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showing 10 items of 980 documents

Development and optimization of gas chromatography coupled to high resolution mass spectrometry based method for the sensitive determination of Dechl…

2017

An analytical method has been developed for the trace determination of 10 dechlorane-related compounds (DRCs) in food products by gas chromatography - high resolution mass spectrometry (GC-HRMS). The highest sensitivity of this instrumental analysis method was achieved by selection of the GC column type, optimization of the heated zones within the instrument, and adjusting the electron impact energy. The efficiency of solid phase extraction as clean-up procedure was also optimized. Two different types of cartridges - neutral silica gel and Florisil®, as well as seven organic solvents or their mixtures - n-hexane, cyclohexane, acetone, toluene, n-hexane/ethyl acetate, n-hexane/acetone, and n…

Environmental EngineeringHealth Toxicology and MutagenesisAnalytical chemistryEthyl acetateFood Contamination010501 environmental sciencesMass spectrometry01 natural sciencesGas Chromatography-Mass SpectrometryMass Spectrometrychemistry.chemical_compoundFish ProductsHydrocarbons ChlorinatedAnimalsHexanesEnvironmental ChemistryPolycyclic CompoundsSolid phase extractionElectron ionizationFlame Retardants0105 earth and related environmental sciencesChromatographySilica gelSolid Phase Extraction010401 analytical chemistryPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryDechlorane plusNorbornanesPollution0104 chemical scienceschemistryGas chromatographyGas chromatography–mass spectrometryChemosphere
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Effect of additives on process stability of mesophilic anaerobic monodigestion of pig slaughterhouse waste

2012

The effect of two additives on anaerobic monodigestion of pig slaughterhouse waste was studied in three laboratory scale continuously stirred tank reactors (CSTRs) operated for 242-284 days at 35°C. A higher organic loading rate (OLR), namely 2.25 kg volatile solids (VS)/m(3)d with a hydraulic retention time (HRT) of 30 d was feasible with an additive containing Fe, HCl and trace elements while an OLR of 1.5 kg VS/m(3)d (HRT 30 d) led to instabilities in CSTR with an additive consisting of Fe and HCl and in CSTR without additives. Methane yields of ca. 700 dm(3) CH(4)/kg VS(fed) were obtained in all reactors under stable conditions. Both additives decreased H(2)S concentration of the biogas…

Environmental EngineeringHydraulic retention timeIronSus scrofata1172Continuous stirred-tank reactorBioengineeringMethanechemistry.chemical_compoundBioreactorsBiogasAnimalsAnaerobiosisWaste Management and Disposalta218Biological Oxygen Demand AnalysisWaste ProductsWaste managementRenewable Energy Sustainability and the EnvironmentTemperatureGeneral MedicineHydrogen-Ion ConcentrationFatty Acids VolatilePulp and paper industryAnaerobic digestionBiodegradation EnvironmentalchemistryBiofuelBiofuelsHydrochloric AcidMethaneAnaerobic exerciseAbattoirsBiotechnologyMesophileBioresource Technology
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Mesophilic and thermophilic anaerobic co-digestion of rendering plant and slaughterhouse wastes.

2011

Co-digestion of rendering and slaughterhouse wastes was studied in laboratory scale semi-continuously fed continuously stirred tank reactors (CSTRs) at 35 and 55 °C. All in all, 10 different rendering plant and slaughterhouse waste fractions were characterised showing high contents of lipids and proteins, and methane potentials of 262-572 dm(3)CH(4)/kg volatile solids(VS)(added). In mesophilic CSTR methane yields of ca 720 dm(3) CH(4)/kg VS(fed) were obtained with organic loading rates (OLR) of 1.0 and 1.5 kg VS/m(3) d, and hydraulic retention time (HRT) of 50 d. For thermophilic process, the lowest studied OLR of 1.5 kg VS/m(3) d, turned to be unstable after operation of 1.5 HRT, due to ac…

Environmental EngineeringHydraulic retention timeWaste managementSewageRenewable Energy Sustainability and the EnvironmentChemistryContinuous stirred-tank reactorIndustrial WasteBioengineeringGeneral MedicineEuryarchaeotaMethaneRendering (animal products)Anaerobic digestionchemistry.chemical_compoundAmmoniaBacteria AnaerobicFood scienceWaste Management and DisposalKjeldahl methodMethaneta218AbattoirsMesophileBioresource technology
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Methane oxidation in a boreal climate in an experimental landfill cover composed from mechanically–biologically treated waste

