Search results for "Fuels"

showing 10 items of 81 documents

“Sweet” ionic liquid gels: materials for sweetening of fuels

2018

The search for new materials to be used in desulfurisation (sweetening) of fuels is one of the main topics of current research. In this paper, we explored the possibility of using supramolecular gels obtained from the gelation of ionic liquid binary mixtures. Indeed, some ionic liquids are generally known as efficient extraction phases for desulfurisation of fuels. In rare cases, one of their main drawbacks is their partial solubility in the fuel, leading to contamination. Then, their immobilisation due to the formation of a gelatinous network may be a challenge. Ionic liquid gels were obtained by mixing certain [NTf2]−-based ionic liquids (solvents) with the ones of gluconate-based ionic l…

/dk/atira/pure/sustainabledevelopmentgoals/affordable_and_clean_energyHydrogen bondChemistrydesulfurisation of fuelsBenzothiopheneSettore CHIM/06 - Chimica Organica02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesPollutionDesulfurisation0104 chemical scienceschemistry.chemical_compoundionogelAdsorptionChemical engineeringDibenzothiopheneIonic liquidThiopheneEnvironmental ChemistrySDG 7 - Affordable and Clean EnergySolubility0210 nano-technologyionic liquidGreen Chemistry
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Isolation of acetic, propionic and butyric acid-forming bacteria from biogas plants.

2015

In this study, acetic, propionic and butyric acid-forming bacteria were isolated from thermophilic and mesophilic biogas plants (BGP) located in Germany. The fermenters were fed with maize silage and cattle or swine manure. Furthermore, pressurized laboratory fermenters digesting maize silage were sampled. Enrichment cultures for the isolation of acid-forming bacteria were grown in minimal medium supplemented with one of the following carbon sources: Na(+)-dl-lactate, succinate, ethanol, glycerol, glucose or a mixture of amino acids. These substrates could be converted by the isolates to acetic, propionic or butyric acid. In total, 49 isolates were obtained, which belonged to the phyla Firm…

0106 biological sciences0301 basic medicineFirmicutesSilageSwineClostridium cochleariumMolecular Sequence DataBioengineeringBacillusReal-Time Polymerase Chain Reaction01 natural sciencesApplied Microbiology and BiotechnologyDNA RibosomalZea maysMicrobiologyButyric acid03 medical and health sciencesAcetic acidchemistry.chemical_compoundBioreactors010608 biotechnologyRNA Ribosomal 16SAnimalsThermoanaerobacterium thermosaccharolyticumPhylogenyAcetic AcidDNA PrimersClostridiumSilagebiologyBacteriaBase SequenceGeneral Medicinebiology.organism_classificationLactic acidManure030104 developmental biologychemistryBiofuelsFermentationButyric AcidCattlePropionatesBacteriaGenome BacterialBiotechnologyJournal of biotechnology
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Mixotrophy in diatoms: Molecular mechanism and industrial potential

2021

Diatoms are microalgae well known for their high variability and high primary productivity, being responsible for about 20% of the annual global carbon fixation. Moreover, they are interesting as potential feedstocks for the production of biofuels and high-value lipids and carotenoids. Diatoms exhibit trophic flexibility and, under certain conditions, they can grow mixotrophically by combing photosynthesis and respiration. So far, only a few species of diatoms have been tested for their mixotrophic metabolism; in some cases, they produced more biomass and with higher lipid content when grown under this condition. Phaeodactylum tricornutum is the most studied diatom species for its mixotroph…

0106 biological sciences0301 basic medicinePhysiologyrespiration.photosynthesisPlant SciencePhotosynthesisSettore BIO/19 - Microbiologia Generale01 natural sciences03 medical and health sciencesBotanydiatomMicroalgaeGeneticsSettore BIO/04 - Fisiologia VegetaleBiomassPhaeodactylum tricornutumPhotosynthesisTrophic levelDiatomsBiomass (ecology)biologyfungiCarbon fixationmicroalgaeCell BiologyGeneral Medicinebiology.organism_classificationmetabolism030104 developmental biologyDiatomBiofuelBiofuelsmixotrophyMixotroph010606 plant biology & botanyPhysiologia Plantarum
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Bioethanol and lipid production from the enzymatic hydrolysate of wheat straw after furfural extraction

