Booth Id:
ENEV078
Category:
Environmental Engineering
Year:
2025
Finalist Names:
Kleinfeld, Eden (School: York Academy Regional Charter School Upper School)
Abstract:
The fashion industry generates substantial textile waste, contributing to environmental pollution and resource depletion. This study investigates the enzymatic separation of mixed poly-cotton fibers to enhance textile recycling efficiency. The research examines the impact of varying cellulase enzyme concentrations (0-10 FPU/mL) on the degradation of cotton fibers and the recovery of polyester in a 60/40 poly-cotton fabric blend.
By measuring fabric weight loss and analyzing fiber structure through microscopy, the study determines the optimal enzyme concentration for fiber separation. Results indicate a positive correlation between increased cellulase concentration and cotton fiber degradation, with 10 FPU/mL achieving the highest mean weight loss. Statistical analysis (ANOVA, Tukey HSD) confirms significant differences between enzyme concentrations, reinforcing the effectiveness of enzymatic recycling.
While enzymatic processing offers an eco-friendly alternative to mechanical and chemical methods, challenges such as fiber composition variability and process scalability remain. This research supports the development of sustainable textile recycling methods, promoting a circular economy in the fashion industry.
Awards Won: