Effect of Carbonic Anhydrase on Caco3 Crystallization in Alkaline Solution

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Date

2016

Authors

Kılıç, Sevgi
Özdemir, Ekrem

Journal Title

Journal ISSN

Volume Title

Publisher

American Chemical Society

Open Access Color

BRONZE

Green Open Access

Yes

OpenAIRE Downloads

8

OpenAIRE Views

6

Publicly Funded

No
Impulse
Average
Influence
Average
Popularity
Top 10%

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Abstract

The effect of bovine carbonic anhydrase (CA) on calcium carbonate (CaCO3) crystallization was investigated. A new method was developed to estimate the biocatalytic activity of CA in alkaline solution. The CA was immobilized within polyurethane (PU) foam, and compared its biocatalytic activity with the free-CA and bare-PU foam. A minireactor was created in a calcium hydroxide (Ca(OH)2) solution in order to control the CO2 transfer rate, and reproducible results were obtained. It was found that the free-CA lost its activity in less than 6 min at pH 12.5 in alkaline Ca(OH)2 solution. The CaCO3 crystallization rates for the immobilized-CA were found to be a U-shape, relatively lower at lower immobilized-CA amounts compared to those for the free-CA and bare-PU foam and higher when the amount of immobilized-CA increased. It was concluded that a higher immobilized-CA amount is required to accelerate the CaCO3 crystallization rates in Ca(OH)2 solution.

Description

Keywords

Carbonic anhydrase, Alkalinity, Calcium carbonate, Crystallization kinetics, Polyurethane foams, Carbonic anhydrase, Polyurethane foams, Alkalinity, Crystallization kinetics, Calcium carbonate

Fields of Science

02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences

Citation

Molva, M., Kılıç, S., and Özdemir, E. (2016). Effect of carbonic anhydrase on CaCO3 crystallization in alkaline solution. Energy and Fuels, 30(12), 10686-10695. doi:10.1021/acs.energyfuels.6b02475

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
12

Source

Energy and Fuels

Volume

30

Issue

12

Start Page

10686

End Page

10695
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CrossRef : 8

Scopus : 15

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Mendeley Readers : 21

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15

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Web of Science™ Citations

14

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Page Views

811

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Downloads

683

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