Flow analysis methodology is presented for the determination of morphine in process streams. Detection is achieved by monitoring the resultant chemihuninescence (CL) emission from the reaction of morphine and acidic potassium permanganate in the presence of tetraphosphoric acid. Calibration graphs a
Determination of codeine in process streams using flow-injection analysis with chemiluminescence detection
โ Scribed by Neil W. Barnett; Tim A. Bowser; Richard D. Gerardi; Brent Smith
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 869 KB
- Volume
- 318
- Category
- Article
- ISSN
- 0003-2670
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โฆ Synopsis
A flow-injection (FI) methodology using tris(2,2'-bipyridyl)ruthenium(II) chemiluminescence was developed and evaluated for the determination of codeine in process streams. For the samples analysed codeine exhibited high sensitivity and selectivity over various other similar Papaver alkaloids, especially morphine (lo4 times more sensitive). A simple, computer controlled FI manifold incorporating a heterogenous lead dioxide/silica reactor was utilised to analyse an artificial sample and two process samples. The results were compared with those obtained by an established ion-pair liquid chromatography (LC) method. Calibration was linear between 1.0 X 10e8 to 1.0 X lo-" M with a 3a detection limit of 5 X 10e9 M. The internal calibration method compared most favourably with the LC determinations which highlighted complicated matrix effects observed at differing process sample points. The efficacy of the solid phase reactor and the suitability of the methodology for application to continuous on-line analysis of codeine process streams was assessed.
๐ SIMILAR VOLUMES
An novel analytical method consisting of flow-injection sampling and chemiluminescence (CL) detection for determination of anticancer drug hydroxycamptothecinum (HCPT) is described. It is based on the CL reaction of potassium permanganate-formaldehyde-HCPT system. The formaldehyde-sensitized CL emis