Enhancing Extracellular Electron Transfer of Geobacter sulfurreducens in Bioelectrochemical Systems Using N-Doped Fe3O4@Carbon Dots DOI
Jun Cheng,

Rongxin Xia,

Hui Li

и другие.

ACS Sustainable Chemistry & Engineering, Год журнала: 2022, Номер 10(12), С. 3935 - 3950

Опубликована: Март 16, 2022

A nanomaterial–living cell biohybrid system is an efficient energy conversion method due to enhanced interactions between inorganic materials and bacteria. However, inefficient electron transfer at the interface of remains as a limiting factor. Herein, inorganic–biologic hybrid was proposed by combining typical electroactive bacterium, Geobacter sulfurreducens, highly conductive N-doped Fe3O4 with carbon dot shell (Fe3O4@CD) boost in bioelectrochemical systems (including microbial electrolytic cells electro-methanogenesis). One-pot-synthesized Fe3O4@CDs extracellular forming interaction network proteins inside outside G. sulfurreducens. In cell, maximum current Fe3O4@CDs-fed 6.37 times higher than that control group without nanoparticle addition. This performance accompanied bioactivity, cellular adhesion, lower biofilm resistance. The sulfurreducens–Fe3O4@CDs biohybrids supplemented during electro-methanogenesis remained stable on anodes, which promoted syntrophy. metabolic methanogenesis pathways are strongly related ability demonstrates new strategy promote through constructed system.

Язык: Английский

Enhancing fermentation yield for biohydrogen production using eco-friendly nickel and cobalt ferrite nanoparticles DOI Creative Commons
Oznur Yildirim, Bestami Özkaya

Biomass Conversion and Biorefinery, Год журнала: 2024, Номер unknown

Опубликована: Фев. 16, 2024

Abstract In recent years, the sustainable metal oxide nanoparticle synthesis using various plant leaf extracts as reducing agents has gained significant attention in field of renewable energy research. This study explores biohydrogen yield enhancement potential two types nanoparticles derived from olive leaves. Synthesized are characterized by SEM, EDX, and FTIR spectrum analyses; these exhibit mean dimensions 385 nm 292 nm. Fermentation experiments were conducted varying ratios ranging 50 to 500 mg/L determine impact on bio-hydrogen yield. Remarkably, with usage 200 nickel ferrite boosted 47%, while cobalt increased it 41%. These findings highlight sustainably synthesized nanoparticles, especially those leaves, catalysts for enhancing production dark fermentation processes. research offers promising insights into eco-friendly bioenergy generation.

Язык: Английский

Процитировано

8

Cobalt ferrate nanoparticles improved dark fermentation for hydrogen evolution DOI
Jishi Zhang, Wenqing Li, Junwei Yang

и другие.

Journal of Cleaner Production, Год журнала: 2021, Номер 316, С. 128275 - 128275

Опубликована: Июль 12, 2021

Язык: Английский

Процитировано

55

Dual production of hydrogen and biochar from industrial effluent containing phenolic compounds DOI
Mahmoud Nasr, Ahmed Tawfik, Hanem M. Awad

и другие.

Fuel, Год журнала: 2021, Номер 301, С. 121087 - 121087

Опубликована: Май 24, 2021

Язык: Английский

Процитировано

46

Intensification of Acidogenic Fermentation for the Production of Biohydrogen and Volatile Fatty Acids—A Perspective DOI Creative Commons
Sanjay Nagarajan, Rhys Jon Jones,

Lucy Oram

и другие.

Fermentation, Год журнала: 2022, Номер 8(7), С. 325 - 325

Опубликована: Июль 11, 2022

Utilising ‘wastes’ as ‘resources’ is key to a circular economy. While there are multiple routes waste valorisation, anaerobic digestion (AD)—a biochemical means breakdown organic wastes in the absence of oxygen—is favoured due its capacity handle variety feedstocks. Traditional AD focuses on production biogas and fertiliser products; however, such low-value products combined with longer residence times slow kinetics have paved way explore alternative product platforms. The intermediate steps conventional AD—acidogenesis acetogenesis—have capability produce biohydrogen volatile fatty acids (VFA) which gaining increased attention higher energy density (than biogas) market value, respectively. This review hence focusses specifically VFAs from wastes. With revived interest these products, critical analysis recent literature needed establish current status. Therefore, intensification strategies this area involving three main streams: substrate pre-treatment, parameters recovery discussed detail based reported last decade. techno-economic aspects future pointers clearly highlighted drive research forward relevant areas.

Язык: Английский

Процитировано

35

Enhancing Extracellular Electron Transfer of Geobacter sulfurreducens in Bioelectrochemical Systems Using N-Doped Fe3O4@Carbon Dots DOI
Jun Cheng,

Rongxin Xia,

Hui Li

и другие.

ACS Sustainable Chemistry & Engineering, Год журнала: 2022, Номер 10(12), С. 3935 - 3950

Опубликована: Март 16, 2022

A nanomaterial–living cell biohybrid system is an efficient energy conversion method due to enhanced interactions between inorganic materials and bacteria. However, inefficient electron transfer at the interface of remains as a limiting factor. Herein, inorganic–biologic hybrid was proposed by combining typical electroactive bacterium, Geobacter sulfurreducens, highly conductive N-doped Fe3O4 with carbon dot shell (Fe3O4@CD) boost in bioelectrochemical systems (including microbial electrolytic cells electro-methanogenesis). One-pot-synthesized Fe3O4@CDs extracellular forming interaction network proteins inside outside G. sulfurreducens. In cell, maximum current Fe3O4@CDs-fed 6.37 times higher than that control group without nanoparticle addition. This performance accompanied bioactivity, cellular adhesion, lower biofilm resistance. The sulfurreducens–Fe3O4@CDs biohybrids supplemented during electro-methanogenesis remained stable on anodes, which promoted syntrophy. metabolic methanogenesis pathways are strongly related ability demonstrates new strategy promote through constructed system.

Язык: Английский

Процитировано

33