Abstract
A new flow system to pre-concentrate and determine reactive mercury in effluents by photometry is presented. The system is based on the reduction of the reactive mercury present in a 500 mL sample with a Sn(II) solution. The reduced mercury is swept out by an argon stream and carried to a straight glass tube (60 cm long, 3 mm i.d.) inclined in an angle of 15o. The inner surface of this tube has been previously covered by a renewable liquid layer of an oxidant solution containing H2O2 (12%, m/v) and HNO3 (3.0 mol L-1) produced after introduction and passage of a liquid monosegment containing those reagents. The swept Hg0 undergoes an oxidative process and the Hg(II) formed is retained in the layer. After a 10 min sweep time interval the argon flow is stopped and a reagent monosegment (350 μL) containing PAR [4-(2-pyridylazo)resorcinol], 1.0 × 10-3 mol L-1, in an ammonia/ammonium chloride buffer (4.0 mol L -1; pH 9.0) is introduced and passes through the glass tube. A strongly coloured complex between PAR and Hg(II) is formed and carried to the detection system composed of a light emitting diode (LED, λmax = 525 nm) and a photodiode detector. Sample processing time is about 12 min. The system is washed and a fresh liquid layer is formed, preparing the system for a new determination. This method concentrates the sample by a factor of 148 and achieves a detection limit of 0.16 μg L-1. ©2005 Sociedade Brasileira de Química.
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Yonehara, F. S., Pasquini, C., & Rohwedder, J. J. R. (2005). Flow system for pre-concentration and spectrophotometric determination of reactive mercury. Journal of the Brazilian Chemical Society, 16(5), 928–935. https://doi.org/10.1590/S0103-50532005000600007
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