Search results for "Iode"

showing 10 items of 1284 documents

The effect of iron on the biodegradation of natural dissolved organic matter

2016

Iron (Fe) may alter the biodegradation of dissolved organic matter (DOM), by interacting with (DOM), phosphorus (P) and microbes. We isolated DOM and a bacterial community from boreal lake water and examined bacterial growth on DOM in laboratory experiments. Fe was introduced either together with DOM (DOM-Fe) or into bacterial suspension, which led to the formation of insoluble Fe-precipitates on bacterial surfaces (Fe coating). In the latter case, the density of planktonic bacteria was an order of magnitude lower than that in the corresponding treatment without introduced Fe. The association of Fe with DOM decreased bacterial growth, respiration, and growth efficiency compared with DOM alo…

chemistry.chemical_classificationAtmospheric Science010504 meteorology & atmospheric sciencesEcologyPhosphorusPaleontologySoil ScienceBiomasschemistry.chemical_elementForestry010501 environmental sciencesAquatic ScienceBacterial growthBiodegradation01 natural sciences6. Clean waterBioavailabilitychemistryEnvironmental chemistryDissolved organic carbonRespirationOrganic matter0105 earth and related environmental sciencesWater Science and TechnologyJournal of Geophysical Research: Biogeosciences
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Inverted Solution Processable OLEDs Using a Metal Oxide as an Electron Injection Contact.

2007

A new type of bottom-emission electroluminescent device is described in which a metal oxide is used as the electron-injecting contact. The preparation of such a device is simple. It consists of the deposition of a thin layer of a metal oxide on top of an indium tin oxide covered glass substrate, followed by the solution processing of the light-emitting layer and subsequently the deposition of a high-workfunction (air-stable) metal anode. This architecture allows for a low-cost electroluminescent device because no rigorous encapsulation is required. Electroluminescence with a high brightness reaching 5700 cd m–2 is observed at voltages as low as 8 V, demonstrating the potential of this new a…

chemistry.chemical_classificationBrightnessMaterials sciencebusiness.industryOxideFísicaPolymerElectroluminescenceCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsIndium tin oxideBiomaterialschemistry.chemical_compoundchemistryElectrochemistryOLEDOptoelectronicsbusinessMaterialsVoltageDiodeAdvanced Functional Materials
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Increased sulfate availability in saline water promotes hydrogen sulfide production in fish organic waste

2020

The risk of hydrogen sulfide (H2S) production can be a challenge in marine land-based recirculating aquaculture systems (RAS). Hydrogen sulfide is a toxic gas that can cause massive fish mortality even at low concentrations, and in addition, serious odour problems in the surroundings. It is a bacterial by-product originating from the degradation of organic matter in sulfur-rich waters such as marine waters. In order to hinder H2S production in marine land-based RAS, more information on the H2S production conditions and the associated microbiology is needed. In this study, the production of H2S from rainbow trout (Oncorhynchus mykiss) organic waste was examined using a novel H2S measurement …

chemistry.chemical_classificationChemistryHydrogen sulfideBiodegradable wasteAquatic Scienceequipment and suppliesSaline waterSulfateSulfate reducing bacteria/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterSalinitychemistry.chemical_compoundEnvironmental chemistryOrganic matterSeawaterSeawaterOrganic matterSDG 14 - Life Below WaterSulfate-reducing bacteriaSulfateHydrogen sulfideAquacultural Engineering
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Hybrid LEDs based on ZnO nanowire structures

2017

Abstract This paper summarized the research, development, and state of the art of hybrid ZnO nanowire LEDs, in which electroluminescence is generated at the junction between n-type doped ZnO nanowire structures and specific p-type doped polymers (in particular PEDOT, PEDOT:PSS, or PFO). Different device architectures will be reviewed and discussed with a particular emphasis on the electronic transport through the hybrid structures and the microscopic processes of light emission. Finally, a gas-phase deposition technique for conductive polymers will be presented which might help improve the performance of hybrid ZnO nanowire LEDs in the future.

chemistry.chemical_classificationConductive polymerMaterials scienceMechanical EngineeringDopingNanowireNanotechnology02 engineering and technologyPolymerElectroluminescence010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical scienceslaw.inventionchemistryPEDOT:PSSMechanics of MaterialslawGeneral Materials ScienceLight emission0210 nano-technologyLight-emitting diodeMaterials Science in Semiconductor Processing
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The Role of Emission Layer Morphology on the Enhanced Performance of Light-Emitting Diodes Based on Quantum Dot-Semiconducting Polymer Hybrids

2016

The influence of the morphology of quantum dot (QD)-semiconducting polymer hybrid emission layers on the performance of quantum dot-based light emitting diodes (QLEDs) is systematically investigated. Chemically grafted QD-semiconducting polymer hybrids are fabricated by the ligand exchange procedure between CdSe/CdxZn1−xS QDs and a new block copolymer consisting of a carbazole-based electroactive block with a low highest occupied molecular orbital level and a disulfide-based anchor block. The performance of QLEDs with hybrid emission layers is compared with QLEDs utilizing QD-only and physically mixed QD/polymer emission layers. It is shown that only in the emission layers formed by chemica…

chemistry.chemical_classificationConductive polymerMaterials sciencebusiness.industryCarbazoleMechanical Engineering02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical scienceslaw.inventionchemistry.chemical_compoundchemistryMechanics of MaterialsQuantum dotlawOptoelectronicsQuantum efficiency0210 nano-technologybusinessHybrid materialHOMO/LUMOLight-emitting diodeAdvanced Materials Interfaces
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Pyrolysis of humic acids from digested and composted sewage sludge

