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Volumn 362, Issue 2, 2011, Pages 317-324
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Bio-dissolution of colloidal-size clay minerals entrapped in microporous silica gels
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Author keywords
Colloids; Microbial dissolution; Phyllosilicates; Surface reactivity
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Indexed keywords
ABIOTIC CONDITIONS;
ACIDIC CONDITIONS;
ANISOTROPIC PARTICLES;
BACTERIAL GROWTH;
BACTERIAL METABOLISM;
COMPLEXING AGENTS;
DISSOLUTION PROCESS;
DISSOLUTION RATES;
EDGE SURFACE;
HYBRID SILICA;
MICROBIAL DISSOLUTION;
MICROPOROUS SILICA GEL;
MINERAL SURFACES;
NONTRONITES;
PARTICLE AGGREGATION;
PH VALUE;
PHYLLOSILICATES;
REACTIVE SURFACE AREA;
SILICA MATRIX;
SIZE FRACTION;
SOIL BACTERIUM;
SURFACE REACTIVITY;
AGGLOMERATION;
BACTERIA;
BACTERIOLOGY;
CLAY MINERALS;
GELS;
HYBRID MATERIALS;
MINERALS;
SILICA;
SILICA GEL;
SILICATES;
SURFACES;
DISSOLUTION;
IRON;
MAGNESIUM;
PROTON;
SILICA GEL;
ABIOTIC STRESS;
ARTICLE;
BACTERIAL GROWTH;
BACTERIAL METABOLISM;
BACTERIAL STRAIN;
BIOCOMPATIBILITY;
CLAY;
COLLOID;
CRYSTAL STRUCTURE;
DISSOLUTION;
INCUBATION TEMPERATURE;
IRON KINETICS;
NONHUMAN;
NUCLEOTIDE SEQUENCE;
PH;
PRIORITY JOURNAL;
ALUMINUM SILICATES;
BACTERIA;
COLLOIDS;
GOLD;
HYDROGEN-ION CONCENTRATION;
MINERALS;
NITROGEN;
POROSITY;
SILICA GEL;
SOLUBILITY;
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EID: 80051471693
PISSN: 00219797
EISSN: 10957103
Source Type: Journal
DOI: 10.1016/j.jcis.2011.07.031 Document Type: Article |
Times cited : (26)
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References (41)
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