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Cesium accumulation of Rhodococcus erythropolis CS98 strain immobilized in hydrogel matrices.

Journal of bioscience and bioengineering (2013-11-05)
Takayuki Takei, Mika Yamasaki, Masahiro Yoshida
ZUSAMMENFASSUNG

Agarose gels were superior to calcium-alginate gels for immobilizing Rhodococcus erythropolis CS98 strain to remove cesium from water. Suitable incubation time of the immobilized cells in cesium solutions, cell number in the gels and volume ratio of the cesium solution to the gels for efficient cesium removal were identified.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

Sigma-Aldrich
Agarose, BioReagent, for molecular biology, low EEO
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Natriumalginat, powder
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Natriumalginat
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Natriumalginat aus Braunalgen, low viscosity
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Natriumalginat aus Braunalgen, Medium viscosity
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Natriumalginat aus Braunalgen, BioReagent, suitable for immobilization of micro-organisms
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Poly(ethylenglycol)-dimethacrylat, average Mn 750, contains 900-1100 ppm MEHQ as inhibitor
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Alginsäure aus Braunalgen, powder
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Poly(ethylenglycol)-dimethacrylat, average Mn 550, contains 80-120 ppm MEHQ as inhibitor, 270-330 ppm BHT as inhibitor
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Agarose, High EEO, for molecular biology
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Agarose, Type I, low EEO
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Calciumalginat aus Braunalgen
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Agarose, Special High EEO
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Agarose, Low EEO, for Immunoelectrophoresis
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Agarose, for molecular biology
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Agarose, Ultra-low Gelling Temperature, molecular biology grade
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Agarose, Low EEO
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Sepharose 4B, 45-165 μm bead diameter
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Sepharose 4B, Cytiva 17-0120-01, pack of 1 L
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Poly(ethylenglycol)-dimethacrylat, average Mn 2000, contains ~1000 ppm MeHQ as stabilizer
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Agarose, Medium EEO, for molecular biology
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Poly(ethylenglycol)-dimethacrylat, average Mn 6,000, contains 1000 ppm 4-methoxyphenol as inhibitor
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Agarose, Wide range, for molecular biology
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Agarose, Type I-A, low EEO
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Poly(ethylenglycol)-dimethacrylat, average Mn 10,000, contains MEHQ as inhibitor
Sepharose 6B, Cytiva 17-0110-01, pack of 1 L
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Poly(ethylenglycol)-dimethacrylat, average Mn 20,000, contains MEHQ as inhibitor
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Agarose, High EEO