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Continuous Starch Saccharification by Glucoamylase Through In-Line Static Mixer Reactor Following Liquefaction

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dc.contributor.author Saethawat Chamsart
dc.contributor.author Sirichom Thungkao
dc.contributor.author Duanhathai Chanon
dc.contributor.author Yoawapha Waiprib
dc.contributor.other Faculty of Science
dc.date.accessioned 2019-03-25T09:01:13Z
dc.date.available 2019-03-25T09:01:13Z
dc.date.issued 2549
dc.identifier.uri http://dspace.lib.buu.ac.th/xmlui/handle/1234567890/1058
dc.description.abstract Starch saccharification by glucoamylase following liquefaction, has completely been done efficiently within 52 s by hydrolysis of dextrin through an In-Line Static Mixer Reactor (ISMR)ใ Saccharification through ISMR took at least 23 h shorter time when compared to a conventional saccharification method using a stirred tank reactor. Starch at concentrations of 25% and 32% w/v was hydrolysed by α-amylase through 12.6 m ISMR at a flow rate of 15 mL/min to generate dextrin solutions for further saccharification. Dextrin solutions were saccharified by glucoamylase at 65 oC at flow rates of 20 mL/min and 40 mL/min and different tube lengths up to 12.6 m. The saccharification at a flow rate of 20 mL/min with the longest tube of 12.6 m gave the highest sugar concentration and Dextrose Equivalent (DE) value because this condition possessed the longest reaction residence time of 52.06 min. The reducing sugar concentrations of 182.77 mg/mL with an DE value of 84.36 and 299.01 mg/mL with an DE of 98.06 were obtained from saccharification of dextrin solutions from the initial starch at concentration of 25% and 32% w/v, respectively. The viscosity of the sugar mixtures during saccharification reduced as a function of tube length and of hydrolysis time. This ISMR was essentially shown an excellent performance with scaleable potential for the the commercial production of sugar from sugar dextrin saccharification. en
dc.description.sponsorship ทุนวิจัยสำนักงานสภาวิจัยแห่งชาติ (วช.) ประจำปีงบประมาณ 2547-2549 en
dc.language.iso eng th_TH
dc.publisher Faculty of Science th_TH
dc.subject Cassava starch th_TH
dc.subject Continuous starch hydrolysis th_TH
dc.subject Glucoamylase th_TH
dc.subject Saccharification th_TH
dc.subject Static mixer th_TH
dc.subject สาขาวิทยาศาสตร์เคมีและเภสัช th_TH
dc.title Continuous Starch Saccharification by Glucoamylase Through In-Line Static Mixer Reactor Following Liquefaction en
dc.type Research
dc.year 2549


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