Enzyme reaction engineering for the conversion of emulsified di-rhamnolipid by free and immobilized Naringinase

Process optimization was conducted for the conversion of the aggragate-building substrate di-rhamnolipid to mono-rhamnolipid by Alpha-L-rhamnosidase from Penicillium decumbens and resulting in: (I) selection of optimal reaction conditions for enzyme activity and stability, (II) modeling of the react...

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Main Author: Magario, Ivana (auth)
Format: Book Chapter
Published: KIT Scientific Publishing 2009
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Online Access:Get Fullteks
DOAB: description of the publication
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020 |a KSP/1000010067 
020 |a 9783866443297 
024 7 |a 10.5445/KSP/1000010067  |c doi 
041 0 |a English 
042 |a dc 
100 1 |a Magario, Ivana  |4 auth 
245 1 0 |a Enzyme reaction engineering for the conversion of emulsified di-rhamnolipid by free and immobilized Naringinase 
260 |b KIT Scientific Publishing  |c 2009 
300 |a 1 electronic resource (131 p. p.) 
506 0 |a Open Access  |2 star  |f Unrestricted online access 
520 |a Process optimization was conducted for the conversion of the aggragate-building substrate di-rhamnolipid to mono-rhamnolipid by Alpha-L-rhamnosidase from Penicillium decumbens and resulting in: (I) selection of optimal reaction conditions for enzyme activity and stability, (II) modeling of the reaction time course assuming mixed aggregates as a second phase, and (III) high mass diffusion resistances were completely overcome by the use of non-porous magnetic enzyme micro-carriers. 
540 |a Creative Commons  |f https://creativecommons.org/licenses/by-nc-nd/4.0/  |2 cc  |4 https://creativecommons.org/licenses/by-nc-nd/4.0/ 
546 |a English 
653 |a mixed aggregates 
653 |a aggregate-building substrate 
653 |a Naringinase 
653 |a magnetic microbeads 
653 |a rhamnolipids 
856 4 0 |a www.oapen.org  |u https://www.ksp.kit.edu/9783866443297  |7 0  |z Get Fullteks 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/46649  |7 0  |z DOAB: description of the publication