2018

This study investigates biofuel production from wheat straw hydrolysate, from which furfural was extracted using a patented method developed at the Latvian State Institute of Wood Chemistry. The solid remainder after furfural extraction, corresponding to 67.6% of the wheat straw dry matter, contained 69.9% cellulose of which 4% was decomposed during the furfural extraction and 26.3% lignin. Enzymatic hydrolysis released 44% of the glucose monomers in the cellulose. The resulting hydrolysate contained mainly glucose and very little amount of acetic acid. Xylose was not detectable. Consequently, the undiluted hydrolysate did not inhibit growth of yeast strains belonging to Saccharomyces cerev…

0106 biological sciences0301 basic medicineXyloseFurfural01 natural sciencesApplied Microbiology and BiotechnologyHydrolysateIndustrial Microbiology03 medical and health scienceschemistry.chemical_compoundAcetic acidBioenergy and BiofuelsYeasts010608 biotechnologyEnzymatic hydrolysisLigninFuraldehydeFood scienceCelluloseTriticumEthanolHydrolysisWheat strawGeneral MedicineStrawLipids030104 developmental biologychemistryBiofuelsFermentationFurfural productionBiodieselLignocelluloseBiotechnologyApplied Microbiology and Biotechnology
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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
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Acclimatised rumen culture for raw microalgae conversion into biogas: Linking microbial community structure and operational parameters in anaerobic m…

2019

[EN] Ruminal fluid was inoculated in an Anaerobic Membrane Reactor (AnMBR) to produce biogas from raw Scenedesmus. This work explores the microbial ecology of the system during stable operation at different solids retention times (SRT). The 16S rRNA amplicon analysis revealed that the acclimatised community was mainly composed of Anaerolineaceae, Spirochaetaceae, Lentimicrobiaceae and Cloacimonetes fermentative and hydrolytic members. During the highest biodegradability achieved in the AnMBR (62%) the dominant microorganisms were Fervidobacterium and Methanosaeta. Different microbial community clusters were observed at different SRT conditions. Interestingly, syntrophic bacteria Gelria and …

0106 biological sciencesRumenEnvironmental EngineeringMicroorganismBioengineering010501 environmental sciencesWaste Disposal Fluid01 natural sciencesMethanosaetaBioreactorsBiogasMicrobial ecologyBioenergyRNA Ribosomal 16S010608 biotechnologyMicroalgaeBioreactorAnimalsAnaerobiosisWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesbiologyAnaerobic membrane bioreactor (AnMBR)Renewable Energy Sustainability and the EnvironmentChemistryMicrobiotaGeneral MedicineBiogasMicroalgaeBiodegradationbiology.organism_classificationPulp and paper industryMicrobial population biologyBiofuels16S rRNA geneMethaneBioresource Technology
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Phytoplasmosis of bioenergy cultures

2018

The current state of biofuel distribution in EU, USA and Ukraine and its perspectives, new alternative sources of renewable energy, advantages and disadvantages of their use have been analyzed in this review. The concept growing of energy cultures in Ukraine has been described. Prospects for the use of bioenergy cultures of the 2nd generation have been considered. Particular attention has been paid to advantages and peculiarities of growing cultures with high potential of productivity - willow and poplar. The role of phytoplasmas in plant pathology has been considered; the pathways of distribution of plant phytoplasmosis, their localization in plant-host cells, typical symptoms of plants af…

