Simultaneous phytoremediation of Ni2+ and bioelectricity generation in a plant-microbial fuel cell assembly using water hyacinth (Eichhornia crassipes)
Author:
Publisher
IOP Publishing
Subject
General Engineering
Link
http://stacks.iop.org/1755-1315/191/i=1/a=012093/pdf
Reference4 articles.
1. Phytoremediation of heavy metals by Eichhornia crassipes
2. The impact of water hyacinth (Eichhornia crassipes) on greenhouse gas emission and nutrient mobilization depends on rooting and plant coverage
3. Plant microbial fuel cells: A promising biosystems engineering
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1. State of the Art and Environmental Aspects of Plant Microbial Fuel Cells’ Application;Energies;2024-02-05
2. Performance evaluation of the novel 3D-printed aquatic plant-microbial fuel cell assembly with Eichhornia crassipes;International Journal of Renewable Energy Development;2023-08-08
3. The race between classical microbial fuel cells, sediment-microbial fuel cells, plant-microbial fuel cells, and constructed wetlands-microbial fuel cells: Applications and technology readiness level;Science of The Total Environment;2023-06
4. Alternative Uses of Water Hyacinth (Pontederia crassipes) from a Sustainable Perspective: A Systematic Literature Review;Sustainability;2022-03-26
5. Integration of various technology-based approaches for enhancing the performance of microbial fuel cell technology: A review;Chemosphere;2022-01
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