Phytoremediation

Author:

Martín-Cervantes Pedro Antonio,del Carmen Valls Martínez María,Santos-Jáen José Manuel

Publisher

Springer International Publishing

Reference31 articles.

1. Bose, S., Rai, V., Bhattacharya, S., Chaudhuri, P., & Bhattacharyya, A. K. (2010). Phyotoremediation: A promising technology of bioremediation for the removal of heavy metal and organic pollutants from the soil. In I. A. Golubev (Ed.), Handbook of phytoremediation (pp. 263–295). New York: Nova Science Publishers.

2. Chakravarty, P., Bauddh, K., & Kumera, M. (2017). Phytoremediation: A multidimensional and ecologically viable practice for the cleanup of environmental contaminants. In K. Bauddh, B. Singh, & J. Korstad (Eds.), Phytoremediation potential of bioenergy plants (pp. 1–46). https://doi.org/10.1007/978-981-10-3084-0_1.

3. Chandra, R., & Kumar, V. (2017). Phytoremediation: A green sustainable technology for industrial waste management. In R. Chandra, N. K. Dubey, & V. Kumar (Eds.), Phytoremediation of environmental pollutants (pp. 1–42). Boca Raton: CRC Press.

4. Cunningham, S. D., & Berti, W. R. (2020). Phytoextraction and phytostabilization: technical, economic, and regulatory considerations of the soil–lead issue. In N. Terry & G. S. Bañuelos (Eds.), Phytoremediation of contaminated soil and water. Boca Raton: CRC Press.

5. Cunningham, S. D., Shann, J. R., Crowley, D. E., & Anderson, T. A. (1997). Phytoremediation of contaminated water and soil. In E. L. Kruger, T. A. Anderson, J. R. Coats, & J. R. Coats (Eds.), Phytoremediation of soil and water contaminants (Vol. 664, pp. 2–17). https://doi.org/10.1021/bk-1997-0664.ch001.

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