Search results for "Low-density polyethylene"

showing 10 items of 99 documents

Intercalation effects in LDPE/o-Montmorillonites nanocomposites

2007

Abstract Typical montmorillonite clays (Cloisite ® Na + , Cloisite ® 30B) were modified by treatment with octadecyl ammonium chloride (ODC) and successive additions of octadecylamine (ODA). XRD analyses of the modified clays indicated an increase of the basal spacing of the (0 0 1) planes depending on the ODC or ODA additions. Nanocomposites were prepared by dispersing the modified clays (3% w/w concentration) in LDPE, using a Brabender mixer. XRD measurements of the obtained products indicated in some cases the achievement of intercalation effects, which were confirmed by TEM analysis. Some thermal, mechanical, dynamic-mechanical and rheological properties were evaluated and correlated to …

NanocompositeMorphology (linguistics)Materials sciencePolymers and PlasticsOrganic ChemistryIntercalation (chemistry)General Physics and AstronomyLow-density polyethylenechemistry.chemical_compoundMontmorillonitechemistryRheologyPolymer chemistryMaterials ChemistryThermal stabilityPolymer blendNuclear chemistry
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Stabilisation of LDPE cross-linked in the presence of peroxidesII. FTIR study of chemical changes taking place in the LDPE–dicumyl peroxide–Irganox 1…

2000

Abstract The chemical changes taking place in the systems: LDPE–Irganox 1081, LDPE–dicumyl peroxide and LDPE–Irganox 1081–dicumyl peroxide, after homogenisation (in a rolling mill at 130°C) and after homogenisation and cross-linking (at 180°C and 5.0 MPa for 20 min) were investigated by FTIR. It was found that the OH groups in Irganox 1081 were in a bound form, and were most probably linked to the sulphur co-ordination centre. Further, the presence of dicumyl peroxide without Irganox 1081 in LDPE resulted in the formation of hydroperoxide groups at a temperature of 130°C, which were replaced by free hydroxy and carbonyl groups of a ketonic type after cross-linking. Simultaneous addition of …

Organic peroxidePolymers and PlasticsPotassium bromideConcentration effectPolyethyleneCondensed Matter PhysicsPeroxideLow-density polyethylenechemistry.chemical_compoundchemistryMechanics of MaterialsPolymer chemistryMaterials ChemistryOrganic chemistryPartial oxidationFourier transform infrared spectroscopyPolymer Degradation and Stability
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Resource or waste? A perspective of plastics degradation in soil with a focus on end-of-life options.

2018

‘Capable-of-being-shaped’ synthetic compounds are prevailing today over horn, bone, leather, wood, stone, metal, glass, or ceramic in products that were previously left to natural materials. Plastic is, in fact, economical, simple, adaptable, and waterproof. Also, it is durable and resilient to natural degradation (although microbial species capable of degrading plastics do exist). In becoming a waste, plastic accumulation adversely affects ecosystems. The majority of plastic debris pollutes waters, accumulating in oceans. And, the behaviour and the quantity of plastic, which has become waste, are rather well documented in the water, in fact. This review collects existing information on pla…

PLA polylactic acidPS polystyreneETS European Emissions Trading schemePOM polyoxymethyleneHMC heat melt compactor technology02 engineering and technology010501 environmental sciencesNHV net habitable volumeLDPE low-density polyethylene01 natural sciencesPC polycarbonateResin identification codeLCP liquid crystal polymerslcsh:Social sciences (General)PAC pro-oxidant additive containingPET polyethylene terephthalateEPR Extended Producers ResponsibilityMultidisciplinaryWaste managementNatural materials021001 nanoscience & nanotechnologyPU or PUR polyurethaneSettore AGR/02 - Agronomia E Coltivazioni ErbaceeEPS expandable polystyreneRIC resin identification codeSettore AGR/14 - PedologiaPVDF polydifluoroethylenelcsh:H1-990210 nano-technologyBiogeoscienceGPPS Polystyrene (General Purpose)PVC polyvinyl chlorideResource (biology)Polymethyl methacrylatePA polyamidePBT polybutylene terephthalatePSU polyarylsulfonePTFE polytetrafluoroethylenePMMA polymethyl methacrylatePHA polyhydroxyalkanoateMicrobiologyPEEK polyaryletheretherketoneArticleEnvironmental scienceEnvironmental science Biogeoscience Industry MicrobiologyPPA polyphthalamideTPE thermoplastic polyester elastomerNatural degradationIndustryPPS polyphenylene sulphidelcsh:Science (General)ABS acrylonitrile-butadiene-styrene0105 earth and related environmental sciencesbusiness.industryPP polypropyleneHDPE high-density polyethyleneBPA bisphenol AHBCD hexabromocyclododecaneFuture studyAgricultureDOM dissolved organic matterDegradation (geology)Environmental sciencebusinesslcsh:Q1-390Heliyon
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Oxazoline functionalization of polyethylenes and their blends with polyamides and polyesters

