Related Experiment Video
Updated: Aug 15, 2026

Production and Testing of Moisture Behavior and Thermal Properties of Rapeseed Straw and Ganoderma resinaceum Mycelium Bio-Composites
Published on: September 5, 2025
Biosoftening of coir fiber using selected microorganisms
Akhila Rajan1, Resmi C Senan, C Pavithran
1Bioactive Polymer Engineering Section, Polymer Division, Regional Research Laboratory (CSIR), Trivandrum, 695 019 Kerala, India.
Abstract:
Coir fiber belongs to the group of hard structural fibers obtained from coconut husk. As lignin is the main constituent of coir responsible for its stiffness, microbes that selectively remove lignin without loss of appreciable amounts of cellulose are extremely attractive in biosoftening. Five isolated strains were compared with known strains of bacteria and fungi. The raw fiber treated with Pseudomonas putida and Phanerocheate chrysosporium produced better softened fiber at 30+/-2 degrees C and neutral pH. FeSO4 and humic acid were found to be the best inducers for P. chrysosporium and P. putida, respectively, while sucrose and dextrose were the best C-sources for both. Biosoftening of unretted coir fibers was more advantageous than the retted fibers. Unlike the weak chemically softened fiber, microbial treatment produced soft, whiter fibers having better tensile strength and elongation (44.6-44.8%) properties. Scanning electron microscopy photos showed the mycelia penetrating the pores of the fiber, removing the tylose plug and degrading lignin.
Related Concept Videos
Bioremediation
Microbial Bioremediation of Hydrocarbons
Production of Organic Acids
Microbes in Food Production
Bioreactor Controls-III
Biodeterioration

