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Lipase Immobilization in Mesoporous Silica Nanoparticles for Biofuel Production

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CATALYSTS
卷 11, 期 5, 页码 -

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MDPI
DOI: 10.3390/catal11050629

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lipase; enzyme immobilization; mesoporous silica

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Lipases are essential enzymes involved in the hydrolysis of triacylglycerol into fatty acids and have versatile applications, including biodiesel production. To maintain their stability and activity, lipases need to be immobilized on insoluble supports, with mesoporous silica nanoparticles being a promising option due to their thermal and mechanical stability, controlled textural characteristics, and surface functionalization capabilities.
Lipases are ubiquitous enzymes whose physiological role is the hydrolysis of triacylglycerol into fatty acids. They are the most studied and industrially interesting enzymes, thanks to their versatility to promote a plethora of reactions on a wide range of substrates. In fact, depending on the reaction conditions, they can also catalyze synthesis reactions, such as esterification, acidolysis and transesterification. The latter is particularly important for biodiesel production. Biodiesel can be produced from animal fats or vegetable oils and is considered as a biodegradable, non-toxic and renewable energy source. The use of lipases as industrial catalysts is subordinated to their immobilization on insoluble supports, to allow multiple uses and use in continuous processes, but also to stabilize the enzyme, intrinsically prone to denaturation with consequent loss of activity. Among the materials that can be used for lipase immobilization, mesoporous silica nanoparticles represent a good choice due to the combination of thermal and mechanical stability with controlled textural characteristics. Moreover, the presence of abundant surface hydroxyl groups allows for easy chemical surface functionalization. This latter aspect has the main importance since lipases have a high affinity with hydrophobic supports. The objective of this work is to provide an overview of the recent progress of lipase immobilization in mesoporous silica nanoparticles with a focus on biodiesel production.

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