数字农科院2.0

Study on Adsorption of Cd in Solution and Soil by Modified Biochar-Calcium Alginate Hydrogel

文献类型: 外文期刊

作者: Wang; Shuyue;Wang; Yajun;Wang; Xinyi;Sun; Sijia;Zhang; Yanru;Jiao; Weixiong;Lin; Dasong

作者机构:

关键词: modified biochar;calcium alginate;Cd pollution;in situ passivation

期刊名称: GELS

ISSN:

年卷期: 2024 年 10 卷 6 期

页码:

收录情况: SCIE(2024版)

摘要: Contamination with cadmium (Cd) is a prominent issue in agricultural non-point source pollution in China. With the deposition and activation of numerous Cd metal elements in farmland, the problem of excessive pollution of agricultural produce can no longer be disregarded. Considering the issue of Cd pollution in farmland, this study proposes the utilization of cross-linked modified biochar (prepared from pine wood) and calcium alginate hydrogels to fabricate a composite material which is called MB-CA for short. The aim is to investigate the adsorption and passivation mechanism of soil Cd by this innovative composite. The MB-CA exhibits a higher heavy metal adsorption capacity compared to traditional biochar and hydrogel due to its increased oxygen-containing functional groups and heavy metal adsorption sites. In the Cd solution adsorption experiment, the highest Cd2+ removal rate reached 85.48%. In addition, it was found that the material also has an excellent pH improvement effect. Through the adsorption kinetics experiment and the soil culture experiments, it was determined that MB-CA adheres to the quasi-second-order kinetic model and is capable of adsorbing 35.94% of Cd2+ in soil. This study validates the efficacy of MB-CA in the adsorption and passivation of Cd in soil, offering a novel approach for managing Cd-contaminated cultivated land.

分类号:

  • 相关文献

[1]Development and Application of a Modified Biochar-Calcium Alginate Composite (MB-CA) for In Situ Remediation of Cadmium-Contaminated Soil. Sun, Sijia,Wang, Yuying,Zhang, Yanru,Wu, Lina,Wang, Xinyi,Wang, Guoyu,Sun, Weitao,Lin, Dasong,Wang, Yajun. 2025

[2]Microencapsulation enhances the antifungal activity of cinnamaldehyde during the period of peanut storage. Chenxi Zhang,Lin Pan,Junning Ma,Qiang Yu,Xiaohua Yu,Sarfaraz Hussain,Xu Li,Yujie Li,Yue Guan,Yifei Li,Fuguo Xing. 2023

[3]Structural characterisation of two polysaccharides from white common bean (Phaseolus vulgaris L.) and the application in microencapsulation of probiotics. Zhu Y., Li J., Feng X., Shi Z., Yao Y., Shen R.. 2022

[4]Prediction of Excessive Cadmium in Rice Based on Weighted Bayesian Fusion Model. Zhang B.,Wang W.,An Y.,Jiao Y.,Li Y.. 2021

[5]Comparative effects of Tagetes patula L. extraction, mercapto-palygorskite immobilisation, and the combination thereof on Cd accumulation by wheat in Cd-contaminated soil. Yale Wang,Yingming Xu,Guohong Sun,Xuefeng Liang,Yuebing Sun,Lin Wang,Qingqing Huang. 2021

[6]Mercapto–palygorskite decreases the Cd uptake of wheat by changing Fe and Mn fraction in Cd contaminated alkaline soil. Yong Y.,Yang T.,Wang Y.,Xu Y.,Huang Q.,Liang X.,Sun Y.,Wang L.. 2024

[7]Ionomic analysis reveals the mechanism of mercaptosilane-modified palygorskite on reducing Cd transport from soil to wheat. Zhang, Yu,Xu, Yingming,Liang, Xuefeng,Wang, Lin,Sun, Yuebing,Huang, Qingqing,Qin, Xu. 2023

[8]Application of crop straw with different C/N ratio affects CH4 emission and Cd accumulation in rice (Oryza sativa L.) in Cd polluted paddy soils. Qiongli Bao,Jiahao Shi,Zewei Liu,Yundi Kan,Wankui Bao. 2025

[9]Effect of three aging processes on physicochemical and As(V) adsorption properties of Ce/Mn-modified biochar. Huang X.,Lyu P.,Li L.,Xie J.,Zhu C.. 2022

[10]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

[11]Enhancing sorption of layered double hydroxide-based magnetic biochar for arsenic and cadmium through optimized preparation protocols. Peng Lyu,Lianfang Li,Jinli Huang,Jing Ye,Changxiong Zhu,Jinni Xie,Zihan Wang,Mengqi Kang,Ao Yan. 2023

[12]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

[13]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. Lyu P.,Li L.,Huang J.,Ye J.,Zhu C.. 2024

[14]Differentiated effects and mechanisms of N-, P-, S-, and Fe-modified biochar materials for remediating Cd- and Pb-contaminated calcareous soil. Amir Bostani,Xingying Meng,Le Jiao,Srđan D. Rončević,Peng Zhang,Hongwen Sun. 2025

[15]Impact of modified biochar on phosphorus fractionation and biochemical properties for different soils. Muhammad Numan Khan,Jing Huang,Asad Shah,Hao Xiaoyu,Tianfu Han,Avelino Núñez-Delgado,Nafiu Garba Hayatu,Imtiaz Ahmed,Wenjie Liu,Ashutosh Kumar Singh,Xiai Zhu,Huimin Zhang. 2025

[16]Functionalized biochar for enhancing the removal of antibiotics and resistance genes in swine manure composting: A review. Wang, Dong,Shi, Yulong,Zheng, Li,Liu, Yu,Wei, Xinyuan,Zhang, Qingwen. 2025

[17]Application of modified biochar in integrated pollution management for pesticides and antibiotics in water: Recent advances and future prospects. Wei Wang,Haojie Shi,Haoyu Shi,Zhentao Zhou,Liangang Mao,Lan Zhang,Lizhen Zhu,Chi Wu,Xingang Liu. 2025

作者其他论文 更多>>