2007

The present study evaluated microbial methane (CH4) oxidation in a boreally located outdoor landfill lysimeter (volume 112 m3, height 3.9 m) filled with mechanically-biologically treated waste (MBT residual) and containing a cover layer made from the same MBT residual. The calculations based on gas emission and pore gas measurements showed that, between April and October 2005, a significant proportion (96%) of the methane produced (23 l CH4 m(-2) d(-1)) in the lysimeter was oxidized. Methane was oxidized mainly at the depths of 35-75 cm, as indicated by the upward decrease both in the methane concentration and in the methane-to-carbon dioxide ratio in the pore gas. Lower methane oxidation (…

Environmental EngineeringMethanechemistry.chemical_compoundEnvironmental ChemistryWaste Management and DisposalEnvironmental Restoration and RemediationMechanical PhenomenaWaste ProductsAir PollutantsTemperatureEnvironmental engineeringMechanical biological treatmentCarbon DioxideHydrogen-Ion ConcentrationCold ClimatePollutionRefuse DisposalModels StructuralWaste treatmentBiodegradation EnvironmentalLandfill gaschemistryVolume (thermodynamics)Greenhouse gasLysimeterEnvironmental chemistryAnaerobic oxidation of methaneEnvironmental scienceSeasonsMethaneOxidation-ReductionPorosityScience of The Total Environment
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Hydrolysis rates, methane production and nitrogen solubilisation of grey waste components during anaerobic degradation.

2005

Abstract Municipal grey waste (i.e. the remaining fraction in municipal waste management systems in which putrescibles (biowaste) and other recyclables (paper, metals, glass) are source-segregated) was manually sorted into six main fractions on the basis of composition and also separated by sieving (100 mm mesh size) into two fractions, oversized and undersized, respectively. In practice, in waste management plant the oversized fraction is (or will be) used to produce refuse-derived fuel and the undersized landfilled after biological stabilisation. The methane yields and nitrogen solubilisation of the grey waste and the different fractions (all studied samples were first milled to 5 mm part…

Environmental EngineeringMunicipal solid wasteManufactured MaterialsNitrogenBioengineeringFraction (chemistry)GarbageMethanechemistry.chemical_compoundBacteria AnaerobicCitiesWaste Management and DisposalPollutantWaste ProductsWaste managementRenewable Energy Sustainability and the EnvironmentHydrolysiscardboardGeneral MedicineBiodegradable wasteBiodegradationTotal dissolved solidsRefuse DisposalKineticsBiodegradation EnvironmentalchemistrySolubilityvisual_artvisual_art.visual_art_mediumMethaneFiltrationBioresource technology
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Unraveling metabolic flexibility of rhodococci in PCB transformation

2021

International audience; Even though the genetic attributes suggest presence of multiple degradation pathways, most of rhodococci are known to transform PCBs only via regular biphenyl (bph) pathway. Using GC-MS analysis, we monitored products formed during transformation of 2,4,4′-trichlorobiphenyl (PCB-28), 2,2′,5,5′-tetrachlorobiphenyl (PCB-52) and 2,4,3′-trichlorobiphenyl (PCB-25) by previously characterized PCB-degrading rhodococci Z6, T6, R2, and Z57, with the aim to explore their metabolic pleiotropy in PCB transformations. A striking number of different transformation products (TPs) carrying a phenyl ring as a substituent, both those generated as a part of the bph pathway and an array…

Environmental EngineeringStereochemistryHealth Toxicology and Mutagenesis[SDV]Life Sciences [q-bio]0208 environmental biotechnologySubstituent02 engineering and technology010501 environmental sciencesMicrobiology01 natural sciencesDioxygenaseschemistry.chemical_compoundbph pathwayBiotransformationPolychlorinated biphenylsPleiotropyDioxygenaseEnvironmental ChemistryRhodococcusBiologyOxidative decarboxylation0105 earth and related environmental sciencesBiphenylbiologyChemistrytransformation productsPublic Health Environmental and Occupational Healthmultiple pathwaysGeneral MedicineGeneral Chemistrybiology.organism_classificationPollution020801 environmental engineeringTransformation (genetics)Biodegradation EnvironmentalPolychlorinated biphenyls ; Biotransformation ; Rhodococcus ; bph pathway ; Transformation products ; Multiple pathwaysbiotransformationRhodococcus
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Occurrence of acidic pharmaceuticals and personal care products in Turia River Basin: From waste to drinking water

2014

The occurrence of 21 acidic pharmaceuticals, including illicit drugs, and personal care products (PPCPs) in waste, surface and drinking water and in sediments of the Turia River Basin (Valencia, Spain) was studied. A liquid chromatography tandem mass spectrometry (LC-MS/MS) method was developed for the determination of these PPCPs with electrospray (ESI) in negative ionization (NI) mode. Ammonium fluoride in the mobile phase improved ionization efficiency by an average increase in peak area of 5 compared to ammonium formate or formic acid. All studied compounds were detected and their concentration was waste water>surface water>drinking water. PPCPs were in waste water treatment plants (WWT…

