4.8 Article

Effects of ammonia on electrochemical active biofilm in microbial electrolysis cells for synthetic swine wastewater treatment

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Agricultural Engineering

Microbial separator allied biocathode supports simultaneous nitrification and denitrification for nitrogen removal in microbial electrochemical system

Chao Li et al.

Summary: The microbial separator combined with biocathode is a promising construction mode for pilot-scale Microbial Electrochemical Systems (MES), which can enhance nitrogen metabolism efficiency. Research shows that SNDR is the dominant pathway for nitrogen metabolism, and the microbial separator can compensate for the shortcomings of simultaneous nitrification and denitrification.

BIORESOURCE TECHNOLOGY (2022)

Article Engineering, Environmental

The anaerobic and starving treatment eliminates filamentous bulking and recovers biocathode biocatalytic activity with residual organic loading in microbial electrochemical system

Chao Li et al.

Summary: The periodic anaerobic and starving treatment effectively regulated the operation of microbial electrochemical systems by eliminating filamentous bulking, rebuilding an electrochemically active cathode biofilm, increasing current density and power density, reducing effluent chemical oxygen demand, as well as enhancing biomass adhesion ratio and biomass specific biocatalytic activity. It also decreased oxygen diffusion resistance and charge transfer resistance, maintaining a functional cathodic bio-community.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Engineering, Environmental

Remediation of nitrate contamination by membrane hydrogenotrophic denitrifying biofilm integrated in microbial electrolysis cell

Dandan Liang et al.

Summary: Biological denitrification in water lacking electron donors is usually limited, but can be effectively improved by using gas diffusion membrane integrated microbial electrolysis cells (MECs) to generate hydrogen from organic wastes for cost-efficient denitrification. Different materials of MECs achieved high overall nitrogen removal rates of 90%-95% at all applied voltages, with decreasing voltage significantly improving electron utilization efficiency. Integration of MEC with gas diffusion membrane greatly improved total nitrogen removal by 40%, with dominant hydrogenotrophic denitrifiers facilitating nitrogen removal and higher abundance of functional denitrification related genes predicted by PICRUSt2 based on 16S rRNA gene data.

WATER RESEARCH (2021)

Article Engineering, Environmental

Influence of Anaerobic Mesophilic and Thermophilic Digestion on Cytotoxicity of Swine Wastewaters

Nedal Massalha et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2020)

Review Agricultural Engineering

Recent advancement on biological technologies and strategies for resource recovery from swine wastewater

Hai-Hsuan Cheng et al.

BIORESOURCE TECHNOLOGY (2020)

Article Environmental Sciences

Removal of antibiotics by sequencing-batch membrane bioreactor for swine wastewater treatment

Zhicheng Xu et al.

SCIENCE OF THE TOTAL ENVIRONMENT (2019)

Article Engineering, Environmental

Changes in Glucose Fermentation Pathways as a Response to the Free Ammonia Concentration in Microbial Electrolysis Cells

Mohamed Mahmoud et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2017)

Article Chemistry, Physical

Next generation digestion: Complementing anaerobic digestion (AD) with a novel microbial electrolysis cell (MEC) design

Amro Hassanein et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2017)

Review Agricultural Engineering

Microbial electrolysis cells for waste biorefinery: A state of the art review

Lu Lu et al.

BIORESOURCE TECHNOLOGY (2016)

Review Green & Sustainable Science & Technology

Microbial electrolysis cells: An emerging technology for wastewater treatment and energy recovery. From laboratory to pilot plant and beyond

A. Escapa et al.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2016)

Article Engineering, Environmental

A model for methane production in anaerobic digestion of swine wastewater

Hongnan Yang et al.

WATER RESEARCH (2016)

Article Engineering, Environmental

Effective methods for extracting extracellular polymeric substances from Shewanella oneidensis MR-1

You-Fen Dai et al.

WATER SCIENCE AND TECHNOLOGY (2016)

Article Engineering, Environmental

Active H2 Harvesting Prevents Methanogenesis in Microbial Electrolysis Cells

Lu Lu et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS (2016)

Article Chemistry, Multidisciplinary

Conductivity of individual Geobacter pili

Ramesh Y. Adhikari et al.

RSC ADVANCES (2016)

Article Marine & Freshwater Biology

Growth and membrane permeability of two submersed macrophytes in response to ammonium enrichment

Aiwen Zhong et al.

AQUATIC BIOLOGY (2013)

Review Biochemistry & Molecular Biology

Ammonia inhibition in anaerobic digestion: A review

Orhan Yenigun et al.

PROCESS BIOCHEMISTRY (2013)

Article Biotechnology & Applied Microbiology

Enrichment of Microbial Electrolysis Cell Biocathodes from Sediment Microbial Fuel Cell Bioanodes

John M. Pisciotta et al.

APPLIED AND ENVIRONMENTAL MICROBIOLOGY (2012)

Article Electrochemistry

Enhance electron transfer and performance of microbial fuel cells by perforating the cell membrane

Jing Liu et al.

ELECTROCHEMISTRY COMMUNICATIONS (2012)

Review Chemistry, Multidisciplinary

Electroactive biofilms: Current status and future research needs

Abhijeet P. Borole et al.

ENERGY & ENVIRONMENTAL SCIENCE (2011)

Article Chemistry, Physical

Ammonia inhibition of electricity generation in single-chambered microbial fuel cells

Joo-Youn Nam et al.

JOURNAL OF POWER SOURCES (2010)

Article Chemistry, Physical

Hydrogen production from cellulose in a two-stage process combining fermentation and electrohydrogenesis

Elodie Lalaurette et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2009)

Article Engineering, Environmental

Hydrogen production in a single chamber microbial electrolysis cell lacking a membrane

Douglas Call et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2008)

Review Engineering, Environmental

Microbial Electrolysis Cells for High Yield Hydrogen Gas Production from Organic Matter

Bruce E. Logan et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2008)

Article Multidisciplinary Sciences

Shewanella Secretes flavins that mediate extracellular electron transfer

Enrico Marsili et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2008)

Article Engineering, Environmental

Hydrogen production using single-chamber membrane-free microbial electrolysis cells

Hongqiang Hu et al.

WATER RESEARCH (2008)

Article Biochemistry & Molecular Biology

c-Type cytochrome-dependent formation of U(IV) nanoparticles by Shewanella oneidensis

Matthew J. Marshall et al.

PLOS BIOLOGY (2006)

Article Multidisciplinary Sciences

Extracellular electron transfer via microbial nanowires

G Reguera et al.

NATURE (2005)

Article Biotechnology & Applied Microbiology

Methanogenic diversity in anaerobic bioreactors under extremely high ammonia levels

B Calli et al.

ENZYME AND MICROBIAL TECHNOLOGY (2005)

Article Engineering, Environmental

Fluorescence excitation - Emission matrix regional integration to quantify spectra for dissolved organic matter

W Chen et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2003)