0000000000464064

AUTHOR

Patrice Ramm

showing 5 related works from this author

Microbial communities involved in biogas production exhibit high resilience to heat shocks

2017

We report here the impact of heat-shock treatments (55 and 70 °C) on the biogas production within the acidification stage of a two-stage reactor system for anaerobic digestion and biomethanation of grass. The microbiome proved both taxonomically and functionally very robust, since heat shocks caused minor community shifts compared to the controls, and biogas yield was not decreased. The strongest impact on the microbial profile was observed with a combination of heat shock and low pH. Since no transient reduction of microbial diversity occured after the shock, biogas keyplayers, but also potential pathogens, survived the treatment. All along the experiment, the heat-resistant bacterial prof…

0106 biological sciencesEnvironmental EngineeringFirmicutesBioengineering010501 environmental sciencesBiology01 natural sciencesBioreactorsBiogas010608 biotechnologyBioreactorAnaerobiosisFood scienceWaste Management and Disposal0105 earth and related environmental sciencesBacteriaRenewable Energy Sustainability and the EnvironmentEcologyMicrobiotaBacteroidetesGeneral Medicinebiology.organism_classificationAnaerobic digestionBiofuelBiofuelsProteobacteriaBacteroidesBioresource Technology
researchProduct

Ammonia removal during leach-bed acidification leads to optimized organic acid production from chicken manure

2020

This work demonstrates the suitability of nitrogen removal during anaerobic acidification in batch configuration for a more efficient pre-treatment of chicken manure prior to anaerobic digestion. High loading rates corresponding to a total nitrogen input between 6.3 and 9.5 g L−1 allowed successful suppression of methanogenic archaea. To eliminate nitrogen, NH3-stripping and MAP (magnesium ammonium phosphate hexahydrate) precipitation were compared. In spite of decreased cell quantities detected using qPCR, removal of nitrogen caused an increase in volatile fatty acid (VFA) formation from 13 to 19%. The highest nitrogen removal during acidification (up to 29%) was achieved with three consec…

Methanogenesis020209 energychemistry.chemical_element02 engineering and technologyAcidificationAmmoniachemistry.chemical_compoundBiogasAnaerobic digestion0202 electrical engineering electronic engineering information engineering0601 history and archaeologychemistry.chemical_classification060102 archaeologybiologyRenewable Energy Sustainability and the Environment06 humanities and the artsbiology.organism_classificationBiogas productionNitrogenChicken manureAnaerobic digestionchemistryEnvironmental chemistryChicken manureArchaeaOrganic acid
researchProduct

Complete Genome Sequence of a New Ruminococcaceae Bacterium Isolated from Anaerobic Biomass Hydrolysis

2018

ABSTRACT A new Ruminococcaceae bacterium, strain HV4-5-B5C, participating in the anaerobic digestion of grass, was isolated from a mesophilic two-stage laboratory-scale leach bed biogas system. The draft annotated genome sequence presented in this study and 16S rRNA gene sequence analysis indicated the affiliation of HV4-5-B5C with the family Ruminococcaceae outside recently described genera.

anaerobic digestion0301 basic medicine570Ruminococcaceae030106 microbiology610BiomassBiologyArticle03 medical and health sciencesHydrolysisBiogasbacterial genomeBotanyGeneticsProkaryotesMolecular BiologyWhole genome sequencingwhole genome sequencingnonhumanmicrobial biomassbacterial strain16S ribosomal RNAAnaerobic digestion030104 developmental biologyhydrolysisAnaerobic exerciseMesophileGenome Announcements
researchProduct

Complete genome sequence of a new Bacteroidaceae bacterium isolated from anaerobic biomass digestion

2019

Here, we present the genome sequence and annotation of HV4-6-C5C, a bacterial strain isolated from a mesophilic two-stage laboratory-scale leach bed biogas reactor system. Strain HV4-6-C5C may represent a new genus of the family Bacteroidaceae and may have a key role in acidogenesis and acetogenesis steps during anaerobic biomass digestion.

Whole genome sequencing0303 health sciencesAcidogenesisbiologyChemistry030302 biochemistry & molecular biologyBiomassbiology.organism_classification7. Clean energycomplex mixtures6. Clean water03 medical and health sciencesImmunology and Microbiology (miscellaneous)BiochemistryBiogasAcetogenesisGeneticsMolecular BiologyBacteroidaceaeBacteria030304 developmental biologyMesophile
researchProduct

Complete Genome Sequence of a New Clostridium sp. Isolated from Anaerobic Digestion and Biomethanation

2020

Here, we present the genome sequence and annotation of the bacterial strain HV4-5-A1G, a potentially new Clostridium species. Based on its genomic data, this strain may act as a keystone microorganism in the hydrolysis of complex polymers, as well as in the different acidogenesis and acetogenesis steps during anaerobic digestion.

Genome SequencesMicrobiology Resource Announcements
researchProduct