Environmental EngineeringTriclocarbanCosmeticsWastewaterEnvironmental impact of pharmaceuticals and personal care productsSedimentschemistry.chemical_compoundRiversLC–MS/MSWater Pollution ChemicalDrinking waterEnvironmental ChemistryWaste Management and DisposalEffluentButylparabenMethylparabenSurface waterHydrogen-Ion ConcentrationPollutionPharmaceutical PreparationschemistryWastewaterSpainPharmaceuticals and personal care products (PPCPs)Environmental chemistryWaste waterSurface waterWater Pollutants ChemicalPropylparabenEnvironmental MonitoringScience of The Total Environment
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Analysis of Trace Pharmaceuticals and Related Compounds in Municipal Wastewaters by Preconcentration, Chromatography, Derivatization, and Separation …

2014

A significant portion of pharmaceuticals and other organic chemicals consumed by people and animals are released into municipal wastewater treatment plants. Most of them are degraded during the wastewater treatment processes, but some of them degrade only partially and may be widely transported and dispersed into the aquatic environment. This is why efficient and fast analytical methods are needed for detection of organic compounds in wastewaters at trace levels. Because wastewaters often consist of complex matrices and high-molecular mass materials, e.g., lignocellulosic biomass, which may bring challenges to the sample preparation procedures, efficient pre-concentration methods such as so…

Environmental Engineeringlcsh:BiotechnologySingle drop microextractionBioengineeringSolid-phase microextractionMass spectrometryMass SpectrometrySeparation methodschemistry.chemical_compoundExtraction techniquesMunicipal wastewaterlcsh:TP248.13-248.65Sample preparationSolid phase extractionSolid phase extractionDerivatizationWaste Management and DisposalGas ChromatographyLiquid ChromatographyChromatographyDerivatizationWastewaterchemistryPersonal care productsEnvironmental chemistryPharmaceuticalsSewage treatmentGas chromatographyBioResources
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Co-digestion of sewage sludge and sterilized solid slaughterhouse waste: Methane production efficiency and process limitations

2012

The rendering product of Category 2 and 3 Animal By-Products is known as sterilized mass (SM) and it is mainly composed of fat and proteins, making it interesting substrate for anaerobic digestion. Batch and semi-continuous laboratory experiments were carried out to investigate the effect of SM addition in co-digestion with sewage sludge on methane production and possible process limitations. Results showed that SM addition in the feed mixture up to 5% (w/w), corresponding to 68.1% of the organic loading, increased methane production 5.7 times, without any indication of process inhibition. Further increase of SM addition at 7.5% (w/w) caused methane production decrease and volatile solids r…

Environmental Engineeringta1172SewageBioengineeringSolid WasteMethaneAmmoniachemistry.chemical_compoundRendering (animal products)BioreactorsBiogasBioenergyBioreactorAnimalsta219Organic ChemicalsWaste Management and DisposalEnvironmental Restoration and RemediationSewageWaste managementRenewable Energy Sustainability and the Environmentbusiness.industrySterilizationGeneral MedicineFatty Acids VolatilePulp and paper industryOxygenAnaerobic digestionBiodegradation EnvironmentalchemistryBatch Cell Culture TechniquesbusinessMethaneAbattoirsBioresource Technology
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Marine Anticancer Agents: An Overview with a Particular Focus on Their Chemical Classes

2020

The marine environment is a rich source of biologically active molecules for the treatment of human diseases, especially cancer. The adaptation to unique environmental conditions led marine organisms to evolve di erent pathways than their terrestrial counterparts, thus producing unique chemicals with a broad diversity and complexity. So far, more than 36,000 compounds have been isolated from marine micro- and macro-organisms including but not limited to fungi, bacteria, microalgae, macroalgae, sponges, corals, mollusks and tunicates, with hundreds of new marine natural products (MNPs) being discovered every year.Marine-based pharmaceuticals have started to impactmodern pharmacology and diff…

Eribulin MesylateAquatic OrganismsEnfortumab vedotinLurbinectedinPharmaceutical ScienceAntineoplastic AgentsMarine drugsComputational biologyReviewBiology03 medical and health scienceschemistry.chemical_compound0302 clinical medicineSDG 3 - Good Health and Well-beingNeoplasmsmedicineAnimalsHumansSDG 14 - Life Below WaterBrentuximab vedotinlcsh:QH301-705.5Pharmacology Toxicology and Pharmaceutics (miscellaneous)030304 developmental biologyFludarabine Phosphate0303 health sciencesBiological ProductsDrug discoveryDrug discoveryClinical pipelinePolatuzumab vedotinAnticancerlcsh:Biology (General)chemistry030220 oncology & carcinogenesisMarine natural productsMarine ToxinsPlitidepsinWater Microbiologymedicine.drug
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