Improvement of zero waste sustainable recovery using microbial energy generation systems: A comprehensive review

W Apollon, I Rusyn, N González-Gamboa… - Science of The Total …, 2022 - Elsevier
Microbial energy generation systems, ie, bioelectrochemical systems (BESs) are promising
sustainable technologies that have been used in different fields of application such as …

Harmless and resourceful utilization of solid waste: Multi physical field regulation in the microbiological treatment process of solid waste treatment

M He, F Wu, G Qu, X Liu - Environmental Research, 2023 - Elsevier
Solid waste (SW) treatment methods mainly include physical, chemical, and biological
methods, while physical and chemical methods have advantages such as fast effectiveness …

Bench-scale injection of magnesium hydroxide encapsulated iron nanoparticles (nFe0@ Mg (OH) 2) into porous media for Cr (VI) removal from groundwater

I Maamoun, O Falyouna, R Eljamal, MF Idham… - Chemical Engineering …, 2023 - Elsevier
Chromium (VI) contamination in groundwater represents a significant threat to the current
and future groundwater resources. Thus, in this work detailed investigation was conducted …

TEMPO oxidized cellulose nanocrystal (TOCNC) scaffolded nanoscale zero-valent iron (nZVI) for enhanced chromium removal

X Hu, M Song, S Li, Y Chu, W Zhang, Z Deng - Chemosphere, 2023 - Elsevier
The conventional carboxymethyl cellulose (CMC) stabilization hampered available active
sites of adsorption and reduction, due to irregular shape of nanoscale zero-valent iron (nZVI) …

High electricity generation and wastewater treatment enhancement using a microbial fuel cell equipped with conductive and anti-biofouling CuGNSs/SPES proton …

B Shirvani, M Rahimi, S Zinadini - Energy Conversion and Management, 2023 - Elsevier
This research is the first to examine the use of biosynthesized Cu-Graphene nanosheets
(CuGNSs) in a sulfonated polyethersulfone (SPES) matrix to fabricate an anti-biofouling …

Biochar-supported Fe3C nanoparticles with enhanced interfacial contact as high-performance binder-free anode material for microbial fuel cells

B Song, Q Wang, J Ali, Z Wang, L Wang, J Wang… - Chemical Engineering …, 2023 - Elsevier
Microbial fuel cells (MFCs) are innovative devices to extract renewable energy using
exoelectrogens from wastewater. The performance of MFCs mainly depends on the electron …

Exogenous electric field as a biochemical driving factor for extracellular electron transfer: Increasing power output of microbial fuel cell

H Liu, T Chen, J Li - Energy Conversion and Management, 2024 - Elsevier
Although microbial fuel cells (MFCs) offer a promising avenue for clean power production,
they are hindered by inefficient extracellular electron transfer (EET), thereby resulting in a …

[HTML][HTML] Nanoscale zero-valent iron (nZVI) for heavy metal wastewater treatment: A perspective

S Li, L Li, W Zhang - Engineering, 2024 - Elsevier
Industries such as non-ferrous metal smelting discharge billions of gallons of highly toxic
heavy metal wastewater (HMW) worldwide annually, posing a severe challenge to …

Activation of sulfite via zero-valent iron-manganese bimetallic nanomaterials for enhanced sulfamethazine removal in aqueous solution: Key roles of Fe/Mn molar ratio …

J Xiao, R Li, H Dong, Y Li, L Li, S Xiao, Z Jin - Separation and Purification …, 2022 - Elsevier
In this study, the nano zero-valent iron-manganese (NZVIM) bimetallic materials with
different Fe/Mn molar ratios were synthesized by one-step liquid-phase reduction method …

Physicochemical effects of sulfur precursors on sulfidated amorphous zero-valent iron and its enhanced mechanisms for Cr (VI) removal

Z Lin, J Xu, A Zhu, C He, C Wang, C Zheng - Langmuir, 2023 - ACS Publications
Amorphous zerovalent iron (AZVI) has gained considerable attention due to its remarkable
reactivity, but there is limited research on sulfidated amorphous zerovalent iron (SAZVI) and …