Internal mass transfer effect on biodegradation of phenol by Ca-alginate immobilized Ralstonia eutropha [An article from: Journal of Hazardous Materials] Buy on Amazon
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Internal mass transfer effect on biodegradation of phenol by Ca-alginate immobilized Ralstonia eutropha [An article from: Journal of Hazardous Materials]

Publisher Elsevier
8.95 USD

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Book Details
Publisher Elsevier
ISBN / ASIN B000RR7O2S
ISBN-13 978B000RR7O25
Availability Available for download now
Sales Rank #99,999,999
Marketplace United States 🇺🇸
Description
This digital document is a journal article from Journal of Hazardous Materials, published by Elsevier in . The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.

Description:
Phenol biodegradation by free and Ca-alginate immobilized Ralstonia eutropha was performed in batch system. Optimum initial pH and temperature were determined as 7 and 30^oC, respectively for free cells, while a wide pH and temperature range were obtained for immobilized cells. Phenol had a strong inhibitory effect on the microbial growth and Haldane model was used to describe the substrate inhibition. Model parameters were determined as @m"m"a"x=0.89h^-^1, K"S=55.11mgdm^-^3 and K"I=257.94mgdm^-^3 by non-linear regression analysis. The effective diffusion coefficient of phenol in immobilized particles was calculated. For this purpose, using biodegradation rates experimental effectiveness factors were determined for different sized immobilized particles. The Thiele modulus was evaluated from experimental effectiveness factors. Then the average effective diffusion coefficient was calculated as 1.21x10^-^7cm^2s^-^1. These results showed that intraparticle diffusion resistance was important for this system and could not be ignored.
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