2000

Humic acids (HAs) were extracted from four digested sewage sludge samples composted for four months, one, two and four years. HAs were pyrolyzed at three different temperatures applying both conventional and in situ methylation (ISM) pyrolysis. The pyrolysates were analyzed using gas chromatography-mass spectrometry (GC/MS). Derivatization (ISM) and pyrolysis temperature had dramatic effects on the composition and relative amounts of the pyrolysates. Among the derivatized HA fragments aliphatic compounds prevailed under all the pyrolysis conditions tested. Aromatic substances consisting mainly of guaiacyl-type compounds were detected in higher abundances only at elevated temperatures. Witho…

chemistry.chemical_classificationEnvironmental EngineeringChromatographyHealth Toxicology and MutagenesisPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryBiodegradationMass spectrometryPollutionchemistry.chemical_compoundWaste treatmentchemistryEnvironmental ChemistryHumic acidComposition (visual arts)DerivatizationPyrolysisSludgeChemosphere
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Rheological Behaviour, Mechanical Properties and Processability of Biodegradable Polymer Systems for Film Blowing

2017

Films for agricultural or packaging applications are typically made of low density polyethylene (LDPE). They are produced through the film blowing process, which requires the use of polymers with suitable rheological properties. Furthermore, the short shelf-life which is often related to many packed products leads to huge amounts of plastic-based wastes. This suggests the use of biodegradable and/or compostable polymers in replacement for traditional ones. To this regard, only few data exist on the rheological properties of biodegradable polymers undergoing film blowing processing. In this work, a detailed investigation on the rheological, mechanical and processability behaviour of some bio…

chemistry.chemical_classificationEnvironmental EngineeringMaterials sciencePolymers and PlasticsFilm blowingIndustrial scale02 engineering and technologyPolymerImpact test010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiodegradable polymer0104 chemical sciencesShear (sheet metal)Low-density polyethylenechemistryRheologyUltimate tensile strengthBiodegradable polymerMaterials ChemistryNon-isothermal elongational flowRheological propertieComposite material0210 nano-technology
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Rheological Behavior Under Shear and Non-Isothermal Elongational Flow of Biodegradable Polymers for Foam Extrusion

2013

The production of many items, in particular for food packaging applications, is based on foam extrusion and thermoforming. These operations require the use of polymers which can grant some specific rheological properties, both under shear and elongational flow. In this work, the behavior of some biodegradable polymers [Mater-Bi® and poly(lactic acid)] under shear and non-isothermal elongational flow was investigated and compared with a traditional, non-biodegradable polymer, in order to assess their suitability for industrial-scale foam extrusion and thermoforming. The rheological characterization evidenced the differences between the different biodegradable polymers and the reference polys…

chemistry.chemical_classificationEnvironmental EngineeringMaterials sciencePolymers and Plasticsfood and beveragesBiodegradable Rheological properties Elongational flow Foam extrusionPolymerBiodegradable polymerIsothermal processFood packagingchemistry.chemical_compoundchemistryRheologyMaterials ChemistryExtrusionPolystyreneComposite materialThermoformingJournal of Polymers and the Environment
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Biofiltration of ethylbenzene vapours: influence of the packing material.

2006

In order to investigate suitable packing materials, a soil amendment composed of granular high mineralized peat (35% organic content) locally available has been evaluated as carrier material for biofiltration of volatile organic compounds in air by comparison with a fibrous peat (95% organic content). Both supports were tested to eliminate ethylbenzene from air streams in laboratory-scale reactors inoculated with a two-month conditioned culture. In pseudo-steady state operation, experiments at various ethylbenzene inlet loads (ILs) were carried out. Maximum elimination capacity of about 120 g m(-3) h(-1) for an IL of 135 g m(-3) h(-1) was obtained for the fibrous peat. The soil amendment re…

chemistry.chemical_classificationEnvironmental EngineeringPeatSoil testRenewable Energy Sustainability and the EnvironmentChemistryEnvironmental engineeringAmendmentBioengineeringGeneral MedicineBiodegradationModels Theoreticalmedicine.diseasePulp and paper industryEthylbenzenechemistry.chemical_compoundSoilSpainBiofiltermedicineBenzene DerivativesVolatile organic compoundWaste Management and DisposalVapoursFiltrationBioresource technology
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Anaerobic batch degradation of solid poultry slaughterhouse waste

2000

We studied anaerobic batch degradation of solid poultry slaughterhouse wastes with different initial waste and inoculum concentrations and waste-to-inoculum ratios and simulated the dynamics of the process with a new generation <METHANE> model. Our modelling results suggest that inhibited propionate degradation by long-chain fatty acids (LCFA) and inhibited hydrolysis by a high propionate concentration constituted the rate-limiting step in the waste degradation. Palmitate was the most abundant LCFA in the assays. Within 27 days of incubation, up to 0.55 to 0.67 m3 of methane (STP)/kg VS added was produced under the studied conditions. Lower waste-to-inoculum ratios exhibited a…

chemistry.chemical_classificationEnvironmental EngineeringWaste managementChemistryBiodegradationMethanechemistry.chemical_compoundHydrolysisPropionateDegradation (geology)Food scienceNitrogen cycleAnaerobic exerciseIncubationWater Science and TechnologyWater Science and Technology
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