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Enzymes encapsulation within calcium alginate-clay beads: Characterization and application for cassava slurry saccharification

机译:酶中的酶封装在藻酸钙 - 粘土珠粒中:木薯浆料糖化的表征及应用

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Multi-enzymes (alpha-amylase, glucoamylase and cellulase) were successfully encapsulated in calcium alginate-clay beads to hydrolyze cassava roots for glucose production. Under the optimal conditions (2% clay solution and 0.2 M CaCl2), the loading efficiency and the immobilization yield of enzymes were calculated to be 97.07% and 52.14%, respectively. The calcium-alginate-clay beads have been analyzed using Fourier Transform Infrared Spectroscopy (FTIR), Field Emission Scanning Electron Microscopy (FESEM) and Energy Dispersive X-Ray (EDX). FTIR results showed that asymmetric and symmetric COO~- and OH~- group shifted to 1621, 1419 and 3324 cm~(-1) and proved strong interaction between alginate and clay of the beads. Observation under FESEM showed that the beads have a rough surface and the enzymes were successfully encapsulated in the beads. The presence of the clay elements in the beads was confirmed by EDX analysis where the beads consist of 13.97% C, 43.69% O, 28.96% Ca, 6.46% Al and 6.91% Si. The beads were later used for the saccharification of cassava slurry into glucose. Results showed that the process was successful and the encapsulated enzymes in calcium alginate-clay beads have enhanced the enzymes reusability in the process compared to pure alginate beads where it retained 51.77% of its activity after seven hydrolysis cycles.
机译:成功将多酶(α-淀粉酶,葡糖淀粉酶和纤维素酶)成功包封在藻酸钙 - 粘土珠中,以水解木薯根的葡萄糖生产。在最佳条件下(2%粘土溶液和0.2M CaCl 2),将酶的加载效率和固定产率分别计算为97.07%和52.14%。已经使用傅里叶变换红外光谱(FTIR),场发射扫描电子显微镜(FeSEM)和能量分散X射线(EDX)分析了钙藻酸盐粘土珠。 FTIR结果表明,不对称和对称的CoO〜 - 和OH〜 - 组移位至1621,1419和3324cm〜(-1),并证明了藻酸盐和珠子的粘土之间的强相互作用。在FESEM下观察表明珠子具有粗糙表面,并且在珠粒中成功包封酶。通过EDX分析证实珠粒中粘土元素的存在,其中珠粒由13.97%C,43.69%,28.96%Ca,6.46%Al和6.91%Si组成。珠子后来用于木薯浆料糖化成葡萄糖的糖化。结果表明,与纯海藻酸盐珠相比,该方法成功,藻酸钙 - 粘土珠粒中的包封酶在该过程中增强了该方法的酶可重用性,其中在七个水解循环后保留了51.77%的活性。

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