On carbon dioxide storage based on biomineralization strategies.
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Thermostable Carbonic Anhydrases in Biotechnological ApplicationsX-ray structure of the first `extremo-α-carbonic anhydrase', a dimeric enzyme from the thermophilic bacterium Sulfurihydrogenibium yellowstonense YO3AOP1Vanishing clams on an Iberian beach: local consequences and global implications of accelerating loss of shells to tourismEngineered Escherichia coli with periplasmic carbonic anhydrase as a biocatalyst for CO2 sequestrationThe biological deep sea hydrothermal vent as a model to study carbon dioxide capturing enzymesSurface Display of Small Peptides on Escherichia coli for Enhanced Calcite Precipitation Rates.Novel alkalistable α-carbonic anhydrase from the polyextremophilic bacterium Bacillus halodurans: characteristics and applicability in flue gas CO2 sequestration.A novel proton transfer salt of 2-amino-6-sulfamoylbenzothiazole and its metal complexes: the evaluation of their inhibition effects on human cytosolic carbonic anhydrases.About how to capture and exploit the CO2 surplus that nature, per se, is not capable of fixing.Suitability of the alkalistable carbonic anhydrase from a polyextremophilic bacterium Aeribacillus pallidus TSHB1 in biomimetic carbon sequestration.Expression and characterization of codon-optimized carbonic anhydrase from Dunaliella species for CO(2) sequestration application.Assessment of a biostimulated or bioaugmented calcification system with Bacillus pasteurii in a simulated soil environment.Utility of thermo-alkali-stable γ-CA from polyextremophilic bacterium Aeribacillus pallidus TSHB1 in biomimetic sequestration of CO2 and as a virtual peroxidase.Carbonic Anhydrases: Role in pH Control and Cancer.Characterization of Phosphoenolpyruvate Carboxylase from Oceanimonas smirnovii in Escherichia coli.Expression, reconstruction and characterization of codon-optimized carbonic anhydrase from Hahella chejuensis for CO2 sequestration application.Nickel nanoparticles catalyse reversible hydration of carbon dioxide for mineralization carbon capture and storageConversion of carbon dioxide to oxaloacetate using integrated carbonic anhydrase and phosphoenolpyruvate carboxylaseCharacterization of carbonic anhydrase II from Chlorella vulgaris in bio-CO2 capturePores and Microanalysis of Microbe-Inspired Nano-CaCO3Cementing Sand ColumnsStrategizing Carbon-Neutral Mines: A Case for Pilot Projects
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On carbon dioxide storage based on biomineralization strategies.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 14 December 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
On carbon dioxide storage based on biomineralization strategies.
@en
On carbon dioxide storage based on biomineralization strategies.
@nl
type
label
On carbon dioxide storage based on biomineralization strategies.
@en
On carbon dioxide storage based on biomineralization strategies.
@nl
prefLabel
On carbon dioxide storage based on biomineralization strategies.
@en
On carbon dioxide storage based on biomineralization strategies.
@nl
P2093
P1433
P1476
On carbon dioxide storage based on biomineralization strategies.
@en
P2093
Kyoung-Soo Lim
Michael C Trachtenberg
Seung-Bin Park
Seung-Woo Lee
Si-Hyun Lee
Soon-Kwan Jeong
P304
P356
10.1016/J.MICRON.2009.11.012
P577
2009-12-14T00:00:00Z