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Membrane-based purification of optically pure D-lactic acid from fermentation broth to poly(D-lactide) polymer

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    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 기타
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      1. 계면활성제⁄증점제
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      2. 식품첨가제
논문

Membrane-based purification of optically pure D-lactic acid from fermentation broth to poly(D-lactide) polymer

학술지

Journal of membrane science

저자명

Mai, Trang Khanh; Rodtong, Sureelak; Baimark, Yodthong; Rarey, Jü rgen; Boontawan, Apichat

초록

<P><B>Abstract</B></P> <P>Fermentation of optically pure D-lactic acid was carried out using cassava starch as the main substrate. For downstream processing, membrane-based processes consisted of microfiltration, nanofiltration, and pervaporation-assisted esterification were successfully employed for the production of high purity D-lactic acid. The spiral wound microfiltration and nanofiltration were performed as high potential pretreatment steps for removal of bacterial cell, protein, and color compounds. The pervaporation dehydration of esterification reaction between D-lactic acid and ethanol was investigated in order to enhance the conversion to ethyl lactate. Up to 95% of water was separated out of the system resulting in a lactic acid conversion yield of 0.93. Mathematical modeling of each membrane system was investigated. In microfiltration, the major cause of membrane fouling was determined by breaking down resistances by a cleaning method. For nanofiltration, the reflection coefficient (<I>&sigma;</I>) and the solute permeability (P<SUB>s</SUB>) were obtained using the best-fit method, and allowed the prediction of lactate retention and permeate flux. In the pervaporation-assisted esterification, the kinetic of reaction, as well as separation factor, pre-exponential factor (Q<SUB>memb</SUB>), and the activation energy (E<SUB>perm</SUB>) of pervaporation were modelled using NRTL to model the liquid phase non-idealities. The results with 8.77% error were obtained in comparison to experimental data. High purity D-lactic acid was obtained after distillation and hydrolysis with deionized water. Finally, direct polycondensation followed by ring-opening polymerization was successfully employed to synthesize a high purity poly(D-lactide) polymer.</P> <P><B>Highlights</B></P> <P> <UL> <LI> Fermentation of optically pure D-lactic acid using <I>Lactobacillus</I> sp. SUTW73. </LI> <LI> Cross-flow microfiltration was employed for bacterial cell removal. </LI> <LI> Nanofiltration and pervaporation-assisted esterification were modelled. </LI> <LI> High purity D-lactic acid was obtained after distillation and hydrolysis. </LI> <LI> Poly(D-lactide) was produced by ring-opening polymerization of D-lactide monomer. </LI> </UL> </P> <P><B>Graphical abstract</B></P> <P>[DISPLAY OMISSION]</P>

발행연도

2018

발행기관

Elsevier

ISSN

0376-7388

ISSN

1873-3123

551

페이지

pp.180-190

주제어

D-Lactic acid; Microfiltration; Nanofiltration; Pervaporation-assisted esterification; Poly(D-lactide)

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논문; 2018-04-01

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