Examining the Effects of the Destroying Ammunition, Mines and Explosive Devices on the Presence of Heavy Metals in Soil of Open Detonation Pit; Part 2: Determination of Heavy Metal Fractions

Author:

Tešan Tomić Neda,Smiljanić Slavko,Jović M.,Gligorić M.,Povrenović D.,Došić A.

Publisher

Springer Science and Business Media LLC

Subject

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

Reference97 articles.

1. Abdu, N. (2010). Availability, transfer and balances of heavy metals in urban agriculture of West Africa. Kassel, Germany: Kassel University Press GmbH.

2. Adriano, D. C. (2001). Trace elements in terrestrial environments: biogeochemistry, bioavailability and risks of metals, Springer-Verlag (second ed.880 pp). New York.

3. Aiju, L., Yanchun, G., Honghai, W., & Gao Peiling, G. (2012). An assessment of heavy metals contamination in Xiaofu River sediments through chemical speciation study. International Journal of Earth Sciences, 5(5), 1235–1240.

4. Alverbro, K., Björklund, A., Finnveden, G., Hochschorner, E., & Hägvall, J. (2009). A life cycle assessment of destruction of ammunition. Journal of Hazardous Materials, 170, 1101–1109.

5. Ampleman, G., Thiboutot, S., Diaz, E., Brochu, S., Martel, R., & Walsh, M. (2013). New range design and mitigation methods for sustainable training. Finnish Ministry of Defence: European Conference of Defence and the Environment.

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