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Integrated biocatalytic process for trehalose production and separation from rice hydrolysate using a bioreactor system

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논문

Integrated biocatalytic process for trehalose production and separation from rice hydrolysate using a bioreactor system

학술지

Food chemistry

저자명

Chang, Shu Wei; Liu, Pei Ting; Hsu, Ling Chih; Chen, Chin Shuh; Shaw, Jei Fu

초록

<P><B>Highlights</B></P><P>&#x025BA; Our recombinant trehalose synthase (PTTS) was successfully produced in bioreactor system. &#x025BA; Integrated enzymatic process to produce valuable products from rice hydrolysate in one step. &#x025BA; Three bio-treatments were developed to simplify the separation and purification of trehalose. &#x025BA; An efficient purification procedure for high purity trehalose production.</P> <P><B>Abstract</B></P><P>Rice starch can be hydrolyzed into maltose for trehalose bioconversion by enzymatic methods. In this study, we have successfully established an efficient production system for our recombinant PTTS in large scale. Three bio-treatments were developed to simplify the separation and purification of trehalose from complex rice saccharified liquid. The trehalose conversion rate of 64.63&plusmn;4.05% at 30&deg;C can be reached using rice hydrolysate as the substrate in a 5l fermentor system. By 1% of raw material koji fermentation, the highest concentration of bioethanol (3.61&plusmn;0.07%) was obtained at 30&deg;C for 36h. After 12h of reaction time, the gluconic acid (24.47&plusmn;0.33mM) was successfully produced by glucose oxidase (40U/g rice) using residual glucose as a substrate. After the batch/continuous ionic exchange process, the trehalose can be successfully separated, crystallized and identified as 92.6&plusmn;0.02% purity and 94.2% of the recovery yield, respectively.</P>

발행연도

2012

ISSN

0308-8146

134

4

페이지

pp.1745-1753

주제어

Bio-treatment; Bioethanol; Bioreactor; Enzyme; Gluconic acid; Picrophilus torridus; Rice; Trehalose

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논문; 2012-10-01

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