2021
DOI: 10.1016/j.cattod.2020.04.048
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Enzymatic monolithic reactors for micropollutants degradation

Abstract: Silica monoliths with uniform macro-/mesoporous structures (20 µm and 20 nm macro-and mesopores diameters, respectively), high porosity (83%) and high surface area (370 m 2 g -1 ) were prepared. The monoliths were grafted with amino groups (0.9 mmol NH 2 g -1 ) and used to immobilize laccase from Trametes versicolor by covalent grafting with glutaraldehyde (GLU)(1.0 mmol GLU g -1 ) leading to an ABTS activity of 20 U g -1 . Immobilization yield was 80%, based on the difference of initial and final activity of … Show more

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Cited by 18 publications
(18 citation statements)
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“…Then, the concentration polarization coefficient (CPC) at the feed as well as osmotic solution side is calculated from Eqs. (19) and (20) [36]: (15…”
Section: Concentration Polarizationmentioning
confidence: 99%
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“…Then, the concentration polarization coefficient (CPC) at the feed as well as osmotic solution side is calculated from Eqs. (19) and (20) [36]: (15…”
Section: Concentration Polarizationmentioning
confidence: 99%
“…The temperature polarization would also contribute to the reduction of driving force which ultimately reduces the transmembrane flux. The decline in the driving force due to temperature polarization can be estimated by the (20…”
Section: Temperature Polarizationmentioning
confidence: 99%
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“…Only recently, Ahmad et al . have used laccase immobilized on silica monoliths for degradation of micropollutants in water 14,15 . Increased activity of the immobilized enzyme and high operational and storage stability were achieved.…”
Section: Introductionmentioning
confidence: 99%
“…Owing to the extensively studied surface chemistry and versatility in synthesis steps, HSM supports can be functionalized via in situ as well as post-synthesis treatment with a variety of moieties and applied in numerous catalytic applications. Recent studies show successful implementation of silica monolithic catalysts as flow reactors in various chemical and biochemical transformations (El Kadib et al, 2009;Sachse et al, 2010;Linares et al, 2012;Sachse et al, 2012;Sachse et al, 2013;Szymańska et al, 2013;Hakat et al, 2016;Ciemięga et al, 2017;Haas et al, 2017;Liguori et al, 2017;Pélisson et al, 2017;Mrowiec-Białoń et al, 2018;Russell et al, 2020;Yamada et al, 2020;Ahmad et al, 2021;Turke et al, 2021).…”
Section: Introductionmentioning
confidence: 99%