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  5. A Terrestrial Biotic Ligand Model. 1. Development and Application to Cu and Ni Toxicities to Barley Root Elongation in Soils

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Article
English
2006

A Terrestrial Biotic Ligand Model. 1. Development and Application to Cu and Ni Toxicities to Barley Root Elongation in Soils

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English
2006
Environmental Science & Technology
Vol 40 (22)
DOI: 10.1021/es061171s

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Fang-jie Zhao
Fang-jie Zhao

Nanjing Agricultural University

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Sagar Thakali
Herbert E. Allen
Dominic M. Di Toro
+4 more

Abstract

A Terrestrial Biotic Ligand Model (TBLM) was developed using noncalcareous soils from Europe based on Cu and Ni speciation and barley (Hordeum vulgare cv. Regina) root elongation bioassays. Free metal ion (M2+) activity was computed by the WHAM VI model using inputs of soil metal, soil organic matter, and alkali and alkaline earth metals concentrations, and pH in soil solution. The TBLM assumes that metal in soil and in the solution are in equilibrium. Metal ions react with the biotic ligand, the receptor site, and inhibit root elongation. Other ions, principally H+, Ca2+ and Mg2+, compete with M2+ and, therefore, affect its toxicity. Toxicity is correlated only to the fraction of the total biotic ligand sites occupied by M2+. Compared to other models using either the soil metal concentration or M2+ activity as the toxic dose, the TBLM provides a more consistent method to normalize and compare Cu and Ni toxicities to root elongation among different soils. The TBLM was able to predict the EC50 soil Cu and Ni concentrations generally within a factor of 2 of the observed values, a level of precision similar to that for the aquatic Biotic Ligand Model, indicating its potential utility in metals risk assessment in soils.

How to cite this publication

Sagar Thakali, Herbert E. Allen, Dominic M. Di Toro, Alexander A. Ponizovsky, Corinne P. Rooney, Fang-jie Zhao, S. P. McGrath (2006). A Terrestrial Biotic Ligand Model. 1. Development and Application to Cu and Ni Toxicities to Barley Root Elongation in Soils. Environmental Science & Technology, 40(22), pp. 7085-7093, DOI: 10.1021/es061171s.

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Publication Details

Type

Article

Year

2006

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Environmental Science & Technology

DOI

10.1021/es061171s

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