Hydrochemistry, mineralogy and sulfur isotope geochemistry of acid mine drainage at the Mt. Morgan mine environment, Queensland, Australia

Author:

Edraki M.,Golding S.D.,Baublys K.A.,Lawrence M.G.

Publisher

Elsevier BV

Subject

Geochemistry and Petrology,Pollution,Environmental Chemistry

Reference35 articles.

1. Alpers, C.N., Hamlin, S.N., Rye, R.O., 1994. Stable isotopes (O, H, S) distinguish sources of acid drainage at Penn Mine, California. In: Lanphere, M.A., Dalrymple, G.B., Turrin, B.D. (Eds.), Abstract of the Eighth International Conference on Geochronology, Cosmochronology, and Isotope Geology. US Geological Survey Circular, p. 4

2. Andrew, A.S., LeGras, C.A., Akber, R.A., Bryce, A.J., Todd, A.J., 1995. Origin of sulfate in surface and groundwaters within the Ranger uranium mine, Northern Territory. In: Secombe, P.K., Ashley, P.M. (Eds.), Centre for Isotope Studies Research Report 1993–94. CSIRO Minerals Research Laboratories, Sydney

3. Schwertmannite, a new iron oxyhydroxy-sulfate from Pyhasalami, Finland, and other localities;Bigham;Min. Mag.,1994

4. Schwertmannite and the chemical modelling of iron in acid sulfate waters;Bigham;Geochem. Cosmochim. Acta,1996

5. Element cycling and secondary mineralogy in porphyry copper tailings as a function of climate, primary mineralogy, and mineral processing;Dold;J. Geochem. Explor.,2001

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