The Impacts of Geothermal Fluid Discharge on Surface Water Quality with Emphasis on Arsenic

Author:

Baysal Reyhan Tugba,Gunduz Orhan

Funder

TUBITAK

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering

Reference27 articles.

1. Ambrose, R.B. & Wool, T.A. (2009). WASP7 stream transport—model theory and user’s guide: supplement to Water Quality Analysis Simulation Program (WASP) user documentation. U.S. Environmental Protection Agency, EPA/600/R-09/100, Athens, GA.

2. Ambrose, R.B., Wool, T.A., Connolly, J.P. & Schanz, R.W. (1988). WASP4, a hydrodynamic and water quality model—model theory, user’s manual, and programmer’s guide. U.S. Environmental Protection Agency, EPA/600/3-87-039, Athens, GA.

3. Baba, A., & Armannsson, H. (2006). Environmental impact of the utilization of geothermal areas. Energy Sources, Part B: Economics, Planning and Policy, 1, 267–278. doi: 10.1080/15567240500397943 .

4. Brown L.C. & Barnwell, T.O. (1987). The enhanced stream water quality model QUAL2E and QUAL2E-UNCAS: documentation and user manual. US Environmental Protection Agency, EPA/600/3-87/007, Athens, GA.

5. Bundschuh, J., Maity, J. P., Nath, B., Baba, A., Gunduz, O., Kulp, T. R., Jean, J. S., Kar, S., Tseng, Y. J., Bhattacharya, P., & Chen, C. Y. (2013). Naturally occurring arsenic in terrestrial geothermal systems of western Anatolia, Turkey: potential role in contamination of freshwater resources. Journal of Hazardous Materials, 262, 951–959. doi: 10.1016/j.jhazmat.2013.01.039 .

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