Literature DB >> 33065502

Influence of biochar and soil properties on soil and plant tissue concentrations of Cd and Pb: A meta-analysis.

Houssou Assa Albert1, Xiang Li1, Paramsothy Jeyakumar2, Lan Wei1, Lianxi Huang1, Qing Huang1, Muhammad Kamran1, Sabry M Shaheen3, Deyi Hou4, Jörg Rinklebe5, Zhongzhen Liu6, Hailong Wang7.   

Abstract

The application of biochar to soils contaminated with potentially toxic elements (PTEs) has received particular attention due to its ability to reduce PTE uptake by the plants. Therefore, we conducted a meta-analysis to identify Cd and Pb concentrations in plant shoots and roots in response to biochar application and soil properties. We collected data from 65 peer-reviewed journal articles published from 2009 to 2020 in which 66% of manuscripts were published from 2015 to 2020. The data were processed using OpenMEE software. The results pinpointed that addition of biochar to soil caused a significant decrease in shoot and root Cd and Pb concentrations as compared to untreated soils with biochar (control), and the reduction rate was affected by plant types and both biochar and soil properties. The biochar size less than 2 mm, biochar pH higher than 10, pyrolysis temperature of 401-600 °C, and the application rate higher than 2% appeared to be effective in reducing shoot and root Cd and Pb concentration. Soil properties such as pH, SOC, and texture influenced the efficiency of biochar for reducing plant Cd and Pb uptake. Biochar application increased SOC (54.3%), CEC (48.0%), pH (0.08), and EC (59.4%), and reduced soil extractable Cd (42.1%) and Pb (47.1%) concentration in comparison to control. A detailed study on the rhizosphere chemistry and uptake mechanism will help to underpin the biochar application rates and their efficiency reducing PTE mobility and plant uptake.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Contaminant; Feedstock; Particle size; Pollutant; Rate; Toxic metal

Year:  2020        PMID: 33065502     DOI: 10.1016/j.scitotenv.2020.142582

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  4 in total

1.  Nutrient alterations following biochar application to a Cd-contaminated solution and soil.

Authors:  Liqiang Cui; James A Ippolito; Matt Noerpel; Kirk G Scheckel; Jinlong Yan
Journal:  Biochar       Date:  2021-12

2.  Prediction of Soil Heavy Metal Immobilization by Biochar Using Machine Learning.

Authors:  Kumuduni N Palansooriya; Jie Li; Pavani D Dissanayake; Manu Suvarna; Lanyu Li; Xiangzhou Yuan; Binoy Sarkar; Daniel C W Tsang; Jörg Rinklebe; Xiaonan Wang; Yong Sik Ok
Journal:  Environ Sci Technol       Date:  2022-03-15       Impact factor: 9.028

3.  Enhancement of exchangeable Cd and Pb immobilization in contaminated soil using Mg/Al LDH-zeolite as an effective adsorbent.

Authors:  Van Minh Dang; Huu Tap Van; N D Vinh; Thi Minh Hoa Duong; Thi Bich Hanh Nguyen; Thị Tuyet Nguyen; Thi Ngoc Ha Tran; Trung Kien Hoang; Thị Pha Tran; Lan Huong Nguyen; Manh Nhuong Chu
Journal:  RSC Adv       Date:  2021-05-10       Impact factor: 4.036

4.  Calcareous Materials Effectively Reduce the Accumulation of Cd in Potatoes in Acidic Cadmium-Contaminated Farmland Soils in Mining Areas.

Authors:  Sitong Gong; Hu Wang; Fei Lou; Ran Qin; Tianling Fu
Journal:  Int J Environ Res Public Health       Date:  2022-09-17       Impact factor: 4.614

  4 in total

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