2010Journal of environmental healthRequires access

Determination of Trace Antimony(III)by Inhibitory Kinetic Spectrophotornetry

Ding Bo-l

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Abstract

Objective To establish a new inhibitory kinetic spectrophotometric method for the determination of trace Sb3+ in water sample. Methods A new inhibitory kinetic spectrophotometric method for the determination of trace Sb3+ was established based on the inhibitory effect of Sb3+ on the oxidation of thionine by H2O2 in a buffer solution of NH3-NH4Cl at pH=10.50. Results The linear range of this method was 0.004-0.40 μg/ml, r=0.999 2,the limit of detection was 1.71×10-3 μg/ml, and RSDs were 1.4%~ 2.1% , the recovery rates were 96.2% -101.9% . Conclusion This method is accurate, fast, simple and applicable to the determination of antimony content in environment water samples.

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Objective To establish a new inhibitory kinetic spectrophotometric method for the determination of trace Sb3+ in water sample. Methods A new inhibitory kinetic spectrophotometric method for the determination of trace Sb3+ was established based on the inhibitory effect of Sb3+ on the oxidation of thionine by H2O2 in a buffer solution of NH3-NH4Cl at pH=10.50. Results The linear range of this method was 0.004-0.40 μg/ml, r=0.999 2,the limit of detection was 1.71×10-3 μg/ml, and RSDs were 1.4%~ 2.1% , the recovery rates were 96.2% -101.9% . Conclusion This method is accurate, fast, simple and applicable to the determination of antimony content in environment water samples.

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Available abstract

Objective To establish a new inhibitory kinetic spectrophotometric method for the determination of trace Sb3+ in water sample. Methods A new inhibitory kinetic spectrophotometric method for the determination of trace Sb3+ was established based on the inhibitory effect of Sb3+ on the oxidation of thionine by H2O2 in a buffer solution of NH3-NH4Cl at pH=10.50. Results The linear range of this method was 0.004-0.40 μg/ml, r=0.999 2,the limit of detection was 1.71×10-3 μg/ml, and RSDs were 1.4%~ 2.1% , the recovery rates were 96.2% -101.9% . Conclusion This method is accurate, fast, simple and applicable to the determination of antimony content in environment water samples.

Key concepts: Thionine, Antimony, Chemistry, Detection limit, Linear range, TRACE (psycholinguistics), Kinetic energy, Chromatography

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