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Abstract
Food waste biorefinery is a sustainable approach to producing green chemicals, however the essential substrate-related factors hindering the efficacy of enzymatic hydrolysis have never been clarified. This study explored the key rate-limiting parameters and mechanisms of carbohydrate-rich food after different cooking and storing methods, i.e., impacts of compositions, structural diversities, and hornification. Shake-flask enzymatic kinetics determined the optimal dosages (0.5 wt% glucoamylase, 3 wt% cellulase) for food waste hydrolysis. First order kinetics and simulation results determined that reaction coefficient (K) of cooked starchy food was ∼ 3.63 h−1 (92 % amylum digestibility) within 2 h, while those for cooked cellulosic vegetables were 0.25–0.5 h−1 after 12 h of hydrolysis. Drying and frying reduced ∼ 71–89 % hydrolysis rates for rice, while hydrothermal pretreatment increased the hydrolysis rate by 82 % on vegetable wastes. This study provided insights into advanced control strategy and reduced the operational costs by optimized enzyme doses for food waste valorization. © 2023 Elsevier Ltd.
| Original language | English |
|---|---|
| Article number | 129858 |
| Journal | Bioresource Technology |
| Volume | 390 |
| Online published | 18 Oct 2023 |
| DOIs | |
| Publication status | Published - Dec 2023 |
Research Keywords
- Food waste variability
- Food waste pretreatment
- Enzymatic hydrolysis
- Substrate enzymatic digestibility (SED)
- Enzyme kinetics
RGC Funding Information
- RGC-funded
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Dive into the research topics of 'Substrate-related factors and kinetic studies of Carbohydrate-Rich food wastes on enzymatic saccharification'. Together they form a unique fingerprint.Projects
- 2 Active
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ITF-RTH: GSP114 - Research Talent Hub
LEE, D.-J. (Principal Investigator / Project Coordinator)
1/11/22 → …
Project: Research
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CRF: Reducing Transmission of Novel Coronavirus and Other Infectious Diseases using Food Waste-derived Medical Textiles via Electrospinning for Healthcare Apparel and Personal Protective Equipment
LIN, S. K. C. (Principal Investigator / Project Coordinator), CHAN, C. K. (Co-Principal Investigator), CHAO, C. Y. H. (Co-Principal Investigator), CHOPRA, S. S. (Co-Principal Investigator), DAOUD, W. (Co-Principal Investigator), LEU, S. Y. (Co-Principal Investigator), NING, Z. (Co-Principal Investigator), TSO, C. Y. (Co-Principal Investigator) & Tang, S. (Collaborator)
1/06/21 → …
Project: Research
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