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Updated: Jun 25, 2026

Immobilization of Multi-biocatalysts in Alginate Beads for Cofactor Regeneration and Improved Reusability
Published on: April 22, 2016
Tailored release profiles of alginate and pectin beads by embedding compost-extracted humic substances
Claudia Savarese1, Mariamelia Stanzione2, Davide Savy3
1Department of Agricultural Sciences, Università di Napoli Federico II, Via Università 100, 80055 Portici, Italy; Italian Aerospace Research Centre (CIRA), Via Maiorise 1, 81043 Capua, Italy.
Abstract:
Humic Substances (HS) isolated from composted horticultural residues (HS-COM) or lignite (HS-LIG) were blended with alginate or pectin to synthesise novel beads with tuned release of phloroglucinol, a compound used to control plant pathogens. We observed that the physical-chemical and release characteristics of the beads depended on the chemical structure of HS and of the polysaccharidic matrix employed, as determined by Nuclear Magnetic Resonance Spectroscopy. Indeed, strong interactions between pectin backbone and HS-COM hydrophilic moieties resulted in beads with tightly packed structure and high resistance to internal pressure upon water adsorption. Conversely, due the hydrophobic nature of HS-LIG, more fragile pectin beads with disordered architecture and a higher phloroglucinol release were synthesised. A bead structure loosening was observed by HS addition to alginate, determining a lower bead resistance to mechanical stress and increasing phloroglucinol diffusion, regardless of HS nature. Overall, our study showed that horticultural residues can be valorised into high added value products, and that novel formulations are provided to sustain crop yields while reducing the agricultural inputs.

