Potential of rejected sago starch as a coating material for urea encapsulation

Increases in food production to meet global food requirements lead to an increase in the demand for nitrogen (N) fertilizers, especially urea, for soil productivity, crop yield, and food security improvement. To achieve a high yield of food crops, the excessive use of urea has resulted in low urea-N...

Full description

Saved in:
Bibliographic Details
Main Authors: Rajan, Kavitha, Omar, Latifah, Ahmed, Osumanu Haruna, Charles, Primus Walter, Kasim, Susilawati
Format: Article
Published: Multidisciplinary Digital Publishing Institute 2023
Online Access:http://psasir.upm.edu.my/id/eprint/109081/
https://www.mdpi.com/2073-4360/15/8/1863
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.upm.eprints.109081
record_format eprints
spelling my.upm.eprints.1090812024-09-02T06:50:23Z http://psasir.upm.edu.my/id/eprint/109081/ Potential of rejected sago starch as a coating material for urea encapsulation Rajan, Kavitha Omar, Latifah Ahmed, Osumanu Haruna Charles, Primus Walter Kasim, Susilawati Increases in food production to meet global food requirements lead to an increase in the demand for nitrogen (N) fertilizers, especially urea, for soil productivity, crop yield, and food security improvement. To achieve a high yield of food crops, the excessive use of urea has resulted in low urea-N use efficiency and environmental pollution. One promising alternative to increase urea-N use efficiency, improve soil N availability, and lessen the potential environmental effects of the excessive use of urea is to encapsulate urea granules with appropriate coating materials to synchronize the N release with crop assimilation. Chemical additives, such as sulfur-based coatings, mineral-based coatings, and several polymers with different action principles, have been explored and used for coating the urea granule. However, their high material cost, limited resources, and adverse effects on the soil ecosystem limit the widespread application of urea coated with these materials. This paper documents a review of issues related to the materials used for urea coating and the potential of natural polymers, such as rejected sago starch, as a coating material for urea encapsulation. The aim of the review is to unravel an understanding of the potential of rejected sago starch as a coating material for the slow release of N from urea. Rejected sago starch from sago flour processing is a natural polymer that could be used to coat urea because the starch enables a gradual, water-driven mechanism of N release from the urea–polymer interface to the polymer–soil interface. The advantages of rejected sago starch for urea encapsulation over other polymers are that rejected sago starch is one of the most abundant polysaccharide polymers, the cheapest biopolymer, and is fully biodegradable, renewable, and environmentally friendly. This review provides information on the potential of rejected sago starch as a coating material, the advantages of using rejected sago starch as coating material over other polymer materials, a simple coating method, and the mechanisms of N release from urea coated with rejected sago starch. Multidisciplinary Digital Publishing Institute 2023-04-13 Article PeerReviewed Rajan, Kavitha and Omar, Latifah and Ahmed, Osumanu Haruna and Charles, Primus Walter and Kasim, Susilawati (2023) Potential of rejected sago starch as a coating material for urea encapsulation. Polymers, 15 (8). art. no. 1863. pp. 1-17. ISSN 2073-4360 https://www.mdpi.com/2073-4360/15/8/1863 10.3390/polym15081863
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description Increases in food production to meet global food requirements lead to an increase in the demand for nitrogen (N) fertilizers, especially urea, for soil productivity, crop yield, and food security improvement. To achieve a high yield of food crops, the excessive use of urea has resulted in low urea-N use efficiency and environmental pollution. One promising alternative to increase urea-N use efficiency, improve soil N availability, and lessen the potential environmental effects of the excessive use of urea is to encapsulate urea granules with appropriate coating materials to synchronize the N release with crop assimilation. Chemical additives, such as sulfur-based coatings, mineral-based coatings, and several polymers with different action principles, have been explored and used for coating the urea granule. However, their high material cost, limited resources, and adverse effects on the soil ecosystem limit the widespread application of urea coated with these materials. This paper documents a review of issues related to the materials used for urea coating and the potential of natural polymers, such as rejected sago starch, as a coating material for urea encapsulation. The aim of the review is to unravel an understanding of the potential of rejected sago starch as a coating material for the slow release of N from urea. Rejected sago starch from sago flour processing is a natural polymer that could be used to coat urea because the starch enables a gradual, water-driven mechanism of N release from the urea–polymer interface to the polymer–soil interface. The advantages of rejected sago starch for urea encapsulation over other polymers are that rejected sago starch is one of the most abundant polysaccharide polymers, the cheapest biopolymer, and is fully biodegradable, renewable, and environmentally friendly. This review provides information on the potential of rejected sago starch as a coating material, the advantages of using rejected sago starch as coating material over other polymer materials, a simple coating method, and the mechanisms of N release from urea coated with rejected sago starch.
format Article
author Rajan, Kavitha
Omar, Latifah
Ahmed, Osumanu Haruna
Charles, Primus Walter
Kasim, Susilawati
spellingShingle Rajan, Kavitha
Omar, Latifah
Ahmed, Osumanu Haruna
Charles, Primus Walter
Kasim, Susilawati
Potential of rejected sago starch as a coating material for urea encapsulation
author_facet Rajan, Kavitha
Omar, Latifah
Ahmed, Osumanu Haruna
Charles, Primus Walter
Kasim, Susilawati
author_sort Rajan, Kavitha
title Potential of rejected sago starch as a coating material for urea encapsulation
title_short Potential of rejected sago starch as a coating material for urea encapsulation
title_full Potential of rejected sago starch as a coating material for urea encapsulation
title_fullStr Potential of rejected sago starch as a coating material for urea encapsulation
title_full_unstemmed Potential of rejected sago starch as a coating material for urea encapsulation
title_sort potential of rejected sago starch as a coating material for urea encapsulation
publisher Multidisciplinary Digital Publishing Institute
publishDate 2023
url http://psasir.upm.edu.my/id/eprint/109081/
https://www.mdpi.com/2073-4360/15/8/1863
_version_ 1811686032975855616
score 13.211869