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- W2942603180 abstract "Mesoporous size siliceous-based materials have been associated with immobilisationof free glucoamylase and soluble starches hydrolysis. As ethanol and other chemicals can beproduced from insoluble feed such as tapioca, understanding of glucoamylase immobilised onmesostructured cellular foam (MCF) silica to hydrolyse the starch is required. To get theknowledge on this process for development of a large-scale operation, free glucoamylaseSQzyme AGP was immobilised on MCF silica (9.2T-3D) by direct adsorption and used theproduct to hydrolyse tapioca. The free enzyme was able to be immobilised onto the carrier withthe efficiencies of 39.20-84.84% where the operational factors of temperature, agitation speedand pH affected the immobilisation process highly. During the enzymatic hydrolysis, effects oftemperature and agitation speed were high. The dextrose equivalent (DE) values of 1.21-81.70%were obtained. The optimum temperature and agitation speed were 70C and 140 rpm. Otherfactors such as buffer pH, starch concentration and enzyme unit activity showed low effects onthe hydrolysis process. Excellent DE were obtained at the conditions of pH, tapiocaconcentration and enzyme unit activity of 4.6, 3 mg mL-1 and 2351 U, respectively." @default.
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- W2942603180 date "2019-05-03" @default.
- W2942603180 modified "2023-09-26" @default.
- W2942603180 title "Capability of immobilised glucoamylase on mesostructured cellular foam silica to hydrolyse tapioca starch" @default.
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- W2942603180 doi "https://doi.org/10.1088/1757-899x/509/1/012058" @default.
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