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Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil

A study was conducted to determine the impact of applying different sources of Mg, namely kieserite, ground magnesium limestone (GML) and Mg-rich synthetic gypsum (MRSG) on an acid tropical soil, oil palm growth and production. Besides high amount of Mg and Ca, MRSG contains S. Exchangeable Ca in th...

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Autores principales: Ayanda, Arolu Fatai, Jusop, Shamshuddin, Ishak, Che Fauziah, Othman, Radziah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7297319/
https://www.ncbi.nlm.nih.gov/pubmed/32544208
http://dx.doi.org/10.1371/journal.pone.0234045
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author Ayanda, Arolu Fatai
Jusop, Shamshuddin
Ishak, Che Fauziah
Othman, Radziah
author_facet Ayanda, Arolu Fatai
Jusop, Shamshuddin
Ishak, Che Fauziah
Othman, Radziah
author_sort Ayanda, Arolu Fatai
collection PubMed
description A study was conducted to determine the impact of applying different sources of Mg, namely kieserite, ground magnesium limestone (GML) and Mg-rich synthetic gypsum (MRSG) on an acid tropical soil, oil palm growth and production. Besides high amount of Mg and Ca, MRSG contains S. Exchangeable Ca in the untreated soil of the plantation was 0.64 cmol(c) kg(-1), but its critical level to sustain oil palm growth was 0.9 cmol(c) kg(-1). MRSG was applied in the plantation as Mg-fertilizer; however, since Ca is also a limiting nutrient, oil palm growth was correlated (r = 0.69) with Ca supplied by the MRSG. Mg needed to sustain oil palm production is normally supplied by kieserite. Its requirement can be met at a lower cost compared to that of the kieserite by using MRSG. Due to MRSG treatment, exchangeable Ca in the soil increased steadily to satisfy the requirement of oil palm for fruit bunches production. From the glasshouse and field study, it was observed that MRSG applied at 1.5 times the recommended rate gave results comparable to that of the kieserite. MRSG treatment resulted in the increase of soil pH to >5 that precipitated Al(3+) as inert Al-hydroxides, which eventually enhanced oil palm seedlings growth. Thus, MRSG can also replace GML to increase soil pH and satisfy the Ca and Mg requirement of oil palm. It can be concluded that MRSG has the potential to be used as a source of Mg as well as Ca for oil palm grown on acidic soil.
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spelling pubmed-72973192020-06-19 Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil Ayanda, Arolu Fatai Jusop, Shamshuddin Ishak, Che Fauziah Othman, Radziah PLoS One Research Article A study was conducted to determine the impact of applying different sources of Mg, namely kieserite, ground magnesium limestone (GML) and Mg-rich synthetic gypsum (MRSG) on an acid tropical soil, oil palm growth and production. Besides high amount of Mg and Ca, MRSG contains S. Exchangeable Ca in the untreated soil of the plantation was 0.64 cmol(c) kg(-1), but its critical level to sustain oil palm growth was 0.9 cmol(c) kg(-1). MRSG was applied in the plantation as Mg-fertilizer; however, since Ca is also a limiting nutrient, oil palm growth was correlated (r = 0.69) with Ca supplied by the MRSG. Mg needed to sustain oil palm production is normally supplied by kieserite. Its requirement can be met at a lower cost compared to that of the kieserite by using MRSG. Due to MRSG treatment, exchangeable Ca in the soil increased steadily to satisfy the requirement of oil palm for fruit bunches production. From the glasshouse and field study, it was observed that MRSG applied at 1.5 times the recommended rate gave results comparable to that of the kieserite. MRSG treatment resulted in the increase of soil pH to >5 that precipitated Al(3+) as inert Al-hydroxides, which eventually enhanced oil palm seedlings growth. Thus, MRSG can also replace GML to increase soil pH and satisfy the Ca and Mg requirement of oil palm. It can be concluded that MRSG has the potential to be used as a source of Mg as well as Ca for oil palm grown on acidic soil. Public Library of Science 2020-06-16 /pmc/articles/PMC7297319/ /pubmed/32544208 http://dx.doi.org/10.1371/journal.pone.0234045 Text en © 2020 Ayanda 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
Ayanda, Arolu Fatai
Jusop, Shamshuddin
Ishak, Che Fauziah
Othman, Radziah
Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
title Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
title_full Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
title_fullStr Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
title_full_unstemmed Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
title_short Utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
title_sort utilization of magnesium-rich synthetic gypsum as magnesium fertilizer for oil palm grown on acidic soil
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7297319/
https://www.ncbi.nlm.nih.gov/pubmed/32544208
http://dx.doi.org/10.1371/journal.pone.0234045
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