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Volumn 131, Issue , 2015, Pages 38-45
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Degradation of phenolic compounds by laccase immobilized on carbon nanomaterials: Diffusional limitation investigation
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Author keywords
Carbon nanoparticles; Degradation; Immobilization; Laccase; Phenolic compounds
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Indexed keywords
DEGRADATION;
ENZYME ACTIVITY;
ENZYME IMMOBILIZATION;
GRAPHENE;
NANOPARTICLES;
PHENOLS;
RADIOACTIVE WASTE VITRIFICATION;
REACTION RATES;
SUBSTRATES;
YARN;
CARBON NANO-MATERIALS;
CARBON NANO-PARTICLES;
ENVIRONMENTAL CONTAMINANT;
IMMOBILIZED ENZYME;
IMMOBILIZED LACCASE;
LACCASES;
LOW CONCENTRATIONS;
PHENOLIC COMPOUNDS;
MULTIWALLED CARBON NANOTUBES (MWCN);
2,2'-AZINO-DI-(3-ETHYLBENZOTHIAZOLINE)-6-SULFONIC ACID;
4,4' ISOPROPYLIDENEDIPHENOL;
BENZHYDRYL DERIVATIVE;
BENZOTHIAZOLE DERIVATIVE;
CARBON;
CARBON NANOTUBE;
CATECHOL;
CATECHOL DERIVATIVE;
FULLERENE C60;
FULLERENE DERIVATIVE;
GRAPHITE;
IMMOBILIZED ENZYME;
LACCASE;
NANOMATERIAL;
PHENOL DERIVATIVE;
SULFONIC ACID DERIVATIVE;
BIOREMEDIATION;
CHEMISTRY;
DIFFUSION;
METABOLISM;
OXIDATION REDUCTION REACTION;
PH;
BENZHYDRYL COMPOUNDS;
BENZOTHIAZOLES;
BIODEGRADATION, ENVIRONMENTAL;
CARBON;
CATECHOLS;
DIFFUSION;
ENZYMES, IMMOBILIZED;
FULLERENES;
GRAPHITE;
HYDROGEN-ION CONCENTRATION;
LACCASE;
NANOSTRUCTURES;
NANOTUBES, CARBON;
OXIDATION-REDUCTION;
PHENOLS;
SULFONIC ACIDS;
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EID: 84906093834
PISSN: 00399140
EISSN: None
Source Type: Journal
DOI: 10.1016/j.talanta.2014.07.045 Document Type: Article |
Times cited : (122)
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References (31)
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