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Immobilization of lipase in silica gel from rice husk ash and its activity assay to hydrolyze palm oil

机译:从水稻壳灰硅胶中固定脂肪酶及其活性测定水解棕榈油

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A free lipase is one of the biocatalysts used for industrial applications, especially to catalyze the hydrolysis of palm oil. However, it is unstable in an extreme condition so it is easy to denature. Immobilization of lipase improve the enzyme's stability since the cage of the immobilization matrix around the lipase can minimalize denaturation. Silica gel is the most chosen matrix because of its high thermal stability and inertness. Lipase was immobilized in silica gel extracted from rice husk ash. Silica gel was prepared in a sodium silicate solution. Sol-gel process occurred when phosphoric acid was added into the sodium silicate solution until it reached a pH of 7. The immobilization process was initiated by reacting lipase in Phosphate Buffer Solution (PBS) added to the sol solution to produce hydrogel. Hydrogel was got into the dry process to form xerogel. The activity assay was conducted in the hydrolysis reaction by titrimetric method. The immobilized lipase resulted had an immobilization percentage of 67.71% and reusability for 6 cycles.
机译:自由脂肪酶是用于工业应用的生物催化剂之一,特别是催化棕榈油的水解。然而,它在极端状态下是不稳定的,因此它很容易变态。固定脂肪酶改善酶的稳定性,因为固定基质周围的脂肪酶周围的笼子可以极小化变性。由于其高热稳定性和惰性,硅胶是最备选的基质。将脂肪酶固定在从稻壳灰分中提取的硅胶中。在硅酸钠溶液中制备硅胶。当将磷酸加入到硅酸钠溶液中直至其达到7的pH中时,发生溶胶 - 凝胶方法。通过在溶胶溶液中加入磷酸盐缓冲溶液(PBS)中的脂肪酶来引发固定过程以产生水凝胶。水凝胶进入干法以形成Xerogel。通过滴定法在水解反应中进行活性测定。固定化的脂肪酶导致固定化百分比为67.71%和6个循环的可重用性。

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