Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application

In response to human population increase, the utilization of acid sulfate soils for rice cultivation is one option for increasing production. The main problems associated with such soils are their low pH values and their associated high content of exchangeable Al, which could be detrimental to crop...

Full description

Bibliographic Details
Main Authors: A. A. Elisa, S. Ninomiya, J. Shamshuddin, I. Roslan
Format: Article
Language:English
Published: Copernicus Publications 2016-03-01
Series:Solid Earth
Online Access:http://www.solid-earth.net/7/367/2016/se-7-367-2016.pdf
id doaj-90c5d2547a794870ad18c83107d006a9
record_format Article
spelling doaj-90c5d2547a794870ad18c83107d006a92020-11-25T01:09:00ZengCopernicus PublicationsSolid Earth1869-95101869-95292016-03-017236737410.5194/se-7-367-2016Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate applicationA. A. Elisa0S. Ninomiya1J. Shamshuddin2I. Roslan3Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, JapanGraduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, JapanDepartment of Land Management, Faculty of Agriculture, Universiti Putra Malaysia, 43400 Serdang, Selangor, MalaysiaDepartment of Land Management, Faculty of Agriculture, Universiti Putra Malaysia, 43400 Serdang, Selangor, MalaysiaIn response to human population increase, the utilization of acid sulfate soils for rice cultivation is one option for increasing production. The main problems associated with such soils are their low pH values and their associated high content of exchangeable Al, which could be detrimental to crop growth. The application of soil amendments is one approach for mitigating this problem, and calcium silicate is an alternative soil amendment that could be used. Therefore, the main objective of this study was to ameliorate soil acidity in rice-cropped soil. The secondary objective was to study the effects of calcium silicate amendment on soil acidity, exchangeable Al, exchangeable Ca, and Si content. The soil was treated with 0, 1, 2, and 3 Mg ha<sup>−1</sup> of calcium silicate under submerged conditions and the soil treatments were sampled every 30 days throughout an incubation period of 120 days. Application of calcium silicate induced a positive effect on soil pH and exchangeable Al; soil pH increased from 2.9 (initial) to 3.5, while exchangeable Al was reduced from 4.26 (initial) to 0.82 cmol<sub>c</sub> kg<sup>−1</sup>. Furthermore, the exchangeable Ca and Si contents increased from 1.68 (initial) to 4.94 cmol<sub>c</sub> kg<sup>−1</sup> and from 21.21 (initial) to 81.71 mg kg<sup>−1</sup>, respectively. Therefore, it was noted that calcium silicate was effective at alleviating Al toxicity in acid sulfate, rice-cropped soil, yielding values below the critical level of 2 cmol<sub>c</sub> kg<sup>−1</sup>. In addition, application of calcium silicate showed an ameliorative effect as it increased soil pH and supplied substantial amounts of Ca and Si.http://www.solid-earth.net/7/367/2016/se-7-367-2016.pdf
collection DOAJ
language English
format Article
sources DOAJ
author A. A. Elisa
S. Ninomiya
J. Shamshuddin
I. Roslan
spellingShingle A. A. Elisa
S. Ninomiya
J. Shamshuddin
I. Roslan
Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application
Solid Earth
author_facet A. A. Elisa
S. Ninomiya
J. Shamshuddin
I. Roslan
author_sort A. A. Elisa
title Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application
title_short Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application
title_full Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application
title_fullStr Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application
title_full_unstemmed Alleviating aluminum toxicity in an acid sulfate soil from Peninsular Malaysia by calcium silicate application
title_sort alleviating aluminum toxicity in an acid sulfate soil from peninsular malaysia by calcium silicate application
publisher Copernicus Publications
series Solid Earth
issn 1869-9510
1869-9529
publishDate 2016-03-01
description In response to human population increase, the utilization of acid sulfate soils for rice cultivation is one option for increasing production. The main problems associated with such soils are their low pH values and their associated high content of exchangeable Al, which could be detrimental to crop growth. The application of soil amendments is one approach for mitigating this problem, and calcium silicate is an alternative soil amendment that could be used. Therefore, the main objective of this study was to ameliorate soil acidity in rice-cropped soil. The secondary objective was to study the effects of calcium silicate amendment on soil acidity, exchangeable Al, exchangeable Ca, and Si content. The soil was treated with 0, 1, 2, and 3 Mg ha<sup>−1</sup> of calcium silicate under submerged conditions and the soil treatments were sampled every 30 days throughout an incubation period of 120 days. Application of calcium silicate induced a positive effect on soil pH and exchangeable Al; soil pH increased from 2.9 (initial) to 3.5, while exchangeable Al was reduced from 4.26 (initial) to 0.82 cmol<sub>c</sub> kg<sup>−1</sup>. Furthermore, the exchangeable Ca and Si contents increased from 1.68 (initial) to 4.94 cmol<sub>c</sub> kg<sup>−1</sup> and from 21.21 (initial) to 81.71 mg kg<sup>−1</sup>, respectively. Therefore, it was noted that calcium silicate was effective at alleviating Al toxicity in acid sulfate, rice-cropped soil, yielding values below the critical level of 2 cmol<sub>c</sub> kg<sup>−1</sup>. In addition, application of calcium silicate showed an ameliorative effect as it increased soil pH and supplied substantial amounts of Ca and Si.
url http://www.solid-earth.net/7/367/2016/se-7-367-2016.pdf
work_keys_str_mv AT aaelisa alleviatingaluminumtoxicityinanacidsulfatesoilfrompeninsularmalaysiabycalciumsilicateapplication
AT sninomiya alleviatingaluminumtoxicityinanacidsulfatesoilfrompeninsularmalaysiabycalciumsilicateapplication
AT jshamshuddin alleviatingaluminumtoxicityinanacidsulfatesoilfrompeninsularmalaysiabycalciumsilicateapplication
AT iroslan alleviatingaluminumtoxicityinanacidsulfatesoilfrompeninsularmalaysiabycalciumsilicateapplication
_version_ 1725180449450360832