Flow-injection spectrophotometric determination of calcium using murexide as a color agent
FI spectrophotometric determination of calcium using murexide has been developed. The problem of the color of the dye fading and/or its complex in an alkaline medium in the batch method can be overcome by taking advantage of FIA. A calcium solution is injected into an ethylenediamine-ethylenediamine...
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2014
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th-cmuir.6653943832-60792014-08-30T03:23:48Z Flow-injection spectrophotometric determination of calcium using murexide as a color agent Grudpan K. Jakmunee J. Vaneesorn Y. Watanesk S. Maung UA. Sooksamiti P. FI spectrophotometric determination of calcium using murexide has been developed. The problem of the color of the dye fading and/or its complex in an alkaline medium in the batch method can be overcome by taking advantage of FIA. A calcium solution is injected into an ethylenediamine-ethylenediamine hydrochloride buffer (1 M, pH 11) which also serves as a masking agent, and is then merged with the aqueous murexide (0.005%, w/v) and continuously monitored. Simple FIA manifolds, including an LED colorimeter detector hooked up to a PC-based data acquisition and evaluation system are described. Optimization of FIA systems has been made. The proposed procedures have been validated by using reference materials and comparing the results with the standard methods, and then applied to ores and drug samples. 2014-08-30T03:23:48Z 2014-08-30T03:23:48Z 1998 Journal Article 0039-9140 18967250 http://www.ncbi.nlm.nih.gov/pubmed/3502482 http://cmuir.cmu.ac.th/handle/6653943832/6079 eng |
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FI spectrophotometric determination of calcium using murexide has been developed. The problem of the color of the dye fading and/or its complex in an alkaline medium in the batch method can be overcome by taking advantage of FIA. A calcium solution is injected into an ethylenediamine-ethylenediamine hydrochloride buffer (1 M, pH 11) which also serves as a masking agent, and is then merged with the aqueous murexide (0.005%, w/v) and continuously monitored. Simple FIA manifolds, including an LED colorimeter detector hooked up to a PC-based data acquisition and evaluation system are described. Optimization of FIA systems has been made. The proposed procedures have been validated by using reference materials and comparing the results with the standard methods, and then applied to ores and drug samples. |
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Article |
author |
Grudpan K. Jakmunee J. Vaneesorn Y. Watanesk S. Maung UA. Sooksamiti P. |
spellingShingle |
Grudpan K. Jakmunee J. Vaneesorn Y. Watanesk S. Maung UA. Sooksamiti P. Flow-injection spectrophotometric determination of calcium using murexide as a color agent |
author_facet |
Grudpan K. Jakmunee J. Vaneesorn Y. Watanesk S. Maung UA. Sooksamiti P. |
author_sort |
Grudpan K. |
title |
Flow-injection spectrophotometric determination of calcium using murexide as a color agent |
title_short |
Flow-injection spectrophotometric determination of calcium using murexide as a color agent |
title_full |
Flow-injection spectrophotometric determination of calcium using murexide as a color agent |
title_fullStr |
Flow-injection spectrophotometric determination of calcium using murexide as a color agent |
title_full_unstemmed |
Flow-injection spectrophotometric determination of calcium using murexide as a color agent |
title_sort |
flow-injection spectrophotometric determination of calcium using murexide as a color agent |
publishDate |
2014 |
url |
http://www.ncbi.nlm.nih.gov/pubmed/3502482 http://cmuir.cmu.ac.th/handle/6653943832/6079 |
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