Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants

Ammonium pyrrolidine-dithiocarbamate (APDTC) and methyl-isobutyl-ketone (MIBK) extractant were jound to be considerably improved by the addition of nbutylamine especially for the chemical analysis of Cd(II) and Zn(II) ions. Solvent extraction oj the bivalent metal ions is a function of pH and the...

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Main Authors: Tee, Tan Wee, Keong, Wong See
Format: Article
Language:English
English
Published: 1990
Online Access:http://psasir.upm.edu.my/id/eprint/2824/1/Enhancement_of_Cadmium_and_Zinc_Flame_Spectrometric_Signals.pdf
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author Tee, Tan Wee
Keong, Wong See
author_facet Tee, Tan Wee
Keong, Wong See
author_sort Tee, Tan Wee
collection UPM
description Ammonium pyrrolidine-dithiocarbamate (APDTC) and methyl-isobutyl-ketone (MIBK) extractant were jound to be considerably improved by the addition of nbutylamine especially for the chemical analysis of Cd(II) and Zn(II) ions. Solvent extraction oj the bivalent metal ions is a function of pH and the concentration of APDTC and nbutylamine. Cd(II) and Zn(II) ions exhibit considerable flame spectrometric signal enhancement for pH ranges from 7 to 12 and 2 to 12 respectively when APDTC-nbutylamine-MIBK was used as the extractant in place oj APDTC-MIBK. The signal enhancement observed may be interpreted in terms of the formation of synergistic amine adduct and/or mixed solvent effect.
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spelling upm.eprints-28242013-05-27T07:03:44Z http://psasir.upm.edu.my/id/eprint/2824/ Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants Tee, Tan Wee Keong, Wong See Ammonium pyrrolidine-dithiocarbamate (APDTC) and methyl-isobutyl-ketone (MIBK) extractant were jound to be considerably improved by the addition of nbutylamine especially for the chemical analysis of Cd(II) and Zn(II) ions. Solvent extraction oj the bivalent metal ions is a function of pH and the concentration of APDTC and nbutylamine. Cd(II) and Zn(II) ions exhibit considerable flame spectrometric signal enhancement for pH ranges from 7 to 12 and 2 to 12 respectively when APDTC-nbutylamine-MIBK was used as the extractant in place oj APDTC-MIBK. The signal enhancement observed may be interpreted in terms of the formation of synergistic amine adduct and/or mixed solvent effect. 1990 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/2824/1/Enhancement_of_Cadmium_and_Zinc_Flame_Spectrometric_Signals.pdf Tee, Tan Wee and Keong, Wong See (1990) Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants. Pertanika, 13 (1). pp. 95-99. English
spellingShingle Tee, Tan Wee
Keong, Wong See
Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants
title Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants
title_full Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants
title_fullStr Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants
title_full_unstemmed Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants
title_short Enhancement of Cadmium and Zinc Flame Spectrometric Signals by Using APDTC-nButylamine-MIBK Extractants
title_sort enhancement of cadmium and zinc flame spectrometric signals by using apdtc nbutylamine mibk extractants
url http://psasir.upm.edu.my/id/eprint/2824/1/Enhancement_of_Cadmium_and_Zinc_Flame_Spectrometric_Signals.pdf
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