Carbohydrate Polymer Technologies and Applications | |
Effect of crosslinking on nanocellulose superabsorbent biodegradability | |
Laila Hossain1  Joanne Tanner1  Ruth M Barajas Ledesma1  Gil Garnier2  | |
[1] Bioresource Processing Research Institute of Australia (BioPRIA), Department of Chemical and Biological Engineering, Monash University, Clayton, Australia;Corresponding author.; | |
关键词: Nanocellulose; Crosslinked; Cellulase; SAP; CO2; Biodegradation; | |
DOI : | |
来源: DOAJ |
【 摘 要 】
Superabsorbent polymer (SAP) is an excellent material to absorb and retain a wide range of fluids inside its structure, making it desirable to engineer advanced applications. However, commercial SAPs are products of the petrochemistry, and their non-biodegradability and end of life are significant environmental issue. In this study, we have developed TEMPO oxidized nanocellulose superabsorbent and quantified the effect of crosslinking on biodegradation in soil under enzymatic (cellulase) assisted conditions. CO2 emission shows that both type of SAP emits similar amount of CO2. Hydrolysis of residual SAPs in soil after specific time intervals shows that chemically crosslinked SAP degrades to a higher extent (∼56%) compared to neat nanocellulose SAP (∼41%). However, without enzyme, their degradation are similar (∼8–12%) and much lower than under enzymatic condition. These results suggest that nanocellulose SAPs: both neat and crosslinked -can easily and rapidly be degraded at home or in the compost of the garden under proper enzymatic assisted conditions.
【 授权许可】
Unknown