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Accelerated bioethanol fermentation by using a novel yeast immobilization technique: Microtube array membrane

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    • 바이오플라스틱
      1. 플라스틱
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      1. 용매
      2. 화학제품
      3. 연료
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      1. 식품첨가제
논문

Accelerated bioethanol fermentation by using a novel yeast immobilization technique: Microtube array membrane

학술지

Process biochemistry

저자명

Chen, C.C.; Wu, C.H.; Wu, J.J.; Chiu, C.C.; Wong, C.H.; Tsai, M.L.; Lin, H.T.V.

초록

Cell immobilization is a way to isolate or localize intact cells in a certain space and maintain their catalytic activity. Immobilized cells can effectively reduce the negative effects of inhibitors and the processing cost of inoculum preparation for continuous or fed-batch fermentation of microorganisms. In this study, a novel yeast immobilization technique using renewable poly-l-lactic acid (PLLA) microtube array membrane (MTAM) was thoroughly evaluated for bioethanol fermentation. PLLA-MTAM was shown to be stable in 15% (v/v) ethanol solution during shaking cultivation. A yeast encapsulation efficiency of 67-70% was obtained, and the yeasts in MTAMs with greater porosity showed greater bioethanol productivity. The MTAM-immobilized Kluyveromyces marxianus, prepared using in situ and siphon methods, were evaluated using 5% (w/v) glucose fermentation. Improved glucose consumption and bioethanol production were observed in batch bioethanol fermentation. In 7 cycles during repeated-batch fermentation, the immobilized yeasts prepared using the in situ method showed a maximum C<SUB>EtOH</SUB> of 24.23g/L, maximum Y<SUB>P/S</SUB> of 0.48g/g, and r P<SUB>EtOH</SUB> of 2.69g/L h. Our data indicated that the PLLA-MTAM immobilized yeasts significantly enhanced bioethanol productivity and was a novel, promising technology for bioethanol fermentation.

발행연도

2015

발행기관

Elsevier Applied Science

ISSN

1359-5113

50

10

페이지

pp.1509-1515

주제어

Repeated-batch; Fermentation; Bioethanol; Microtube array membrane (MTAM); Kluyveromyces marxianus

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1 2023-12-11

논문; 2015-10-01

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