Bioelectrochemical metal recovery from wastewater: a review

H Wang, ZJ Ren - Water research, 2014 - Elsevier
Metal contaminated wastewater posts great health and environmental concerns, but it also
provides opportunities for precious metal recovery, which may potentially make treatment …

Mining and socio-ecological systems: A systematic review of Sub-Saharan Africa

XT Tiamgne, FK Kalaba, VR Nyirenda - Resources Policy, 2022 - Elsevier
This study adapted a socio-ecological framework to review Drivers of mining Activities, the
environmental Pressures, the State of changes, their Impacts on human Welfare, and the …

Third generation in bio-electrochemical system research–A systematic review on mechanisms for recovery of valuable by-products from wastewater

DA Jadhav, SG Ray, MM Ghangrekar - Renewable and Sustainable …, 2017 - Elsevier
Bio− electrochemical system (BES) mainly focused on bio− energy generation in the form of
methane and bio− hydrogen while treating wastewater in anodic chamber. The potential of …

[HTML][HTML] Metal recovery by microbial electro-metallurgy

X Dominguez-Benetton, JC Varia, G Pozo… - Progress in Materials …, 2018 - Elsevier
Raw metals are fundamental to the global economy as they are essential to maintain the
quality of our life as well as industrial performance. A number of metal-bearing aqueous …

Industrial acid mine drainage and municipal wastewater co-treatment by dual-chamber microbial fuel cells

LS Vélez-Pérez, J Ramirez-Nava… - International Journal of …, 2020 - Elsevier
The objective of this study was to evaluate performance of a co-treatment method of
industrial acid mine drainage (I-AMD) and municipal wastewater (MWW) by dual-chamber …

Heavy metal recovery combined with H2 production from artificial acid mine drainage using the microbial electrolysis cell

H Luo, G Liu, R Zhang, Y Bai, S Fu, Y Hou - Journal of hazardous materials, 2014 - Elsevier
The aim of this study was to utilize the microbial electrolysis cell (MEC) for metal removal
from acid mine drainage (AMD) and simultaneous H 2 production. A dual-chamber MEC …

Microalgae–bacteria biofilms: a sustainable synergistic approach in remediation of acid mine drainage

S Abinandan, SR Subashchandrabose… - Applied microbiology …, 2018 - Springer
Microalgae and bacteria offer a huge potential in delving interest to study and explore
various mechanisms under extreme environments. Acid mine drainage (AMD) is one such …

[HTML][HTML] Zinc removal and recovery from industrial wastewater with a microbial fuel cell: Experimental investigation and theoretical prediction

SS Lim, JM Fontmorin, HT Pham, E Milner… - Science of the Total …, 2021 - Elsevier
Microbial fuel cells (MFCs) that simultaneously remove organic contaminants and
recovering metals provide a potential route for industry to adopt clean technologies. In this …

Bioelectrochemical systems-based metal recovery: Resource, conservation and recycling of metallic industrial effluents

B Hemdan, VK Garlapati, S Sharma, S Bhadra… - Environmental …, 2022 - Elsevier
Metals represent a large proportion of industrial effluents, which due to their high hazardous
nature and toxicity are responsible to create environmental pollution that can pose …

Sulfate-reducing bacteria-based bioelectrochemical system for heavy metal wastewater treatment: Mechanisms, operating factors, and future challenges

H Wang, XH Wang, Y Zhang, D Wang, X Long… - Journal of …, 2023 - Elsevier
Heavy metal wastewater (HMW) has resulted in many adverse environmental issues.
However, bioelectrochemical system (BES) has been recognized as an effective technology …