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Environment International|April 23, 2003
Phytoremediation of heavy metal-contaminated land by trees--a reviewI D Pulford, C Watson
Journal of Hazardous Materials|November 3, 2010
Microbial respiration as an indication of metal toxicity in contaminated organic materials and soilO I Nwachukwu, I D Pulford
Environmental Geochemistry and Health|August 7, 2003
Sorption of Cu and Zn by bone charcoalJ A Wilson, I D Pulford, S Thomas
International Journal of Phytoremediation|January 31, 2004
Development of a hydroponic screening technique to assess heavy metal resistance in willow (Salix)C Watson, I D Pulford, D Riddell-Black
International Journal of Phytoremediation|January 31, 2004
Screening of willow species for resistance to heavy metals: comparison of performance in a hydroponics system and field trialsC Watson, I D Pulford, D Riddell-Black
The New Phytologist|April 17, 2021
Tissue nutrient signatures predict herbaceous-wetland community responses to nutrient availabilityN J Willby, I D Pulford, T H Flowers
International Journal of Phytoremediation|August 23, 2012
Metal accumulation in Lolium perenne and Brassica napus as affected by application of chitosansA Kamari, I D Pulford, J S J Hargreaves
Journal of Environmental Management|June 29, 2011
Binding of heavy metal contaminants onto chitosans--an evaluation for remediation of metal contaminated soil and waterA Kamari, I D Pulford, J S J Hargreaves
Environmental Science and Pollution Research International|September 30, 2014
Biodegradation of chitosan and its effect on metal bioavailabilityA Kamari, I D Pulford, J S J Hargreaves
Colloids and Surfaces. B, Biointerfaces|September 14, 2010
Chitosan as a potential amendment to remediate metal contaminated soil - a characterisation studyA Kamari, I D Pulford, J S J Hargreaves
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