Developed and Evaluation of Slow Release Phosphorus Fertilizer Using Mono-ammonium Phosphate and Di-ammonium Phosphate
Khalid Al Rohily, Adel Ghoneim, Hany El-Hamshary, Abdullah Modaihsh
International Research Journal of Pure and Applied Chemistry · pp. 1–15 · Published 13 Jun 2019
10.9734/irjpac/2019/v19i130103Abstract
Phosphorus (P) availability is generally low in Calcareous soils due to its association with soil constituents forming other P compounds that are of low solubility and availability for plant uptake. In particular, phosphorus use efficiency (PUE) in Saudi Arabia agricultural soils is very low. Therefore, there is a growing interest in finding an effective approach to improve PUE. Fertilizer coating with polymers has become a recognized strategy for controlling the release of nutrients and regulating their availability in the soil. In this study, two fertilizers types of phosphate-bound alginate-graft polyacrylamide (P-Alg-g-PAM) were prepared using mono-ammonium phosphate (MAP) and di-ammonium phosphate (DAP). A matrix of sodium alginate (Alg) and poly (vinyl alcohol) (PVA) was phosphorylated using either MAP or DAP, followed by grafting with acrylamide. An incubation study was conducted by using three soils with different CaCO3 content to evaluated the performance of developed fertilizer (slow-release MAP and slow-release DAP) compared with the commercial MAP and DAP fertilizer. The developed fertilizer exhibited P release of 77% for the slow release MAP and 57% for the slow release DAP until the 45 days of the application at pH 7 and 25°C. The results of incubation study, indicated that the available soil-P significantly (P<0.05) varied between the different P fertilizers. In the beginning of the incubation period, the available soil- P into different soil from slow-release MAP and DAP was slightly lower than the commercial MAP and DAP, but with the time proceed, the slow-release MAP and slow-release DAP resultant in more available soil- P than the uncoated MAP and uncoated DAP. The results indicated that, the fertilizers could be classified into two groups: the first “fast release” group showed total P release in the 10 days after incorporation of uncoated MAP and uncoated DAP fertilizers into soil. The second “slow release” group included coated slow- release MAP and coated slow- release DAP fertilizer, released of about 70% during the period of 10-30 days after incubation. The results of P fractionation chemical analysis indicated that, the soluble, exchangeable-P, Ca-occluded-P fraction, was the most dominated P forms distributed among the soils.
Cited by 2
Manas Mandal, Roop Singh Lodhi, Shivangi Chourasia · ChemPlusChem · 2025
Khalid Al Rohily, Hany El-Hamshary, Adel Ghoneim · ACS Omega · 2020
Related research
- A Comparative Study of the Bioremediation Potentials of Inorganic Nutrient Sources — shares topic coverage
- Status of Soil Phosphorus in Context with Phosphate Solubilizing Microorganisms in Different Agricultural Amendments in Kachchh, Gujarat, Western India — shares topic coverage
- Assessment of Fertilizer Applicator while Spraying Fertilizers in Warangal and Nagarkurnool District, India — shares topic coverage
- Quality Seed of Onion: Effect of Micro and Macronutrients — shares topic coverage
- Impact of Different Fertilizer Sources on Nutrient Uptake in Coriander for Kymore Platueau and Satpura Hills of Madhya Pradesh — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
2
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.