Use of phytoremediation and biochar to remediate heavy metal polluted soils: a review
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Published:2014-02-13
Issue:1
Volume:5
Page:65-75
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ISSN:1869-9529
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Container-title:Solid Earth
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language:en
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Short-container-title:Solid Earth
Author:
Paz-Ferreiro J.,Lu H.,Fu S.,Méndez A.,Gascó G.
Abstract
Abstract. Anthropogenic activities are resulting in an increase of the use and extraction of heavy metals. Heavy metals cannot be degraded and hence accumulate in the environment, having the potential to contaminate the food chain. This pollution threatens soil quality, plant survival and human health. The remediation of heavy metals deserves attention, but it is impaired by the cost of these processes. Phytoremediation and biochar are two sound environmental technologies which could be at the forefront to mitigate soil pollution. This review provides an overview of the state of the art of the scientific research on phytoremediation and biochar application to remediate heavy-metal-contaminated soils. Research to date has attempted only in a limited number of occasions to combine both techniques, however we discuss the potential advantages of combining both, and the potential mechanisms involved in the interaction between phytoremediators and biochar. We identified specific research needs to ensure a sustainable use of phytoremediation and biochar as remediation tools.
Publisher
Copernicus GmbH
Subject
Paleontology,Stratigraphy,Earth-Surface Processes,Geochemistry and Petrology,Geology,Geophysics,Soil Science
Reference86 articles.
1. Adriano, D. C., Wenzel, W. W., Vangrosveld, J., and Nolam, N. S.: Role of assisted natural remediation in environmental clean-up, Geoderma, 122, 121–142, 2004. 2. Ahmad, M., Lee, S. S., Yang, J. E., Ro, H. M., Lee, Y. H., and Ok, Y. S.: Effects of soil dilution and amendments (mussel shell, cow bone and biochar) on Pb availability and phytotoxicity in military shooting range soil, Ecotox. Environ. Safe., 79, 225–231, 2012. 3. Ahmad, S., Ghafoor, A., Akhtar, M. E., and Khan, M. Z.: Ionic displacement and reclamation of saline-sodic soils using chemical amendments and crop rotation, Land Degrad. Dev., 24, 170–178, 2013. 4. Al Agely, A., Sylvia, D. M., and Ma, L. Q.: Mycorrhizae increase arsenic uptake by the hyperaccumulator Chinese brake fern (Pteris vittata L.), J. Environ. Qual., 6, 2181–2186, 2005. 5. Ali, H., Khan, E., and Sajad, M. A.: Phytoremediation of heavy metals – Concepts and applications, Chemosphere, 91, 869–881, 2013.
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