Psychrophilic (< 20 degrees C) anaerobic digestion (AD) represents an attractive alternative to mesophilic wastewater treatment. In order to investigate the AD microbiome response to temperature change, with particular emphasis on methanogenic archaea, duplicate laboratory-scale AD bioreactors were operated at 37 degrees C followed by a temperature drop to 15 degrees C. A volatile fatty acid-based wastewater (composed of propionic acid, butyric acid, acetic acid and ethanol) was used to provide substrates representing the later stages of AD. Community structure was monitored using 16S rRNA gene clone libraries, as well as DNA and cDNA-based DGGE analysis, while the abundance of relevant methanogens was followed using qPCR. In additio...
Anaerobic digestion (AD) technologies represent sustainable and appropriate systems for the treatmen...
Temperature is a major factor determining the performance of the anaerobic digestion process. The mi...
In this study, we investigated the microbial community dynamics in thermal acidogenesis using meso p...
Psychrophilic (< 20 degrees C) anaerobic digestion (AD) represents an attractive alternative ...
Anaerobic digestion (AD) is an attractive wastewater treatment technology, leading to the generation...
Granular biomass was temporally sampled from a cold (4-15 degrees C) anaerobic bioreactor, which was...
Anaerobic digestion (AD) accomplishes degradation of complex organics in wastewater to methane and C...
Anaerobic granulation describes the self-immobilisation of methanogenic consortia into dense, partic...
Anaerobic treatment is an attractive option for the biological treatment of municipal wastewater. In...
Low-temperature anaerobic digestion (LTAD) technology is underpinned by a diverse microbial communit...
Upflow anaerobic sludge blanket (UASB) reactor is one of the most applied technologies for various h...
Low-temperature anaerobic digestion (LTAD) presents a sustainable, cost-efficient technology for the...
Background: Temperature is an important factor determining the performance and stability of the anae...
Stability of biogas production is highly dependent on the microbial community composition of the bio...
Anaerobic digestion of bioorganic waste is a complex process. Many inhibitors, like accumulation of ...
Anaerobic digestion (AD) technologies represent sustainable and appropriate systems for the treatmen...
Temperature is a major factor determining the performance of the anaerobic digestion process. The mi...
In this study, we investigated the microbial community dynamics in thermal acidogenesis using meso p...
Psychrophilic (< 20 degrees C) anaerobic digestion (AD) represents an attractive alternative ...
Anaerobic digestion (AD) is an attractive wastewater treatment technology, leading to the generation...
Granular biomass was temporally sampled from a cold (4-15 degrees C) anaerobic bioreactor, which was...
Anaerobic digestion (AD) accomplishes degradation of complex organics in wastewater to methane and C...
Anaerobic granulation describes the self-immobilisation of methanogenic consortia into dense, partic...
Anaerobic treatment is an attractive option for the biological treatment of municipal wastewater. In...
Low-temperature anaerobic digestion (LTAD) technology is underpinned by a diverse microbial communit...
Upflow anaerobic sludge blanket (UASB) reactor is one of the most applied technologies for various h...
Low-temperature anaerobic digestion (LTAD) presents a sustainable, cost-efficient technology for the...
Background: Temperature is an important factor determining the performance and stability of the anae...
Stability of biogas production is highly dependent on the microbial community composition of the bio...
Anaerobic digestion of bioorganic waste is a complex process. Many inhibitors, like accumulation of ...
Anaerobic digestion (AD) technologies represent sustainable and appropriate systems for the treatmen...
Temperature is a major factor determining the performance of the anaerobic digestion process. The mi...
In this study, we investigated the microbial community dynamics in thermal acidogenesis using meso p...