield; principal component analysis
-
Comparing carbon sequestration efficiency in chemically separated soil organic carbon fractions under long-term fertilization in three major Chinese croplands
作者:Xu, Hu;Xu, Hu;Mustafa, Adnan;Zhang, Lu;Sun, Nan;Xu, Minggang;Mustafa, Adnan;Zhang, Lu;Huang, Shaomin;Gao, Hongjun;Nezhad, Mohammad Tahsin Karimi
关键词:long-term field experiment; fertilization; carbon sequestration efficiency; organic carbon stability; organic; carbon fractionation
-
Molecular Composition of Soil Organic Matter Fractions Under Long-Term Post-Agricultural Restoration Across a Large Climate Gradient
作者:Song, Fanbo;Li, Qiang;Wang, Yidong;Hu, Ning;Lou, Yilai;Zhang, Huimin;Li, Dongchu;Zhu, Ping;Gao, Hongjun;Zhang, Shuiqing;Chen, Shufeng
关键词:chemical composition; natural vegetation restoration; organo-mineral association; particulate organic matter; Py-GC/MS
-
Minimizing the potential risk of soil nitrogen loss through optimal fertilization practices in intensive agroecosystems
作者:Wang, Jun;Zhang, Lu;Xu, Minggang;Zhang, Wenju;Liu, Kailou;Zhou, Boku;Gao, Hongjun;Han, Xiaori;Liu, Shutang;Huang, Shaomin;Zhang, Aijun;Hua, Keke;Wang, Jidong;Hu, Hangwei
关键词:Gross nitrification; Gross N immobilization; Manure; Chemical fertilizer; Microbial abundance
-
Phosphorus Distribution within Aggregates in Long-Term Fertilized Black Soil: Regulatory Mechanisms of Soil Organic Matter and pH as Key Impact Factors
作者:Zhang, Naiyu;Wang, Qiong;Chen, Yanhua;Zhang, Shuxiang;Zhang, Xianmei;Zhang, Naiyu;Feng, Gu;Gao, Hongjun;Peng, Chang;Zhu, Ping
关键词:phosphorus forms; soil aggregates; long-term fertilization; soil organic carbon; soil pH
-
Long-term Fertilizer Application Induces Changes in Carbon Storage and Distribution, and the Consequent Color of Black soil
作者:Gao, Jichao;Wang, Lichun;Gao, Hongjun;Li, Qiang;Zhang, Xiuzhi;Zhu, Ping;Peng, Chang;Jiao, Yunfei;Luo, Jiafa;Qiu, Weiwen;Xu, Lingying
关键词:Black soil; Fertilizer; Soil color; Humic substances; Soil carbon
-
Both yields of maize and soybean and soil carbon sequestration in typical Mollisols cropland decrease under future climate change: SPACSYS simulation
作者:Liang, Shuo;Sun, Nan;Qiao, Lei;Xu, Minggang;Liang, Shuo;Longdoz, Bernard;Meersmans, Jeroen;Colinet, Gilles;Ma, Xingzhu;Gao, Hongjun;Zhang, Xubo;Xu, Minggang;Wu, Lianhai
关键词:yield; SOC stock; carbon sequestration efficiency; Mollisols; SPACSYS model; long-term fertilization; climate change



