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Biomedical subjects

A J Saterlay

Publications and source records attributed to A J Saterlay.

3 recordsLinked to original sources

Sonoelectroanalysis--an overview.

The coupling of power-ultrasound with well established but under-exploited electrochemical stripping voltammetry has led to the emergence of a powerful new analytical technique--sonoelectroanalysis. Where classical electroanalytical techniques were plagued with electrode-fouling and/or sensitivity limitations, the introduction of ultrasound into the system has given great increases in analytical efficiency and substrate applicability, predominantly through enhanced mass transport and electrode surface activation. This revitalised analytical technology has been applied to a range of modern analytical problems, allowing sensitive determination of a wide number of analytes from a variety of otherwise hostile matrices, including copper in beer and blood, lead in wine, petrol and river bed sediment, vanadium in aqueous media, nitrite in egg and manganese in instant tea granules. This paper gives an overview of these recent advances.

Alcoholic Beverages↗

Ultrasonically enhanced leaching: removal and destruction of cyanide and other ions from used carbon cathodes.

The used carbon cathodes ('Spent Pot Lining', SPL) from aluminium smelting are typically contaminated with F-, CN- and Na+ which must be removed before disposal to produce material which satisfies environmental guidelines in respect of maximum rates of ion release. Leaching of powdered and crushed carbon samples in aqueous solution were studied in the presence and absence of ultrasound. First, it was demonstrated that the total leaching of F-, CN- and Na+ from the carbon powder could be accomplished after approximately 20 min of sonication using ultrasound. Second, carbon particles (< 5 mm) showed leaching characteristics under ultrasound which were in good quantitative agreement with the National River Authority (NRA) test under silent conditions; the former being a much more rapid (approximately 1 h compared to 24 h for the NRA test) but equivalent method to the latter standard test. Third, the removed CN- ions were found to be destroyed in the presence of ultrasound, possibly via the oxidative action of hydrogen peroxide generated by the sonication of water.

Journal Article↗

Sono-cathodic stripping voltammetry of manganese at a polished boron-doped diamond electrode: application to the determination of manganese in instant tea.

Ultrasonically assisted cathodic stripping voltammetry at a boron-doped diamond electrode was developed for the detection of manganese. Differential-pulse voltammetry was used to give the analytical signal from a cathodic strip of electrodeposited MnO2; linearity was observed from 10(-11) M to at least 3 x 10(-7) M, with 10(-11) M being the detection limit for a 2 min deposition. The procedure involves both ultrasonic-anodic deposition of MnO2 and ultrasonic-cathodic stripping. This novel analytical tool is robust, reproducible, mercury free, oxygen insensitive and highly specific towards manganese. The differential-pulse sono-cathodic stripping voltammetric technique was used to determine successfully the manganese content of two instant tea samples, giving excellent agreement with independent AAS analyses.

Boron↗