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dc.contributor.authorTerefe, Netsanet Shiferaw
dc.contributor.authorArimi, Joshua Mbaabu
dc.contributor.authorLoey, Ann Van
dc.contributor.authorHendrickx, Marc
dc.date.accessioned2021-01-20T08:30:39Z
dc.date.available2021-01-20T08:30:39Z
dc.date.issued2004
dc.identifier.citationTerefe, N., Arimi, J., van Loey, A., & Hendrickx, M. (2004). Kinetics of the Alkaline Phosphatase Catalyzed Hydrolysis of Disodium p-Nitrophenyl Phosphate: Effects of Carbohydrate Additives, Low Temperature, and Freezing. Biotechnology Progress, 20, 1467–1478. https://doi.org/10.1021/bp0498894en_US
dc.identifier.urihttp://repository.must.ac.ke/handle/123456789/267
dc.description.abstractThe alkaline phosphatase catalyzed hydrolysis of disodium-p-nitrophenyl phosphate was studied in four model systems comprising sucrose, maltodextrin, carboxymethylcellulose (CMC), and CMC-lactose in a temperature range of -28 to 20 degrees C. In the maltodextrin and CMC-lactose model systems, the reaction rate decreased to a very low value as the glass transition temperature was approached. In the CMC and CMC-lactose systems with low initial solute concentration, as a consequence of freeze-concentration, a rate maximum around the initial freezing temperature was observed. The Arrhenius equation described the temperature dependence of the reaction rate both in the liquid and the glassy states in all systems studied, while a slightly curved Arrhenius plot was observed in the "rubbery" state of the CMC and CMC-lactose systems. The WLF equation with system-dependent coefficients described the kinetics in the rubbery state of all the model systems except sucrose, excluding the short temperature range where reaction rate enhancement with decreasing temperature was observed.en_US
dc.language.isoenen_US
dc.publisherPubMeden_US
dc.titleKinetics of the Alkaline Phosphatase Catalyzed Hydrolysis of Disodium p-Nitrophenyl Phosphate: Effects of Carbohydrate Additives, Low Temperature, and Freezingen_US
dc.typeArticleen_US


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