Electroactive microorganism-assisted remediation of groundwater contamination: Advances and challenges

H Feng, W Yang, Y Zhang, Y Ding, L Chen… - Bioresource …, 2023 - Elsevier
Groundwater contamination has become increasingly prominent, therefore, the development
of efficient remediation technology is crucial for improving groundwater quality …

[HTML][HTML] Microbial-derived salt-tolerant proteases and their applications in high-salt traditional soybean fermented foods: a review

H Yao, S Liu, T Liu, D Ren, Z Zhou, Q Yang… - Bioresources and …, 2023 - Springer
Different microorganisms can produce different proteases, which can adapt to different
industrial requirements such as pH, temperature, and pressure. Salt-tolerant proteases …

Establishment of a halotolerant bioremediation platform from Halomonas cupida using synthetic biology approaches

W Zhao, W Xiong, Y Liu, H Guo, S Wang… - Chemical Engineering …, 2023 - Elsevier
At present, the vast majority of organic pollutants-degrading microbes are unable to grow
and lose their degradation capability under high-salt conditions owing to lack of resistance …

Evolution of aniline degradation and nitrogen removal performance in electro-enhanced sequence batch reactor under salinity stress: Sludge characteristics and …

B Lin, B Tan, Q Zhang, M Li, J Feng, J Su, J He… - Environmental …, 2023 - Elsevier
To explore the influence mechanism of different concentrations of salinity on the electro-
enhanced aniline biodegradation system, a control group and experimental groups (0 …

Mechanistic insight into enhanced methyl orange degradation by Raoultella planticola/MoS2 biohybrid: Implication for electron transfer and microbial metabolism

X Wen, YN Hou, J Guo, Z Liu, N Ren, AJ Wang… - Journal of Cleaner …, 2024 - Elsevier
The biodecolorization of traditional azo dyes is typically hindered by low electron transfer
rate, a challenge that can be addressed by incorporating nanoparticles with redox properties …

Effect of an electro-assisted biochemical cycle reactor on bio-oxidation of gold ore

T Yang, M Dai, G Tang, Z Guo, Y Yang, H Jiao - Minerals Engineering, 2024 - Elsevier
The study investigated the leaching efficiency and microbial flora of an electro-assisted
biochemical cycle reactor were investigated for gold ore bio-oxidation. The results showed …

Enhancing microbial salt tolerance through low-voltage stimulation for improved p-chloronitrobenzene (p-CNB) removal in high-salinity wastewater

L Chen, LT Zhou, YC Ding, D Wu, HJ Feng - Science of the Total …, 2023 - Elsevier
As an important raw material for the synthesis of chemical and pharmaceutical, hazardous
carcinogen p-chloronitrobenzene (p-CNB) has been widely found in high-salinity …

Mechanism insights into salt tolerance strengthened by CoCe encapsulated N-doped CNTs cathode in microbial fuel cell

M Fan, LS Gbofuiah, L Du, N Gao, J Liu, Y Chen… - Carbon, 2024 - Elsevier
To address the challenges of bioanode deactivation and instability of cathode catalysts in
the treatment of high-salt organic wastewater using microbial fuel cells (MFCs), a series of …

Low-voltage stimulated denitrification performance of high-salinity wastewater using halotolerant microorganisms

L Chen, H Xiang, LT Zhou, YQ Zhang, YC Ding… - Bioresource …, 2024 - Elsevier
Nitrate is a common contaminant in high-salinity wastewater, which has adverse effects on
both the environment and human health. However, conventional biological treatment …

Bioelectrochemical stability improvement by Ce–N modified carbon-based cathode in high-salt stress and mechanism research

M Fan, L Du, H Li, Q Yuan, X Wu, Y Chen… - Journal of Environmental …, 2023 - Elsevier
Although microbial fuel cells (MFCs) have potential for high-salt wastewater treatment, their
application is limited by poor salt tolerance, deactivation and unstable catalytic performance …