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Preparation and properties of adsorption material from corn stalks core when used for enzyme immobilization and the subsequent activities of the adsorbed enzymes.

机译:当用于酶固定化时,由玉米秸秆芯制备的吸附材料及其性质以及随后吸附的酶的活性。

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This study investigates the characteristics of core adsorption material (CAM) prepared from corn stalks core (Core) by glycol solvent treatment (high pressure boiling at 120 degrees C for 30 min using a 50:3 liquor/solid ratio with 2%, w/w sodium hydroxide). The structures of CAM and Core were compared by FT-IR, SEM and XRD. Maltogenic amylase from Aspergillus awamori var., neutral proteins from Source Organism and lipase from Pseudomonas aeruginosa were selected as model enzymes in order to assess their potential applicability for enzyme immobilization. Adsorption characteristics for the different enzymes on CAM were studied and the activity of the immobilized enzymes was evaluated. The results show that CAM has many hydroxyl groups, more flakes, irregular indentations and grooves and a proportionally larger amount of hemi-cellulose than Core, which results in increased numbers of hydroxyl groups in CAM and increased enzyme accessibility into CAM; CAM has the greatest adsorption capacity (9.84+or-0.32 mg/g) for neutral proteins and the best relative activity (total relative activity of 212.6% after being reused three times) after being immobilized, as well as the lowest adsorption capacity (5.15+or-0.51 mg/g) for lipase and the lowest relative activity (total relative activity is 78.23%). The isotherms of maltogenic amylase and neutral proteinase were found to be linear using the Langmuir equation (R2=0.9974 and 0.9966, respectively, p<0.0001) and lipase was found to be linear using the Freundlich equation (R2=0.9331, p<0.0075) in the studied concentration range; CAM could adsorb neutral proteinase and could be used in the simple and inexpensive production of large quantities of pure industrial neutral proteinase and Core can be used to prepare CAM.
机译:这项研究研究了玉米秸秆芯(芯)通过乙二醇溶剂处理(120%的高压沸腾30分钟,使用2:w / w的液/固比为50:3的高压沸腾30分钟)制得的芯吸附材料(CAM)的特性。 w氢氧化钠)。通过FT-IR,SEM和XRD比较了CAM和Core的结构。选择来自泡盛曲霉的产麦芽糖淀粉酶,源生物的中性蛋白和铜绿假单胞菌的脂肪酶作为模型酶,以评估其潜在的酶固定性。研究了不同酶在CAM上的吸附特性,并评估了固定化酶的活性。结果表明,与Core相比,CAM具有许多羟基,更多的薄片,不规则的凹痕和凹槽以及半纤维素,这导致CAM中的羟基数量增加,并且增加了进入CAM的酶的可及性。 CAM对中性蛋白质的吸附能力最大(9.84+或-0.32 mg / g),固定化后的相对活性最佳(重复使用三次后总相对活性为212.6%),吸附能力最低(5.15)脂肪酶为+或-0.51 mg / g,相对活性最低(总相对活性为78.23%)。使用Langmuir方程(R 2 = 0.9974和0.9966,p <0.0001)发现产麦芽糖淀粉酶和中性蛋白酶的等温线是线性的,而使用Freundlich方程发现脂肪酶是线性的(在研究浓度范围内,R 2 = 0.9331,p <0.0075); CAM可以吸附中性蛋白酶,可用于简单,廉价地生产大量的纯工业中性蛋白酶,Core可用于制备CAM。

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