L Mohammed, HG Gomaa, D Ragab, J Zhu - Particuology, 2017 - Elsevier
Engineered magnetic nanoparticles (MNPs) hold great potential in environmental, biomedical, and clinical applications owing to their many unique properties. This …
This paper proposes a critical review of the proton exchange membranes currently available or under development for use in batch-mode microbial fuel cell (MFC) systems in order to …
The advancement of microbial fuel cell technology is rapidly growing, with extensive research and well-established methodologies for enhancing structural performance. This …
The optoelectrical and magnetic characteristics of naturally existing iron-based nanostructures, especially hematite and magnetite nanoparticles (H-NPs and M-NPs) …
The urgent need to address the twin problems of the modern world, energy insecurity caused by fossil fuel depletion and climate change caused by global warming from carbon …
In this study, polyethersulfone (PES) nanofiltration membranes were synthesized by blending of O-carboxymethyl chitosan/Fe 3 O 4 nanoparticles via the phase inversion …
The application of bioelectrochemical systems mostly aims to be used for the generation of electricity or chemicals. The quest to generate energy that is both sustainable and …
The microbial fuel cell (MFC) is a very promising technology for generating electrical energy from anaerobic fermentation of organic and inorganic matter in wastewater using …
S Liu, H Song, X Li, F Yang - International Journal of …, 2013 - Wiley Online Library
In the present study, a new technology that coupled constructed wetland (CW) with microbial fuel cell (MFC)(CW‐MFC) was developed to convert solar energy into electricity on the …