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  4. Immobilization of Kluyveromyces marxianus K21 via coaxial electrospinning of PVA and sugarcane bagasse composite for bioethanol production
 
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Immobilization of Kluyveromyces marxianus K21 via coaxial electrospinning of PVA and sugarcane bagasse composite for bioethanol production

Journal
Applied Energy
Journal Volume
356
Date Issued
2024-02-15
Author(s)
Chen, Hung Yueh
Khumsupan, Darin
Patel, Anil Kumar
Kee, Phei Er
Ng, Hui Suan
Hsu, Hsien Yi
Lin, Shin Ping
KUAN-CHEN CHENG  
DOI
10.1016/j.apenergy.2023.122405
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/637883
URL
https://api.elsevier.com/content/abstract/scopus_id/85178354255
Abstract
The study employed coaxial electrospinning technology to design an immobilization system for ethanol production from a sugarcane bagasse (SCB) and polyvinyl alcohol (PVA) composite. Using response surface methodology (RSM), the most suitable pretreatment conditions were 1.84 N H2SO4 at 70.85 °C for 30 min which resulted in 4.73 mg polysaccharide per 1 mL of SCB being extracted, comparing to the theoretical value of 4.51 mg. According to physical characterization analyses, both PVA/SCB and yeast-embedded PVA/SCB composites had superior strength and ductility compared to PVA-only sample. With 36.5 g/L of sugar consumption, a total of 18.01 g/L ethanol was produced after 10 h of cultivation from PVA/SCB/K21 which was higher than that from the freely suspended culture (15.31 g/L at 12 h), resulting in a 15% increase in yield. Furthermore, the PVA/SCB/K21 system was able to maintain constant ethanol production even after 21 days of storage, and could be reused in fermentation for at least 8 cycles. The findings showed that the PVA/SCB/K21 nanothreads is an ideal system for repeated bioethanol production while upcycling sugarcane bagasse biomass waste.
Subjects
Bioethanol | Coaxial electrospinning | Kluyveromyces marxianus K21 | Microbial immobilization | Sugarcane bagasse
SDGs

[SDGs]SDG7

[SDGs]SDG12

Type
journal article

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