Potential Use of Sea Water for Pineapple Production in BRIS Soil.

An experiment was conducted to determine the response of four sea water treatments on an improved pineapple genotype “N- 36” grown in Beach Ridges Interspersed with Swales (BRIS) soil. Sea water treatments were prepared by substitution of K with Na ions i.e., 0% (in control), 15%, 30% and 60% of r...

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Main Authors: Musa, Mohamed Hanafi, Shahid, M. Shahidullah, Md. Niazuddin, Abd Aziz, Zalilah, Mohammud, C. H.
Format: Article
Language:English
English
Published: 2010
Online Access:http://psasir.upm.edu.my/id/eprint/11723/1/Potential_Use_of_Sea_Water.pdf
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author Musa, Mohamed Hanafi
Shahid, M. Shahidullah
Md. Niazuddin,
Abd Aziz, Zalilah
Mohammud, C. H.
author_facet Musa, Mohamed Hanafi
Shahid, M. Shahidullah
Md. Niazuddin,
Abd Aziz, Zalilah
Mohammud, C. H.
author_sort Musa, Mohamed Hanafi
collection UPM
description An experiment was conducted to determine the response of four sea water treatments on an improved pineapple genotype “N- 36” grown in Beach Ridges Interspersed with Swales (BRIS) soil. Sea water treatments were prepared by substitution of K with Na ions i.e., 0% (in control), 15%, 30% and 60% of required K doses were replaced by Na ions from sea water. Treatment effects were non-significant up to 30% sodium replacement from sea water. Na replacement (60%) showed significant impact on different growth parameters at different stages (8-10 months after planting). However, the fruit yield, the final target of crop harvest was not adversely affected at significance level. Therefore, sea water irrigation can easily fulfil 60% dose of potassium fertilizer by sodium ions for the production of pineapple in BRIS soil.
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spelling upm.eprints-117232014-10-14T08:08:01Z http://psasir.upm.edu.my/id/eprint/11723/ Potential Use of Sea Water for Pineapple Production in BRIS Soil. Musa, Mohamed Hanafi Shahid, M. Shahidullah Md. Niazuddin, Abd Aziz, Zalilah Mohammud, C. H. An experiment was conducted to determine the response of four sea water treatments on an improved pineapple genotype “N- 36” grown in Beach Ridges Interspersed with Swales (BRIS) soil. Sea water treatments were prepared by substitution of K with Na ions i.e., 0% (in control), 15%, 30% and 60% of required K doses were replaced by Na ions from sea water. Treatment effects were non-significant up to 30% sodium replacement from sea water. Na replacement (60%) showed significant impact on different growth parameters at different stages (8-10 months after planting). However, the fruit yield, the final target of crop harvest was not adversely affected at significance level. Therefore, sea water irrigation can easily fulfil 60% dose of potassium fertilizer by sodium ions for the production of pineapple in BRIS soil. 2010 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/11723/1/Potential_Use_of_Sea_Water.pdf Musa, Mohamed Hanafi and Shahid, M. Shahidullah and Md. Niazuddin, and Abd Aziz, Zalilah and Mohammud, C. H. (2010) Potential Use of Sea Water for Pineapple Production in BRIS Soil. International Journal of Agriculture and Biology, 12 (3). pp. 396-400. ISSN 1560-8530 English
spellingShingle Musa, Mohamed Hanafi
Shahid, M. Shahidullah
Md. Niazuddin,
Abd Aziz, Zalilah
Mohammud, C. H.
Potential Use of Sea Water for Pineapple Production in BRIS Soil.
title Potential Use of Sea Water for Pineapple Production in BRIS Soil.
title_full Potential Use of Sea Water for Pineapple Production in BRIS Soil.
title_fullStr Potential Use of Sea Water for Pineapple Production in BRIS Soil.
title_full_unstemmed Potential Use of Sea Water for Pineapple Production in BRIS Soil.
title_short Potential Use of Sea Water for Pineapple Production in BRIS Soil.
title_sort potential use of sea water for pineapple production in bris soil
url http://psasir.upm.edu.my/id/eprint/11723/1/Potential_Use_of_Sea_Water.pdf
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