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Encapsulation of Multi-Enzymes on Waste Clay Material: Preparation, Characterization and Application for Tapioca Starch Hydrolysis

机译:废粘土材料上多酶的封装:木薯淀粉水解的制备,表征和应用

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Alpha-amylase, glucoamylase and cellulase were immobilized onto calcium alginatewaste clay (alg-WC) beads by using encapsulation technique. The clay was obtained from palm oil mill clay bath processing waste that was collected from FELDA Serting Hilir Palm Oil Mill, Malaysia. The aim of this study is to characterize and investigate the performance of waste clay as a supporting material for the tapioca starch hydrolysis. The encapsulated enzymes were characterized by using analytical equipment such as Fourier Transform Infrared Spectroscopy (FTIR) and Field Emission Scanning Electron Microscopy (FESEM). The FTIR results showed the interaction of functional groups between alginate and waste clay in the alg-WC beads. The alginate beads characterized at peaks 1615 cm~(-1), 1417 cm~(-1) and 1027 cm~(-1), and peaks 1396 cm~(-1), 873 cm~(-1) and 712 cm~(-1) characterized the waste clay. The FESEM analysis also revealed that the different surface morphology of alginate beads and alg-WC beads. It also showed that the enzymes were successfully encapsulated within the alg-WC beads. The activity of the immobilized enzymes was studied at different clay concentrations. The highest immobilization yield was obtained at 2% (w/v) of clay concentration and the highest enzyme loading was 98.29%. The immobilized enzymes also retained 33% of its activity after seven usage cycle with 1 hour of each reaction time.
机译:通过使用封装技术将α-淀粉酶,葡糖淀粉酶和纤维素酶固定在藻酸钙上粘土(ALG-WC)珠子上。粘土由马来西亚海尔达塞尔·棕榈油厂收集的棕榈油厂粘土浴加工废物中获得。本研究的目的是表征和研究废物粘土作为木薯淀粉水解的支撑材料的性能。通过使用傅里叶变换红外光谱(FTIR)和现场发射扫描电子显微镜(FESEM)的分析设备,表征包封酶。 FTIR结果表明,在ALG-WC珠粒中藻酸盐和废粘土之间的官能团的相互作用。藻酸盐珠,其特征在峰1615cm〜(-1),1417cm〜(-1)和1027cm〜(-1),峰1396cm〜(-1),873cm〜(-1)和712cm 〜(-1)表征废粘土。 FeSEM分析还显示出海藻酸盐珠和ALG-WC珠子的不同表面形态。它还表明,酶成功包封在ALG-WC珠内。在不同的粘土浓度下研究了固定化酶的活性。在粘土浓度的2%(w / v)中获得最高的固定产率,最高的酶负载量为98.29%。固定化酶在七个使用循环后,每次反应时间为1小时,还保留了33%的活性。

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