Effect of Steel Slag to Improve Soil Quality of Tsunami-Impacted Land while Reducing the Risk of Heavy Metal Bioaccumulation

Author:

León-Romero Marco Antonio,Soto-Ríos Paula Cecilia,Nomura Munehiro,Nishimura Osamu

Publisher

Springer Science and Business Media LLC

Subject

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

Reference66 articles.

1. Ali, H., Khan, K., & Sajad, M. A. (2013). Phytoremediation of heavy metals—concepts and applications. Chemosphere, 91(7), 869–881.

2. Andreazza, R., Bortolon, L., Pieniz, S., Bento, F. M., & Camargo, F. A. O. (2014). Evaluation of two Brazilian indigenous plants for phytostabilization and phytoremediation of copper–contaminated soils. Brazilian Journal of Biology, 75(4), 868–877.

3. Arao, T., Kawasaki, A., Baba, K., Matsumoto, S., & Maejima, Y. (2011). Arsenic contamination in soils and crops in Japan and various countermeasures. Pedologist, 54(3), 202–213.

4. ATSDR, Agency for Toxic Substances and Disease Registry, U.S. Department of Health and Human Services (2015). The 2015 priority list of hazardous substances. ATSDR Publications. Available on www.atsdr.cdc.gov/spl/ (Accessed on Jan 2017).

5. Baba, K., Sera, K., Goto, S., Takahashi, C., & Saitoh, Y. (2012). Analysis of contaminated sludge deposited on the land attacked by great tsunami following Tohoku great earthquake disaster. International Journal of PIXE, 22(1–2), 231–239.

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