A Novel Inorganic Sulfur Compound Metabolizing Ferroplasma-Like Population Is Suggested to Mediate Extracellular Electron Transfer

G Ni, D Simone, D Palma, E Broman, X Wu… - Frontiers in …, 2018 - frontiersin.org
Mining and processing of metal sulfide ores produces waters containing metals and
inorganic sulfur compounds such as tetrathionate and thiosulfate. If released untreated …

Biosynthesized iron sulfide nanocluster enhanced anodic current generation by sulfate reducing bacteria in microbial fuel cells

M Murugan, W Miran, T Masuda, DS Lee… - …, 2018 - Wiley Online Library
The anodic oxidation of sulfide metabolically generated from sulfate is considered to be the
primary mechanism of sulfate reducing bacteria (SRB) to contribute to the current generation …

[HTML][HTML] Electricity generation from an inorganic sulfur compound containing mining wastewater by acidophilic microorganisms

G Ni, S Christel, P Roman, ZL Wong… - Research in …, 2016 - Elsevier
Sulfide mineral processing often produces large quantities of wastewaters containing acid-
generating inorganic sulfur compounds. If released untreated, these wastewaters can cause …

Sulfur oxidation to sulfate coupled with electron transfer to electrodes by Desulfuromonas strain TZ1

T Zhang, TS Bain, MA Barlett, SA Dar… - …, 2014 - microbiologyresearch.org
Microbial oxidation of elemental sulfur with an electrode serving as the electron acceptor is
of interest because this may play an important role in the recovery of electrons from sulfidic …

Microbial community and metabolic activity in thiocyanate degrading low temperature microbial fuel cells

G Ni, S Canizales, E Broman, D Simone… - Frontiers in …, 2018 - frontiersin.org
Thiocyanate is a toxic compound produced by the mining and metallurgy industries that
needs to be remediated prior to its release into the environment. If the industry is situated at …

Sulfate-reducing mixed communities with the ability to generate bioelectricity and degrade textile diazo dye in microbial fuel cells

W Miran, J Jang, M Nawaz, A Shahzad… - Journal of hazardous …, 2018 - Elsevier
The biotreatment of recalcitrant wastes in microbial fuel cells (MFCs) rather than chemical,
physical, and advanced oxidation processes is a low-cost and eco-friendly process. In this …

Electrochemically active microorganisms from an acid mine drainage-affected site promote cathode oxidation in microbial fuel cells

C Rojas, IT Vargas, MA Bruns, JM Regan - Bioelectrochemistry, 2017 - Elsevier
The limited database of acidophilic or acidotolerant electrochemically active microorganisms
prevents advancements on microbial fuel cells (MFCs) operated under low pH. In this study …

Mixed sulfate-reducing bacteria-enriched microbial fuel cells for the treatment of wastewater containing copper

W Miran, J Jang, M Nawaz, A Shahzad, SE Jeong… - Chemosphere, 2017 - Elsevier
Microbial fuel cells (MFCs) have been widely investigated for organic-based waste/substrate
conversion to electricity. However, toxic compounds such as heavy metals are ubiquitous in …

[引用][C] Biological iron‐monosulfide production for efficient electricity harvesting from a deep‐sea metal‐reducing bacterium

R Nakamura, A Okamoto, N Tajima, GJ Newton… - …, 2010 - Wiley Online Library
Micro-organisms inhabit a broad range of natural environments through the exploitation of
multiple metabolic strategies and are able to perform most thermodynamically possible …

Isolation and Genomic Characterization of 'Desulfuromonas soudanensis WTL', a Metal- and Electrode-Respiring Bacterium from Anoxic Deep Subsurface Brine

JP Badalamenti, ZM Summers, CH Chan… - Frontiers in …, 2016 - frontiersin.org
Reaching a depth of 713 m below the surface, the Soudan Underground Iron Mine (Soudan,
MN, USA) transects a massive Archaean (2.7 Ga) banded iron formation, providing a …