Use of Halophytes for the Remediation of Metal-Affected Soils in Arid Environments
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-57635-6_122
Reference116 articles.
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3. Anand, M., Ma, K. M., Okonski, A., Levin, S., & McCreath, D. (2003). Characterising biocomplexity and soil microbial dynamics along a smelter-damaged landscape gradient. Science of the Total Environment, 311(1–3), 247–259. https://doi.org/10.1016/S0048-9697(03)00058-5.
4. Antoniadis, V., Shaheen, S. M., Levizou, E., Shahid, M., Niazi, N. K., Vithanage, M., Ok, Y. S., Bolan, N., & Rinklebe, J. (2019). A critical prospective analysis of the potential toxicity of trace element regulation limits in soils worldwide: Are they protective concerning health risk assessment? – A review. Environment International, 127(November 2018), 819–847. https://doi.org/10.1016/j.envint.2019.03.039.
5. Baker, A. J. M., & Proctor, J. (1990). The influence of cadmium, copper, lead, and zinc on the distribution and evolution of metallophytes in the British Isles. Plant Systematics and Evolution, 173(1–2), 91–108. https://doi.org/10.1007/BF00937765.
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