0106 biological scienceswillowNatural resource economicsbusiness.industryGeneral MedicineBiology01 natural sciencesbiofuelsRenewable energy010602 entomologypoplarBiofuelBioenergyphytoplasmaphytoplasmosisbioenergy culturesbusinessEnergy sourcerenewable sources010606 plant biology & botanyMikrobiologičnij Žurnal
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Genomic characterization of Defluviitoga tunisiensis L3, a key hydrolytic bacterium in a thermophilic biogas plant and its abundance as determined by…

2016

The genome sequence of Defluviitoga tunisiensis L3 originating from a thermophilic biogas-production plant was established and recently published as Genome Announcement by our group. The circular chromosome of D. tunisiensis L3 has a size of 2,053,097bp and a mean GC content of 31.38%. To analyze the D. tunisiensis L3 genome sequence in more detail, a phylogenetic analysis of completely sequenced Thermotogae strains based on shared core genes was performed. It appeared that Petrotoga mobilis DSM 10674(T), originally isolated from a North Sea oil-production well, is the closest relative of D. tunisiensis L3. Comparative genome analyses of P. mobilis DSM 10674(T) and D. tunisiensis L3 showed …

0301 basic medicineBioengineeringBiologyApplied Microbiology and BiotechnologyGenomeComparative genome analyses03 medical and health sciencesThermophilic BacteriaGeneGeneticsWhole genome sequencingThermotogaeBacteriaThermophileGeneral Medicinebiology.organism_classification030104 developmental biologyMetagenomicsBiofuelsThermotogaeMetagenomeSugar utilizationGC-contentGenome BacterialBiotechnologyArchaea
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Influence of food waste addition over microbial communities in an Anaerobic Membrane Bioreactor plant treating urban wastewater

2018

[EN] Notorious changes in microbial communities were observed during and after the joint treatment of wastewater with Food Waste (FW) in an Anaerobic Membrane Bioreactor (AnMBR) plant. The microbial population was analysed by high-throughput sequencing of the 16S rRNA gene and dominance of Chloroflexi, Firmicutes, Synergistetes and Proteobacteria phyla was found. The relative abundance of these potential hydrolytic phyla increased as a higher fraction of FW was jointly treated. Moreover, whereas Specific Methanogenic Activity (SMA) rose from 10 to 51 mL CH4 g(-1) VS, Methanosarcinales order increased from 34.0% over 80.0% of total Archaea, being Methanosaeta the dominant genus. The effect o…

0301 basic medicineEnvironmental EngineeringPopulationBiogasWastewater010501 environmental sciencesManagement Monitoring Policy and LawWaste Disposal Fluid01 natural sciencesMethanosaeta03 medical and health sciencesBioreactorsIlluminaBiogasRNA Ribosomal 16SAnaerobic digestionMicrobial communityBioreactorAnaerobiosisFood scienceeducationWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental scienceseducation.field_of_studybiologyChemistryFood wasteGeneral Medicinebiology.organism_classificationAnaerobic digestionAnMBR030104 developmental biologyWastewaterMicrobial population biologyBiofuelsMethanosarcinalesFood AdditivesMethaneJournal of Environmental Management
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Metabolic and process engineering for biodesulfurization in Gram-negative bacteria

2017

32 p.-2 fig.-1 tab.

0301 basic medicineFossil FuelsGram-negative bacteriaScale-up030106 microbiologychemistry.chemical_elementBioengineeringThiophenesBiologyApplied Microbiology and BiotechnologyMetabolic engineering03 medical and health scienceschemistry.chemical_compoundPseudomonasOperonProcess engineering2. Zero hungerSulfur Compoundsbusiness.industryPseudomonasGeneral Medicinebiology.organism_classificationSulfurEnvironmentally friendly6. Clean waterKineticsBiodesulfurizationBiodegradation EnvironmentalchemistryDibenzothiopheneGram-negative bacteriaGenetic engineeringbusinessOrganosulfur compoundsMetabolic engineeringBacteriaMetabolic Networks and PathwaysDibenzothiopheneBiotechnology
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