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Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil

Organic matter plays a key role in availability and transformation of soil Zn (zinc), which greatly controls Zn concentrations in cereal grains and human Zn nutrition level. Accordingly, soils homogenized with the wheat straw (0, 12 g straw kg(-1)) and Zn fertilizer (0, 7 mg Zn kg(-1)) were buried a...

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Autores principales: Chen, Yanlong, Cui, Juan, Tian, Xiaohong, Zhao, Aiqing, Li, Meng, Wang, Shaoxia, Li, Xiushaung, Jia, Zhou, Liu, Ke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5230769/
https://www.ncbi.nlm.nih.gov/pubmed/28081179
http://dx.doi.org/10.1371/journal.pone.0169776
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author Chen, Yanlong
Cui, Juan
Tian, Xiaohong
Zhao, Aiqing
Li, Meng
Wang, Shaoxia
Li, Xiushaung
Jia, Zhou
Liu, Ke
author_facet Chen, Yanlong
Cui, Juan
Tian, Xiaohong
Zhao, Aiqing
Li, Meng
Wang, Shaoxia
Li, Xiushaung
Jia, Zhou
Liu, Ke
author_sort Chen, Yanlong
collection PubMed
description Organic matter plays a key role in availability and transformation of soil Zn (zinc), which greatly controls Zn concentrations in cereal grains and human Zn nutrition level. Accordingly, soils homogenized with the wheat straw (0, 12 g straw kg(-1)) and Zn fertilizer (0, 7 mg Zn kg(-1)) were buried and incubated in the field over 210 days to explore the response of soil Zn availability and the ageing of exogenous Zn to straw addition. Results indicated that adding straw alone scarcely affected soil DTPA-Zn concentration and Zn fractions because of the low Zn concentration of wheat straw and the high soil pH, and large clay and calcium carbonate contents. However, adding exogenous Zn plus straw increased the DTPA-Zn abundance by about 5-fold and had the similar results to adding exogenous Zn alone, corresponding to the increased Zn fraction loosely bounded to organic matter, which had a more dominant presence in Zn reaction than soil other constituents such as carbonate and minerals in calcareous soil. The higher relative amount of ineffective Zn (~50%) after water soluble Zn addition also occurred, and at the days of 120–165 and 180–210when the natural temperature and rainfall changed mildly, the ageing process of exogenous Zn over time was well evaluated by the diffusion equation, respectively. Consequently, combining crop residues with exogenous water soluble Zn application is promising strategy to maximize the availability of Zn in calcareous soil, but the higher ageing rate of Zn caused by the higher Zn mobility should be considered.
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spelling pubmed-52307692017-01-31 Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil Chen, Yanlong Cui, Juan Tian, Xiaohong Zhao, Aiqing Li, Meng Wang, Shaoxia Li, Xiushaung Jia, Zhou Liu, Ke PLoS One Research Article Organic matter plays a key role in availability and transformation of soil Zn (zinc), which greatly controls Zn concentrations in cereal grains and human Zn nutrition level. Accordingly, soils homogenized with the wheat straw (0, 12 g straw kg(-1)) and Zn fertilizer (0, 7 mg Zn kg(-1)) were buried and incubated in the field over 210 days to explore the response of soil Zn availability and the ageing of exogenous Zn to straw addition. Results indicated that adding straw alone scarcely affected soil DTPA-Zn concentration and Zn fractions because of the low Zn concentration of wheat straw and the high soil pH, and large clay and calcium carbonate contents. However, adding exogenous Zn plus straw increased the DTPA-Zn abundance by about 5-fold and had the similar results to adding exogenous Zn alone, corresponding to the increased Zn fraction loosely bounded to organic matter, which had a more dominant presence in Zn reaction than soil other constituents such as carbonate and minerals in calcareous soil. The higher relative amount of ineffective Zn (~50%) after water soluble Zn addition also occurred, and at the days of 120–165 and 180–210when the natural temperature and rainfall changed mildly, the ageing process of exogenous Zn over time was well evaluated by the diffusion equation, respectively. Consequently, combining crop residues with exogenous water soluble Zn application is promising strategy to maximize the availability of Zn in calcareous soil, but the higher ageing rate of Zn caused by the higher Zn mobility should be considered. Public Library of Science 2017-01-12 /pmc/articles/PMC5230769/ /pubmed/28081179 http://dx.doi.org/10.1371/journal.pone.0169776 Text en © 2017 Chen et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Chen, Yanlong
Cui, Juan
Tian, Xiaohong
Zhao, Aiqing
Li, Meng
Wang, Shaoxia
Li, Xiushaung
Jia, Zhou
Liu, Ke
Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil
title Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil
title_full Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil
title_fullStr Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil
title_full_unstemmed Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil
title_short Effect of Straw Amendment on Soil Zn Availability and Ageing of Exogenous Water-Soluble Zn Applied to Calcareous Soil
title_sort effect of straw amendment on soil zn availability and ageing of exogenous water-soluble zn applied to calcareous soil
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5230769/
https://www.ncbi.nlm.nih.gov/pubmed/28081179
http://dx.doi.org/10.1371/journal.pone.0169776
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