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

机译:使用固定的PVA-海藻酸钠-硫酸盐微珠中的转化酶优化液体菠萝废料中的葡萄糖生产

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摘要

Pineapple (Ananas cosmosus) waste is known as a byproduct of the pineapple processing industry and typically consists of residual pulp, peels and skin. The liquid pineapple waste used in this study consists of sucrose (76.8%), glucose (12.6%) and fructose (10.5%). Through an enzymatic hydrolysis process, the sucrose in the waste can be converted into glucose and fructose. In this study, the conversion of sucrose to glucose was performed with the help of invertase enzyme. PVA-alginate-sulfate beads were used as an entrapment matrix to immobilize invertase using entrapment-crosslinking method. 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 which was pH (4-6), temperature (40-60oC), agitation rate (100-200 rpm) and amount of immobilized beads (3-6 g). Results revealed that the highest sugar content in the liquid pineapple waste was sucrose which was 79.6 g/L. While for the cations content, potassium had the highest composition which was 2195.0 mg/L whilst phosphorus was the highest anion content with the value of 79.23 mg/L. Meanwhile, the pH of the pineapple waste was 4.0. Hydrolysis of the liquid pineapple waste showed that 95% of sucrose content in the waste was hydrolyzed to glucose after 3 hours of hydrolysis and the overall glucose generated from the hydrolysis was approximately 1131% of its original content. The optimum operating conditions derived via RSM were: pH 4.74, temperature 50.11oC, agitation rate of 147.68 rpm and amount of immobilized beads used were 4.45 g. The experimental yield of glucose was found to be 111.42 g/L (850.5%) and sucrose 25.70 g/L (32.3%) under optimum conditions, which correlated well with the maximum predicted value of glucose and sucrose 110.13 g/L (840.7%) and 25.93 g/L (32.6%) respectively.
机译:菠萝(Ananas cosmosus)废物是菠萝加工业的副产品,通常由残留的果肉,果皮和皮肤组成。本研究中使用的液态菠萝废料包括蔗糖(76.8%),葡萄糖(12.6%)和果糖(10.5%)。通过酶促水解过程,废物中的蔗糖可以转化为葡萄糖和果糖。在这项研究中,蔗糖向葡萄糖的转化是借助转化酶进行的。使用PVA-藻酸盐-硫酸盐珠粒作为包埋基质,通过包埋-交联方法固定转化酶。包含Box-Behnken设计的RSM在本研究中成功地用作评估相互作用效果并获得酶水解最佳操作条件的工具。改变四个参数,分别是pH(4-6),温度(40-60oC),搅拌速率(100-200 rpm)和固定化珠粒的量(3-6 g)。结果显示,液体菠萝废料中的最高糖含量是蔗糖,为79.6 g / L。阳离子中钾的组成最高,为2195.0 mg / L,磷最高,含量为79.23 mg / L。同时,菠萝废料的pH为4.0。液体菠萝废物的水解显示,水解3小时后,废物中95%的蔗糖含量被水解为葡萄糖,水解产生的总葡萄糖约为其原始含量的1131%。通过RSM得出的最佳操作条件为:pH 4.74,温度50.11oC,搅拌速度147.68 rpm和固定珠的使用量为4.45 g。在最佳条件下,葡萄糖的实验产量为111.42 g / L(850.5%),蔗糖为25.70 g / L(32.3%),与葡萄糖和蔗糖的最大预测值110.13 g / L(840.7%)密切相关)和25.93 g / L(32.6%)。

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    Chandera Seker Darshini;

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  • 年度 2013
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