2001•Soil Science Society of America JournalRequires access

Selectivity Sequence and Competitive Adsorption of Heavy Metals by Brazilian Soils

Paulo C. Gomes, Maurício Paulo Ferreira Fontes, Aderbal G. da Silva, Eduardo de Sá Mendonça, André R. Netto

Open publisher page 406 citations

Abstract

Heavy‐metal cations can be introduced into agricultural soils by application of fertilizers, liming materials, sewage sludge, composts, and other industrial and urban waste materials. Therefore, heavy‐metal adsorption reactions, in a competitive system, are important to determine heavy‐metal availability to plants and their mobility throughout the soil. This study was conducted to evaluate the selectivity sequence and estimate the competitive adsorption of several heavy metals in seven soils with different chemical and mineralogical characteristics. Distribution coefficients (K d ), which represent the sorption affinity of metals for the solid phase, were obtained for each soil and heavy‐metal cation. On the basis of these K d , the selectivity sequence was evaluated. The most common sequences were Cr > Pb > Cu > Cd > Zn > Ni and Pb > Cr > Cu > Cd > Ni > Zn. Chromium, Pb, and Cu were the heavy‐metal cations most strongly adsorbed by all soils, whereas Cd, Ni, and Zn were the least adsorbed, in the competitive situation. Selectivity sequences related to valence for the trivalent Cr. For metals of the same valence, sequences did not exactly follow the order of electronegativity. For individual elements, the Misono softness parameter and hydrolysis properties of the heavy‐metal cations may have influenced the sequences. Correlation analysis showed that soil characteristics that may have affected the heavy‐metals adsorption, represented by the distribution coefficients, were pH and cation‐exchange capacity (CEC) for Cd and Cr; organic carbon, clay, and gibbsite contents for Cu; pH and CEC for Ni and Pb.

About this research paper

What this paper is about

Heavy‐metal cations can be introduced into agricultural soils by application of fertilizers, liming materials, sewage sludge, composts, and other industrial and urban waste materials. Therefore, heavy‐metal adsorption reactions, in a competitive system, are important to determine heavy‐metal availability to plants and their mobility throughout the soil. This study was conducted to evaluate the selectivity sequence and estimate the competitive adsorption of several heavy metals in seven soils with different chemical and mineralogical characteristics. Distribution coefficients (K d ), which represent the sorption affinity of metals for the solid phase, were obtained for each soil and heavy‐metal cation. On the basis of these K d , the selectivity sequence was evaluated. The most common sequences were Cr > Pb > Cu > Cd > Zn > Ni and Pb > Cr > Cu > Cd > Ni > Zn. Chromium, Pb, and Cu were the heavy‐metal cations most strongly adsorbed by all soils, whereas Cd, Ni, and Zn were the least adsorbed, in the competitive situation. Selectivity sequences related to valence for the trivalent Cr. For metals of the same valence, sequences did not exactly follow the order of electronegativity. For individual elements, the Misono softness parameter and hydrolysis properties of the heavy‐metal cations may have influenced the sequences. Correlation analysis showed that soil characteristics that may have affected the heavy‐metals adsorption, represented by the distribution coefficients, were pH and cation‐exchange capacity (CEC) for Cd and Cr; organic carbon, clay, and gibbsite contents for Cu; pH and CEC for Ni and Pb.

Why it matters

OpenAlex reports 406 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Heavy‐metal cations can be introduced into agricultural soils by application of fertilizers, liming materials, sewage sludge, composts, and other industrial and urban waste materials. Therefore, heavy‐metal adsorption reactions, in a competitive system, are important to determine heavy‐metal availability to plants and their mobility throughout the soil. This study was conducted to evaluate the selectivity sequence and estimate the competitive adsorption of several heavy metals in seven soils with different chemical and mineralogical characteristics. Distribution coefficients (K d ), which represent the sorption affinity of metals for the solid phase, were obtained for each soil and heavy‐metal cation. On the basis of these K d , the selectivity sequence was evaluated. The most common sequences were Cr > Pb > Cu > Cd > Zn > Ni and Pb > Cr > Cu > Cd > Ni > Zn. Chromium, Pb, and Cu were the heavy‐metal cations most strongly adsorbed by all soils, whereas Cd, Ni, and Zn were the least adsorbed, in the competitive situation. Selectivity sequences related to valence for the trivalent Cr. For metals of the same valence, sequences did not exactly follow the order of electronegativity. For individual elements, the Misono softness parameter and hydrolysis properties of the heavy‐metal cations may have influenced the sequences. Correlation analysis showed that soil characteristics that may have affected the heavy‐metals adsorption, represented by the distribution coefficients, were pH and cation‐exchange capacity (CEC) for Cd and Cr; organic carbon, clay, and gibbsite contents for Cu; pH and CEC for Ni and Pb.

Key concepts: Chemistry, Adsorption, Metal, Soil water, Cation-exchange capacity, Chromium, Sorption, Selectivity

Related papers

Back to paper searchBrowse research topicsOriginal source
Selectivity Sequence and Competitive Adsorption of Heavy Metals by Brazilian Soils — Research Paper | ScholarLens