Recent developments in aquatic macrophytes for environmental pollution control: A case study on heavy metal removal from lake water and agricultural return wastewater with the use of duckweed (Lemnacea)
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Elsevier
Reference240 articles.
1. Phytoremediation of heavy metals from aqueous solutions by two aquatic macrophytes, Ceratophyllum demersum and Lemna gibba L;Abdallah;Environ. Technol.,2012
2. Heavy metal accumulation in the leaves of Potamogeton natans and Ceratophyllum demersum in a Himalayan RAMSAR site: management implications;Ahmad;Wetlands Ecol. Manage.,2016
3. Achieving environmental sustainability in wastewater treatment by phytoremediation with water hyacinth (Eichhornia crassipes);Ajayi;J. Sustain. Develop.,2012
4. Arsenic removal from waters by bioremediation with the aquatic plants Water Hyacinth (Eichhornia crassipes) and lesser duckweed (Lemna minor);Alvarado;Biores. Tech.,2008
5. Chapter 4: Phytoremediation of heavy metals and pesticides present in water using aquatic macrophytes, Chapter 4;Anand,2019
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