Development of High-Efficiency Fertilizer by Hydrogels Obtained from Cassava Starch and Citric Acid for Slow Release of Ammonium and Potassium

Author:

Chamorro Andrés F.1ORCID,Palencia Manuel2ORCID,Arrieta Álvaro A.3ORCID

Affiliation:

1. Research Group of Electrochemistry and Environment (GIEMA), Faculty of Basic Sciences, Universidad Santiago de Cali, Cali 760035, Colombia

2. Research Group in Science with Technological Applications (GICAT), Department of Chemistry, Faculty of Natural and Exact Science, Universidad del Valle, Cali 760032, Colombia

3. Department of Biology and Chemistry, Faculty of Education and Sciences, Universidad de Sucre, Sincelejo 700003, Colombia

Abstract

Fertilizers with enhanced efficiency or high-efficiency fertilizers increase the nutrient availability, minimize losses, and reduce costs, thereby increasing crop yields and food production while mitigating environmental impacts. This research evaluates the synthesis of biodegradable hydrogels from cassava starch and citric acid for agrochemical applications. Hydrogels were synthesized using water as the solvent and applied for the controlled release of macronutrients (N and K). Four concentrations of nutrient-containing salts were tested (0.5 to 10.0% w/w). Materials were analyzed using ATR-FTIR spectroscopy and swelling studies. The presence of nutrients reduced both the crosslinking efficacy and the water absorption capacity, with the latter dropping from 183.4 ± 0.6% to 117.9 ± 3.7% and 157.4 ± 25.0% for hydrogels loaded with NH4Cl and KCl, respectively. The cumulative release of K and N from the hydrogel was monitored for 144 h and examined using kinetics models, revealing that the releases follow Fickian’s diffusion and anomalous diffusion, respectively. Additionally, the material was formed using cassava with peel previously milled to reduce the production costs, and its potential for nutrient-controlled delivery was evaluated, with the finding that this hydrogel decreases the release rate of nitrogen. The results suggest that these biomaterials may have promising applications in the agrochemical industry in the making of high-efficiency fertilizers.

Funder

Dirección General de Investigaciones of Universidad Santiago de Cali

Publisher

MDPI AG

Reference43 articles.

1. (2024, May 22). United Nations, World Population Prospects 2019: Highlights. Available online: https://population.un.org/wpp/Publications/Files/WPP2019_10KeyFindings.pdf.

2. Nanocomposite-based smart fertilizers: A boon to agricultural and environmental sustainability;Chakraborty;Sci. Total Environ.,2023

3. Nitrogen Fertilizer Losses from Rice Soils and Control of Environmental Pollution Problems;Choudhury;Commun. Soil Sci. Plant Anal.,2005

4. Nano-enabled strategies to enhance biological nitrogen fixation;Li;Nat. Nanotechnol.,2023

5. Ghorbanpour, M., and Muhammad Shahid, M.A. (2022). Eco-friendly routes for obtaining nanoparticles and their application in agro-industry. Nano-Enabled Agrochemicals in Agriculture, Elsevier.

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