Fluorine contamination, mobility, and risks in soils at a phosphate-gypsum waste landfill: a new analytical method and comparison with previous methods

Author:

Oh Seok-Young,Kim Hyeongseok,Yoon Hye-On

Funder

University of Ulsan

Publisher

Springer Science and Business Media LLC

Reference27 articles.

1. An, J. S., Kim, J. A., & Yoon, H. O. (2013). A review on the analytical techniques for the determination of fluorine contents in soil and solid phase samples. Journal of Soil and Groundwater Environment, 18, 112–122. written in Korean and abstract in English.

2. An, J. S., Kim, K. H., Yoon, H. O., & Seo, J. (2012). Application of wavelength dispersive X-ray fluorescence technique to determine soil fluorine with consideration of iron content in the matrix. Spectrochimica Acta Part b: Atomic Spectroscopy, 69, 38–43.

3. Arnesen, A. K. M., Abrahamsen, G., & Krogstad, S. T. (1995). Aluminium-smelters and fluoride pollution of soil and soil solution in Norway. Science of the Total Environment, 163, 39–53.

4. Canadian Council of Ministers of the Environment. (2006). A protocol for the derivation of environmental and human health soil quality guidelines. Winnipeg, Manitoba, Canada.

5. Choo, C. O., Kim, J. T., Chung, I. M., Kim, N. W., & Jeong, G. C. (2008). Geochemical aspects of groundwater in granite area and the origin of fluoride with emphasis on the water-rock interaction. Journal of Engineering Geology, 18, 103–115. written in Korean and abstract in English.

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