Determination of Palladium II in 5% Pd/BaSO<sub>4</sub> by ICP-MS with Microwave Digestion, and UV-VIS Spectrophotometer
- 1 Department of Science, Al-Ghazaly High School, Wayne, NJ, USA
- 2 Department of Science, Al-Ghazaly High School, Wayne, NJ, USA
- 3 Department of Science, Al-Ghazaly High School, Wayne, NJ, USA
- 4 Department of Science, Al-Ghazaly High School, Wayne, NJ, USA
- 5 Department of Science, Al-Ghazaly High School, Wayne, NJ, USA
- 6 Department of Science, Al-Ghazaly High School, Wayne, NJ, USA
Abstract
Determination palladiums have been reported 5% (w/w) Pd/BaSO 4 known as Rosenmund Catalyst. The determination of palladium II known as Rosenmund Catalyst is always an expensive procedure usually involving procedures such as flame atomic absorption spectrophotometry, emission spectrometry, and many spectrophotometric methods. In this study, palladium II in 5% Pd/BaSO 4 , was synthesized and employed to develop an extractive UV-Visible Spectrophotometric, and an inductively coupled plasma mass spectrometry ICP/MS methods for the determination of palladium II. Specification for Pd is 4.85% to 5.10%; the result was 4.97% for the UV-Visible spectrophotometer and 4.90% for the ICP/MS. Both results meet the requirements.
- More, P.S. and Sawant, A.D. (1994) Isonitroso-4-Methyl-2-Pentanone for Solvent Extraction and Spectrophotometric Determination of Palladium (II) at Trace Level. Analytical Letters, 27, 1737-1748. https://doi.org/10.1080/00032719408007432d
- Abu-Baker, M.S. (1996) Indian Journal of Chemistry Section A, 35, 69.
- Dakshinmoorthy, A., Singh, R.K. and Iyer, R.H. (1994) Journal of Radioanalytical and Nuclear Chemistry, 17, 327.
- Chakkar, A.K., Kakkar, L.R. and Fresenius, J. (1994) Extractive Spectrophotometric Determination of Palladium Using 2-(2-hydroxyimino-1-oxoethyl)furan. Analytical Chemistry, 350, 127-131. https://doi.org/10.1007/BF00323173
- Zhu, Y.R. and Yang, L. (1993) Effect of Surfactant on the Spectrophotometric Determination of Palladium Complexed with 4-Nitrobenzenediazobenzene and 1,10- Phenanthroline. Analytical Letters, 26, 309-323. https://doi.org/10.1080/00032719308017387
- Jha, A. and Mishra, R.K. (1993) J. Chin, Soc., 40, 351.
- Fuji, Z., Bincai, W., Hengchauan, L. and Cheng, W. (1993) Characterization of Three New Phosphonic (Arsonic) Acid Type Thiazolylazo Reagents and Application to Spectrophotometric Determination of Microamounts of Palladium. Microchemical Journal, 48, 104. https://doi.org/10.1006/mchj.1993.1077
- Sakuraba, S., Oguna, K. and Fresenius, J. (1994) Spectrophotometric Determination of Palladium(II) with Phenylfluorone in the Presence of Hexadecylpyridinium Bromide. Analytical Chemistry, 349, 523-526. https://doi.org/10.1007/BF00323986
- Mathew, V.J. and Khopkar, S.M. (1997) Hexaacetato Calix(6)arene as the Novel Extractant for Palladium. Talanta, 44, 1699-1703. https://doi.org/10.1016/S0039-9140(97)00013-1
- The International Nickel Company (1966) Palladium the Metal Its Properties and Applications.
- Wise, E.M. Palladium-Recovery, Properties and Applications. Academic Press, New York.
- Sathe, G.B., Valda, V.V. and Ravindra, G. (2015) Extractive Spectrophotometric Determination of Palladium (II) Using Novel Salen Ligand. International Journal of Advanced Research, 3, 699-704.
- Betteridge, W. and Rhys, D.W. (1962) High-Temperature Oxidation of Palladium Metals and Their Alloys. 1st International Congress on Metallic Corrosion, London, 10-15 April 1961, 186-192.
- Chaston, J.C. (1965) Reaction of Oxygen with the Platinum Metals III—The Oxidation of Palladium. Platinum Metals Review, 9, 126-129.