Biomimetic CO2 capture using a highly thermostable bacterial α-carbonic anhydrase immobilized on a polyurethane foam.
about
Thermostable Carbonic Anhydrases in Biotechnological ApplicationsEnzymatic Processes in Marine BiotechnologyThe η-class carbonic anhydrases as drug targets for antimalarial agents.Bacterial, fungal and protozoan carbonic anhydrases as drug targets.Inhibition of the β-carbonic anhydrase from the dandruff-producing fungus Malassezia globosa with monothiocarbamates.Expression and characterization of a recombinant psychrophilic γ-carbonic anhydrase (NcoCA) identified in the genome of the Antarctic cyanobacteria belonging to the genus Nostoc.A new procedure for the cloning, expression and purification of the β-carbonic anhydrase from the pathogenic yeast Malassezia globosa, an anti-dandruff drug target.A failed tentative to design a super carbonic anhydrase having the biochemical properties of the most thermostable CA (SspCA) and the fastest (SazCA) enzymes.Protonography, a technique applicable for the analysis of η-carbonic anhydrase activity.Microbial Carbonic Anhydrases in Biomimetic Carbon Sequestration for Mitigating Global Warming: Prospects and Perspectives.Production and covalent immobilisation of the recombinant bacterial carbonic anhydrase (SspCA) onto magnetic nanoparticles.A one-step procedure for immobilising the thermostable carbonic anhydrase (SspCA) on the surface membrane of Escherichia coli.Biochemical characterization of the native α-carbonic anhydrase purified from the mantle of the Mediterranean mussel, Mytilus galloprovincialis.Cloning, expression and biochemical characterization of a β-carbonic anhydrase from the soil bacterium Enterobacter sp. B13.Trends, application and future prospectives of microbial carbonic anhydrase mediated carbonation process for CCUS.Biochemical characterization of recombinant β-carbonic anhydrase (PgiCAb) identified in the genome of the oral pathogenic bacterium Porphyromonas gingivalis.An Overview of the Bacterial Carbonic Anhydrases.Carbon Dioxide-Controlled Assembly of Water-Soluble Conjugated Polymers Catalyzed by Carbonic Anhydrase.Carbon dioxide capture using Escherichia coli expressing carbonic anhydrase in a foam bioreactor.Protonography, a new technique for the analysis of carbonic anhydrase activity.The use of carbonic anhydrase to accelerate carbon dioxide capture processes
P2860
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P2860
Biomimetic CO2 capture using a highly thermostable bacterial α-carbonic anhydrase immobilized on a polyurethane foam.
description
2013 nî lūn-bûn
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name
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@en
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@nl
type
label
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@en
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@nl
prefLabel
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@en
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@nl
P2093
P2860
P1476
Biomimetic CO2 capture using a ...... ilized on a polyurethane foam.
@en
P2093
Claudiu T Supuran
Clemente Capasso
Fortunato Migliardini
Pasquale Corbo
Vincenzo Carginale
Viviana De Luca
P2860
P304
P356
10.3109/14756366.2012.761608
P50
P577
2013-02-15T00:00:00Z