Related Experiment Video
Updated: Mar 10, 2026

Sandy Soil Improvement through Microbially Induced Calcite Precipitation MICP by Immersion
Published on: September 12, 2019
Nitrogen Fertilization Optimizes the Physicochemical Properties of Cactus Mucilage and the Biopolymeric Films
Lucas Vinícius Pierre de Andrada1, Fred Augusto Louredo de Brito1, Aline Lima Soares1
1Federal Rural University of Pernambuco, Unidade Acadêmica de Serra Talhada, Serra Talhada, Pernambuco 56909-535, Brazil.
Abstract:
In recent decades, increasing environmental concerns have driven interest in sustainable polymers, such as the mucilage derived from forage cactus (Opuntia stricta), which shows significant potential for food applications and the production of biopolymeric films. To expand its industrial use, improvements in synthesis methods, additive incorporation, and agronomic practices are necessary. However, studies on the use of O. stricta in films produced under nitrogen fertilization remain scarce, underscoring the need for further research to fully explore its potential in the bioplastics industry. Cladodes of O. stricta fertilized with 50, 150, 300, and 450 kg N ha-1 were washed, peeled, and ground with ethanol (99.8% P.A.) at a 2:3 ratio (parenchyma/alcohol), resulting in a dried mucilage powder used for analysis and film formulation. Lower nitrogen supply resulted in the highest cladode yield and produced mucilage with lower electrical conductivity, reduced sodium and potassium content, and a higher concentration of phenolic compounds, making it more suitable for antioxidant food applications. Films made from this mucilage demonstrated greater transparency, higher luminosity, increased stiffness, and reduced moisture content and water solubility. XRD and SEM analyses revealed a more crystalline and homogeneous structure, resulting in improved mechanical resistance. These outcomes indicate that nitrogen availability directly modulates mucilage composition and, consequently, the structural integrity and barrier properties of the films. The findings identify low nitrogen fertilization as a cost-effective and environmentally favorable strategy for producing consistent, high-quality biopolymeric films with potential applications in sustainable packaging.
Related Concept Videos
Key Elements for Plant Nutrition
The Roles of Bacteria and Fungi in Plant Nutrition

