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Effect of enzymatic pretreatment on the synthesis and properties of phosphorylated amphoteric starch

机译:酶促预处理对磷酸化两性淀粉合成及性能的影响

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Phosphorylated amphoteric starch was prepared from enzyme-modified tapioca starch in the aqueous alcoholic-alkaline medium. Optimization of the reaction parameters for maximum degree of substitution (DS) of phosphorylated amphoteric starch were carried out using response surface methodology (RSM). Optimum modification conditions were shown as following: NaOH concentration 3.71 g/100g starch (dry basis), CHPTAC concentration 6.34 mL/100g starch (dry basis), STP concentration 6.13 g/100g starch (dry basis), water/ethanol ratio 1.16, reaction temperature 50 °C, reaction time 3 h, and the starch concentration 30%. Under the optimal condition, the maximum anion degree of substitution (DS_A) and cation degree of substitution (DS_C) were 0.0274 and 0.0408, respectively. Compared with the DS of the amphoteric starch prepared from native tapioca starch (NPTAS), the DS of the amphoteric starch from enzyme-pretreated tapioca starch (EPTAS) was higher at the same reaction conditions, suggesting enzymatic pretreatment improved the reaction processes significantly. Scanning electron microscopy and X-ray diffraction data showed that the granular shape and crystalline structure of EPTAS did not change. Compared with NPTAS, the pasting stability of EPTAS with the same DS was also significantly improved.
机译:磷酸化的两性淀粉是在含水酒精碱性介质中由酶改性的木薯淀粉制得的。使用响应面方法(RSM)对磷酸化两性淀粉的最大取代度(DS)进行了反应参数的优化。最佳改性条件如下:NaOH浓度3.71 g / 100g淀粉(干基),CHPTAC浓度6.34 mL / 100g淀粉(干基),STP浓度6.13 g / 100g淀粉(干基),水/乙醇比1.16,反应温度为50℃,反应时间为3小时,淀粉浓度为30%。在最佳条件下,最大阴离子取代度(DS_A)和阳离子取代度(DS_C)分别为0.0274和0.0408。与天然木薯淀粉(NPTAS)制备的两性淀粉的DS相比,酶预处理的木薯淀粉(EPTAS)的两性淀粉的DS在相同反应条件下更高,表明酶预处理显着改善了反应过程。扫描电子显微镜和X射线衍射数据表明,EPTAS的颗粒形状和晶体结构没有改变。与NPTAS相比,具有相同DS的EPTAS的粘贴稳定性也得到了显着提高。

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