[HTML][HTML] Microbial electrochemical systems for bioelectricity generation: Current state and future directions

F Mohammadi, GR Vakili-Nezhaad, N Al-Rawahi… - Results in …, 2023 - Elsevier
Increasing environmental pollution is a major concern, driven by fossil fuel consumption and
growing energy demands. Energy production from various waste materials such as …

A novel self-bonding 3D carbon particle bioanode derived from agricultural residue for improving the enrichment of electroactive bacteria in microbial fuel cell

S Liu, Z Li, D Liang, C Yan, W He, Y Feng - Chemical Engineering Journal, 2023 - Elsevier
Many researchers focus on regulating the structure and surface properties of electrode
materials to improve their biocompatibility, promote the growth of electroactive bacteria and …

Analyzing the trends and hotspots of biochar's applications in agriculture, environment, and energy: a bibliometrics study for 2022 and 2023

P Wu, Y Fu, T Vancov, H Wang, Y Wang, W Chen - Biochar, 2024 - Springer
Biochar, produced from the thermochemical conversion of biomass waste, has various
applications owing to its broad utility and advantageous properties. This study employs a …

[HTML][HTML] Vancomycin-encapsulated hydrogel loaded microarc-oxidized 3D-printed porous Ti6Al4V implant for infected bone defects: Reconstruction, anti-infection, and …

T Zhang, W Zhou, W Yang, J Bi, H Li, X Gao, B Zhang… - Bioactive Materials, 2024 - Elsevier
Infected bone defect is a formidable clinical challenge. Conventional approaches to
prevention and treatment for infected bone defects are unsatisfactory. The key elements of …

Ceramic Foams with Controlled Geometries Through 3D‐Printed Sacrificial Templates

E Persembe, C Parra-Cabrera… - Advanced Engineering …, 2023 - Wiley Online Library
Powder‐based 3D printing was combined with sacrificial templating to realize highly porous
yttria‐stabilized ZrO2 (YSZ) ceramic foam objects with well‐defined geometries. The porous …

Upgrading algae waste into 3-D bio-cathode to enhance acetate synthesis by microbial electrosynthesis

Q Cao, C Zhang, P Wu, P Ding, H Sun, S Qing… - Chemical Engineering …, 2024 - Elsevier
Microbial electrosynthesis (MES) technology has already obtained widespread attraction for
CO 2 conversion and high value-added chemicals production. However, MES has been …

Co-capture and recovery of ammonia and CO2 driven by microbial electrolysis system coupling with mineral carbon sequestration by industrial wastes

S Liu, G Ding, R Gu, J Hao, P Liu, W Qin, Y Yu… - Resources …, 2025 - Elsevier
In response to escalating environmental challenges, innovative solutions for collaborative
waste management and recycling have become imperative. The eco-friendly microbial …

Co-capture and resource recovery of ammonia and carbon dioxide in microbial electrolysis system with an assisted carbon capacitor chamber

S Liu, G Ding, J Hao, P Liu, W Qin, Y Yu, Y Han… - Journal of Cleaner …, 2024 - Elsevier
Human activities lead to the excessive input of carbon and nitrogen elements into the water
and atmosphere. The recovery and recycling of carbon and nitrogen have been gaining …