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  5. Effect of clay minerals on extractability of heavy metals and sewage sludge mineralization in soil

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Article
English
2004

Effect of clay minerals on extractability of heavy metals and sewage sludge mineralization in soil

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English
2004
Chemistry and Ecology
Vol 20 (2)
DOI: 10.1080/02757540410001665971

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Yakov Kuzyakov
Yakov Kuzyakov

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Adel R. A. Usman
Yakov Kuzyakov
Karl Stahr

Abstract

An incubation experiment lasting 111 d was carried out to study the effect of the addition of three clay minerals (Na-bentonite, Ca-bentonite, and zeolite) to soil derived from sewage sludge on water-extractable and exchangeable forms of four heavy metals (Zn, Cd, Cu, and Ni), as well as on soil organic matter mineralization, microbial biomass C and the release of inorganic N. The addition of clay minerals led to a significant decrease in water-extractable and exchangeable forms of heavy metals. The extent of decrease ranged from 14 to 75% for the water-extractable heavy metals and from 12 to 42% for the exchangeable form over the incubation time, as compared with untreated soil. The reduction in extractability of heavy metals was greater due to the addition of Na-bentonite and Ca-bentonite than that due to the addition of zeolite. Addition of clay minerals did not affect any of the following microbiological parameters in the soil: microbial biomass C, organic C (Corg) mineralization, and metabolic quotient (qCO2), and release of inorganic N during the first 3 weeks of incubation. However, as the incubation period increased, these parameters were significantly increased by the addition of clay minerals, especially by the addition of Na-bentonite and Ca-bentonite. This result is explained by a strong reduction in extractability of heavy metals after the addition of Na-bentonite and Ca-bentonite.

How to cite this publication

Adel R. A. Usman, Yakov Kuzyakov, Karl Stahr (2004). Effect of clay minerals on extractability of heavy metals and sewage sludge mineralization in soil. Chemistry and Ecology, 20(2), pp. 123-135, DOI: 10.1080/02757540410001665971.

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Publication Details

Type

Article

Year

2004

Authors

3

Datasets

0

Total Files

0

Language

English

Journal

Chemistry and Ecology

DOI

10.1080/02757540410001665971

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