In response to the ever increasing concern over environmental contamination and the human and ecological consequences, this proposal suggest developing ultratrace analytical methods for some of the substances of concern with wide applicability to many environmental and biological samples. The approach as outline herein will be to focus on organoarsenicals, organotins, inorganic arsenic, and organic compounds containing halogens and/or phosphorus. Pg to sub-pg levels of detection will be developed form the perspective that total amounts of element, while useful, do not provide sufficient information and therefore speciation is necessary. Methods for speciation will utilize gas chromatography or high performance liquid chromatography as is most appropriate. The method detection will be plasma source mass spectrometry. Both GC and HPLC enjoy tremendous popularity for separation of complex and difficult samples. To date, the most popular method of operation has been to use group sensitive detectors such as electron capture and ultraviolet absorption rather than element specific detection. However, with element specificity the ability to determine elemental ratios and potentially empirical formulae at trace levels are strong driving forces for implementation of these detectors. Multielement chromatograms result if several elements are monitored, thereby minimizing possible chromatographic ambiguities from lack of resolution or separation. Atomic spectrometry is recognized for its element specificity and low detection limits. Plasma source mass spectrometry further enhances this by allowing detection at the part-per-trillion levels and the ability to monitor several elements in a chromatographically separated compound. To date, there have been only few exploratory reports which have utilized plasma MS for chromatographic detection. Excellent low level detection has been attained in our initial studies. This proposal suggest further development of this early work with the expectation of improving detection levels and includes use of helium plasmas and mixed gas he/Ar plasmas for more efficient ion formation with nonmetals. It also includes applications to the environmentally and biologically significant compounds as mentioned above by utilizing a variety of complex sample types. Furthermore, isotope ratio information may help identify the contamination source.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Research Project (R01)
Project #
5R01ES003221-09
Application #
3250396
Study Section
Metallobiochemistry Study Section (BMT)
Project Start
1983-06-15
Project End
1992-05-31
Budget Start
1991-06-01
Budget End
1992-05-31
Support Year
9
Fiscal Year
1991
Total Cost
Indirect Cost
Name
University of Cincinnati
Department
Type
Schools of Arts and Sciences
DUNS #
City
Cincinnati
State
OH
Country
United States
Zip Code
45221
Ding, H; Wang, J; Dorsey, J G et al. (1995) Arsenic speciation by micellar liquid chromatography with inductively coupled plasma mass spectrometric detection. J Chromatogr A 694:425-31
Lin, L; Wang, J; Caruso, J (1995) Arsenic speciation using capillary zone electrophoresis with indirect ultraviolet detection. J Chromatogr Sci 33:177-80
Tomlinson, M J; Lin, L; Caruso, J A (1995) Plasma mass spectrometry as a detector for chemical speciation studies. Analyst 120:583-9
Kumar, U T; Vela, N P; Caruso, J A (1995) Multi-element detection of organometals by supercritical fluid chromatography with inductively coupled plasma mass spectrometric detection. J Chromatogr Sci 33:606-10
Carey, J M; Vela, N P; Caruso, J A (1994) Chromium determination by supercritical fluid chromatography with inductively coupled plasma mass spectrometric and flame ionization detection. J Chromatogr A 662:329-40
Pretty, J R; Blubaugh, E A; Caruso, J A (1993) Determination of arsenic(III) and selenium(IV) using an on-line anodic stripping voltammetry flow cell with detection by inductively coupled plasma atomic emission spectrometry and inductively coupled plasma mass spectrometry. Anal Chem 65:3396-403
Vela, N P; Caruso, J A (1993) Comparison of flame ionization and inductively coupled plasma mass spectrometry for the detection of organometallics separated by capillary supercritical fluid chromatography. J Chromatogr 641:337-45
Kumar, U T; Dorsey, J G; Caruso, J A et al. (1993) Speciation of inorganic and organotin compounds in biological samples by liquid chromatography with inductively coupled plasma mass spectrometric detection. J Chromatogr A 654:261-8
Vela, N P; Olson, L K; Caruso, J A (1993) Elemental speciation with plasma mass spectrometry. Anal Chem 65:585A-597A
Sheppard, B S; Caruso, J A; Heitkemper, D T et al. (1992) Arsenic speciation by ion chromatography with inductively coupled plasma mass spectrometric detection. Analyst 117:971-5

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