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Enzyme Immobilization Technologies and Industrial Applications

ACS Omega · 2023 · Vol. 8(6) · pp. 5184–5196
Yasmin R. MaghrabyRehan M. El-ShabasyAhmed H. IbrahimHassan Mohamed El-Said Azzazy

Abstract

Enzymes play vital roles in diverse industrial sectors and are essential components of many industrial products. Immobilized enzymes possess higher resistance to environmental changes and can be recovered/recycled easily when compared to the free forms. The primary benefit of immobilization is protecting the enzymes from the harsh environmental conditions (e.g., elevated temperatures, extreme pH values, etc.). The immobilized enzymes can be utilized in various large-scale industries, e.g., medical, food, detergent, textile, and pharmaceutical industries, besides being used in water treatment plants. According to the required application, a suitable enzyme immobilization technique and suitable carrier materials are chosen. Enzyme immobilization techniques involve covalent binding, encapsulation, entrapment, adsorption, etc. This review mainly covers enzyme immobilization by various techniques and their usage in different industrial applications starting from 1992 until 2022. It also focuses on the multiscale operation of immobilized enzymes to maximize yields of certain products. Lastly, the severe consequence of the COVID-19 pandemic on global enzyme production is briefly discussed.

Enzyme Catalysis and ImmobilizationElectrochemical sensors and biosensorsEnzyme-mediated dye degradationImmobilized enzymeEnzymeAdsorptionBiochemical engineeringChemistryEnvironmental sciencePulp and paper industryBiochemistryOrganic chemistryEngineering

Funding

  • American University in Cairo
Citations
689
FWCI
106.03
field-weighted impact
References
113
Percentile
100%
vs. same field & year
Citations per year
References
An overview of immobilized enzyme technologies for dye and phenolic removal from wastewater
Journal of environmental chemical engineering · 2019 · 251 citations
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