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Response surface optimization of glucose production from liquid pineapple waste using immobilized invertase in PVA-alginate-sulfate beads

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논문

Response surface optimization of glucose production from liquid pineapple waste using immobilized invertase in PVA-alginate-sulfate beads

학술지

Separation and purification technology

저자명

Seker, D.C.; Mohd Zain, N.A.

초록

Pineapple waste is known as a byproduct of the pineapple processing industry and typically consists of residual pulp, peels and skin. In this study, the conversion of sucrose to glucose was performed with the help of Baker's yeast invertase. Response Surface Methodology (RSM) comprising Box-Behnken design was successfully applied in this study as a tool to evaluate the interactive effects and to obtain the optimum operating conditions for the enzymatic hydrolysis. Four parameters were varied: pH (4-6), temperature (40-60<SUP>o</SUP>C), agitation rate (100-200rpm) and amount of immobilized beads (3-6g). Results revealed that the optimum operating conditions derived via RSM were: pH 4.74, temperature 50.11<SUP>o</SUP>C, agitation rate of 147.68rpm and amount of immobilized beads used were 4.45g. The experimental yield of glucose was found to be 111.42g/L (850.5%) and sucrose 25.70g/L (32.3%) under the optimum conditions, which correlated well with the maximum predicted value of glucose and sucrose 110.13g/L (840.7%) and 25.93g/L (32.6%) respectively. Hydrolysis of the liquid pineapple waste showed that 95% of sucrose content in the waste was hydrolyzed to glucose after 3h of hydrolysis and the overall glucose generated from the hydrolysis was approximately 1131% of its original content.

발행연도

2014

발행기관

Elsevier Science B.V

ISSN

1383-5866

133

페이지

pp.48-54

주제어

Liquid pineapple waste; Invertase; Immobilization; PVA-alginate-sulfate beads; Glucose production; Box-Behnken design

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1 2023-12-11
2 2023-12-11

논문; 2014-12-31

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