Potential of Attapulgite/Humic Acid Composites for Remediation of Cd-Contaminated Soil

Author:

Ren Hanru12,Ren Jun12,Tao Ling12,Ren Xuechang1,Li Yunmeng1,Jiang Yuchen1,Lv Mairong3

Affiliation:

1. School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou 730070, China

2. Gansu Hanxing Environmental Protection Co., Ltd., Lanzhou 730070, China

3. College of Resources, Environment and Life Sciences, Ningxia Normal University, Guyuan 756000, China

Abstract

Stabilizing materials were prepared by different ratios of attapulgite/humic acid composites, and the optimum proportion for the remediation of Cd-polluted soils was found. The results suggested that the bioavailability of Cd in soil was decreased by the application of material prepared with humic acid and attapulgite in a ratio of 1:5. CaCl2-Cd, diethylenetriaminepentaacetic acid (DTPA-Cd) and the toxicity characteristic leaching procedure (TCLP-Cd) were reduced by 34.03%, 26.62% and 43.66%, and the ecological risk was depressed accordingly. The addition of stabilizing materials could transform the acid-soluble and reducible speciation to residue speciation, with a ratio of 1:5, significantly increasing the residue proportion of Cd in soil. The content of the residue state was increased by 63.13%, and the content of the acid-soluble state was significantly decreased by 34.10% compared with the control. The bioavailability, acid-soluble and reducible speciation of Cd had a highly negative correlation with the growth of corn, and the accumulation of Cd in corn had a significantly negative correlation with the residue speciation. Attapulgite/humic acid composites can reduce the bioavailability and increase the ratio of residue Cd in soil effectively, and they have the potential to remediate the pollution of heavy metals in soil.

Funder

Industry Support Plan Project of the Gansu Provincial Department of Education

Science and Technology Project of Gansu Provincial Science and Technology Department

Special Project of Gansu Science and Technology Commissioner

Natural Science Foundation of Ningxia Hui Autonomous Region

Publisher

MDPI AG

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