Lignin nanoparticles filled chitosan/polyvinyl alcohol polymer blend as a coating material of urea with a slow‐release property

Author:

Elhassani Chirâa Elidrissi1,El Gharrak Abdelouahed12,Essamlali Younes23ORCID,Elamiri Salma1,Dânoun Karim23,Aboulhrouz Soumia23,Zahouily Mohamed123

Affiliation:

1. University Hassan II Faculty of Sciences and Techniques, Laboratory of Materials, Catalysis & Natural Resources Valorization, URAC 24 Casablanca Morocco

2. Natural Resources Valorization Center Moroccan Foundation for Advanced Science, Innovation and Research Rabat Morocco

3. Mohammed VI Polytechnic University Ben Guerir Morocco

Abstract

AbstractThe present study aims to develop a novel waterborne chitosan‐based coating formulation for slow‐release urea fertilizer. Coating formulations were elaborated by blending chitosan (Cs) and polyvinyl alcohol (PVA) (50/50, wt/wt) followed by the addition of lignin nanoparticles (LNPs) at various loadings (1, 2, 3, and 5 wt% LNPs) to yield viscous coating formulations. Formulations were cast to obtain coating films on which several structural, thermal, morphological, mechanical, and physicochemical characterizations were performed. Results showed that the Cs/PVA‐LNPs (3%) formulation exhibited suitable physicochemical characteristics in terms of the hydrophobic–hydrophilic balance, reduced water vapor permeability, and tolerated elasticity making it suitable to be used for fertilizer coating. Urea granules were coated by Cs/PVA and Cs/PVA‐LNPs formulations under controlled spraying and drying conditions until a good adhesion between the fertilizer and coating was obtained. Coated granules showed a good slow‐release N property over time and results indicated that the incorporation of LNPs was beneficial since its prolonged the longevity of the coated urea fertilizer up to 18 days compared to 5 days for the neat Cs/PVA. Hence, the proposed nanocomposite system showed great potential to be used as a coating material to produce a new slow‐release N fertilizer for sustainable crop production.

Funder

Centre National pour la Recherche Scientifique et Technique

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

Reference69 articles.

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2. Degradable polyester/urea inclusion complex applied as a facile and environment-friendly strategy for slow-release fertilizer: Performance and mechanism

3. Food and Agriculture Organization of the United Nations World fertilizer trends and outlook to 2022 2019.

4. Urea-impregnated HAP encapsulated by lignocellulosic biomass-extruded composites: A novel slow-release fertilizer

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