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International Journal of Phytoremediation|December 21, 2010
Economic viability of phytoremediation of a cadmium contaminated agricultural area using energy maize. Part II: economics of anaerobic digestion of metal contaminated maize in BelgiumT Thewys, N Witters, E Meers, et al.International Journal of Phytoremediation|December 21, 2010
Economic viability of phytoremediation of a cadmium contaminated agricultural area using energy maize. Part I: effect on the farmer's incomeT Thewys, N Witters, S Van Slycken, et al.Chemosphere|October 20, 2009
The use of bio-energy crops (Zea mays) for 'phytoattenuation' of heavy metals on moderately contaminated soils: a field experimentE Meers, S Van Slycken, K Adriaensen, et al.Journal of Environmental Management|August 27, 2013
Developing principles of sustainability and stakeholder engagement for "gentle" remediation approaches: the European contextA B Cundy, R P Bardos, A Church, et al.Journal of Environmental Management|April 13, 2016
Brownfields to green fields: Realising wider benefits from practical contaminant phytomanagement strategiesA B Cundy, R P Bardos, M Puschenreiter, et al.Chemosphere|July 18, 2015
Management with willow short rotation coppice increase the functional gene diversity and functional activity of a heavy metal polluted soilK Xue, J D van Nostrand, J Vangronsveld, et al.Environmental Pollution (Barking, Essex : 1987)|April 24, 2013
Safe use of metal-contaminated agricultural land by cultivation of energy maize (Zea mays)S Van Slycken, N Witters, E Meers, et al.The Science of the Total Environment|November 15, 2017
Intensify production, transform biomass to energy and novel goods and protect soils in Europe-A vision how to mobilize marginal landsP Schröder, B Beckers, S Daniels, et al.Pageof 1