Portable capillary electrophoresis instrument with potentiometric detection

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Thomas Kappes and Peter C. Hauser


Abstract

Portable instrumentation has become of increasing interest in analytical chemistry, because on-site analysis has various advantages. In this report we describe the construction of a field-portable capillary electrophoresis instrument with potentiometric detection. The apparatus is contained in a PVC case of 340 × 175 × 175 mm size and a total weight of 7.5 kg and can therefore be carried easily by one person. Two lead–acid batteries provide the power for a high voltage module capable of supplying up to 30 kV, and for the detection amplifier electronics. As detectors, miniature coated-wire ion-selective electrodes are used and a precise electrode alignment is achieved by a simple electrode holder cell without the need for a microscope. Data acquisition is carried out by a small analog-to-digital converter board, which is integrated into the unit, and a palmtop personal computer. The instrument was tested on the banks of the river Rhine. As examples, alkali and alkaline earth metal cations and inorganic monovalent anions were analysed in the river water.


References

  1. E. B. Overton and K. R. Carney, Trends Anal. Chem., 1994, 13, 252 CrossRef CAS.
  2. G. Baykut and J. Franzen, Trends Anal. Chem., 1994, 13, 267 CrossRef CAS.
  3. S. Piorek, Trends Anal. Chem., 1994, 13, 281 CrossRef CAS.
  4. A. M. Bond, H. A. Hudson, S. N. Tan and F. L. Walter, Trends Anal. Chem., 1998, 7, 159 CrossRef CAS.
  5. K. N. Andrew, N. J. Blundell, D. Price and P. J. Worsfold, Anal. Chem., 1994, 66, 917A.
  6. P. W. Alexander, L. T. Di Benedetto, T. Dimitrakopoulos, D. B. Hibbert, J. C. Ngila, M. Sequeira and D. Shiels, Talanta, 1996, 43, 915 CrossRef CAS.
  7. G. I. Baram, J. Chromatogr. A., 1996, 728, 387 CrossRef CAS.
  8. C. Henry, Anal. Chem., 1997, 69, 195A CAS.
  9. X. Huang, T. J. Pang, M. J. Gordon and R. N. Zare, Anal. Chem., 1987, 59, 2747 CrossRef CAS.
  10. R. A. Wallingford and A. G. Ewing, Anal. Chem., 1987, 59, 1762 CrossRef CAS.
  11. W. Lu, R. M. Cassidy and A. S. Baranski, J. Chromatogr., 1993, 366, 433 CrossRef CAS.
  12. C. Haber, I. Silvestri, S. Röösli and W. Simon, Chimia, 1991, 45, 117 CAS.
  13. A. Nann and W. Simon, J. Chromatogr., 1993, 633, 207 CrossRef CAS.
  14. A. Nann, I. Silvestri and W. Simon, Anal. Chem., 1993, 65, 1662 CrossRef CAS.
  15. A. Nann and E. Pretsch, J. Chromatogr. A, 1994, 676, 437 CrossRef CAS.
  16. P. C. Hauser, N. D. Renner and A. P. C. Hong, Anal. Chim. Acta, 1994, 295, 181 CrossRef CAS.
  17. T. Kappes, P. Schnierle and P. C. Hauser, Anal. Chim. Acta, 1997, 350, 141 CrossRef CAS.
  18. T. Kappes and P. C. Hauser, Anal. Chem., 1998, 70, 2487 CrossRef CAS.
  19. B. L. De Backer and L. J. Nagels, Anal. Chem., 1996, 68, 4441 CrossRef CAS.
  20. P. Schnierle, T. Kappes and P. C. Hauser, Anal. Chem., 1998, 70, 3585 CrossRef CAS.
  21. T. Kappes and P. C. Hauser, Anal. Chim. Acta, 1997, 354, 129 CrossRef CAS.
  22. T. Kleiner, F. Bongardt, F. Vögtle, M. W. Läubli, O. Dinten and W. Simon, Chem. Ber., 1985, 118, 1071 CAS.
  23. M. Huser, W. E. Morf, K. Fluri, K. Seiler, P. Schulthess and W. Simon, Helv. Chim. Acta, 1990, 73, 1481 CrossRef CAS.
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