2003Uranium Mining and MetallurgyRequires access

RESEARCH ON BIOSORPTION OF URANIUM BY SACCHAROMYCES CERIVISIAE

Wang Cui

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Abstract

The effects of pH and the granularity of Scerivisiae on the biosorption capacity were examined in order to study the properties of the biosorption of uranium from effluent by Saccharomyces cerivisiae. The isotherm was drawn. From the isotherm, the equations of Langmuir and Freundlich were achieved. The results showed the highest biosorption capacity was obtained when the pH value was about 6 and the granularity was 015~013 mm.

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What this paper is about

The effects of pH and the granularity of Scerivisiae on the biosorption capacity were examined in order to study the properties of the biosorption of uranium from effluent by Saccharomyces cerivisiae. The isotherm was drawn. From the isotherm, the equations of Langmuir and Freundlich were achieved. The results showed the highest biosorption capacity was obtained when the pH value was about 6 and the granularity was 015~013 mm.

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Available abstract

The effects of pH and the granularity of Scerivisiae on the biosorption capacity were examined in order to study the properties of the biosorption of uranium from effluent by Saccharomyces cerivisiae. The isotherm was drawn. From the isotherm, the equations of Langmuir and Freundlich were achieved. The results showed the highest biosorption capacity was obtained when the pH value was about 6 and the granularity was 015~013 mm.

Key concepts: Biosorption, Uranium, Freundlich equation, Effluent, Langmuir, Granularity, Chemistry, Nuclear chemistry

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