2001

The compatibilization of blends of polyamide-6 (PA6) with linear low density polyethylene (LLDPE) and of poly(ethylene terephthalate) (PET) with high density polyethylene (HDPE), by functionalization of the polyethylenes with oxazoline groups was investigated. Chemical modification of LLDPE and HDPE was carried out by melt free radical grafting with ricinoloxazoline maleinate. Blends preparation was made either with a two-steps procedure comprising functionalization and blending, and in a single step in which the chemical modification of polyethylene with the oxazoline monomer was realized in situ, during blending. The characterization of the products was carried out by FTIR spectroscopy an…

POLYOLEFINSMaterials sciencePolymers and PlasticsPP/PBTeducationELASTOMERSchemistry.chemical_compoundPOLYMER BLENDSPolymer chemistryMaterials ChemistryPOLYPROPYLENEOrganic Chemistrytechnology industry and agriculturefood and beveragesChemical modificationCompatibilizationPolyethyleneCondensed Matter PhysicsLinear low-density polyethylenePolyesterREACTIVE COMPATIBILIZATIONSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryChemical engineeringSurface modificationHigh-density polyethylenePolymer blendMacromolecular Symposia
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Activity and Thermal Stability of Cobalt(II)-Based Olefin Polymerization Catalysts Adorned with Sterically Hindered Dibenzocycloheptyl Groups.

2019

Five examples of unsymmetrical 2-(2,4-bis(dibenzocycloheptyl)-6-methylphenyl- imino)ethyl)-6-(1-(arylyimino)ethyl)pyridine derivatives (aryl = 2,6-Me2C6H3 in L1

Photochemistry2Pharmaceutical Sciencechemistry.chemical_elementCatalysisArticlethermal stabilityAnalytical ChemistryPolymerizationlcsh:QD241-441chemistry.chemical_compoundDibenzocycloheptyl grouplcsh:Organic chemistryDrug DiscoveryPolymer chemistryPyridine26-bis(imino)pyridylcobalt(II) chloride precatalystsThermal stabilityPhysical and Theoretical ChemistryMolecular StructureOrganic ChemistryCobaltPolyethyleneSquare pyramidal molecular geometryLinear low-density polyethylene6-bis(imino)pyridylcobalt(II) chloride precatalystschemistryPolymerizationhigh molecular-weight saturated/unsaturated polyethyleneChemistry (miscellaneous)PolyethyleneMolecular MedicineMolar mass distributionCobaltMolecules (Basel, Switzerland)
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Preparation and Characterization of Polyolefin-Based Nanocomposite Blown Films for Agricultural Applications

2009

These kinds of filmshave,asaprimaryaim,tocreateafavorablemicro-climateto accelerate the plant growth.Thematerialsfortheseapplicationsmustpossessseveralspecificandpeculiarcharacteristics,suchastheabilitytobeshaped into films (even with wide dimensions and largethickness ranges), good deformability and tear resistancetogetherwithasufficientrigidity,transparencyforUVandIR radiation in particular regions of the spectrum, a goodresistance to photo-oxidative phenomena and for someapplications to provide a barrier for certain gases.Moreover, an important property requested for thematerials used for greenhouse covering is the capabilityto diffuse the light. In fact, according to some studies,diffused l…

Plant growthFabricationNanocompositeMaterials sciencePolymers and PlasticsGeneral Chemical EngineeringOrganic ChemistryPolyolefinCharacterization (materials science)chemistry.chemical_compoundLow-density polyethylenechemistryMaterials ChemistryWettingComposite materialMacromolecular Materials and Engineering
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1989

A commercial low density polyethylene was irradiated by gamma irradiation at room temperature with different integrated doses and dose rates. The modifications induced in the material were studied by means of solubility and swelling measurements and related to structural modifications by calorimetric measurements. Results indicate that crosslinking prevails with respect to degradation at high dose rates and that the ageing phenomena occur essentially in the amorphous phase. Ein kommerzielles Polyethylen niedriger Dichte wurde bei unterschiedlicher integrierter Dosis und unterschiedlicher Dosisleistung bei Zimmertemperatur mit Gammastrahlung behandelt. Die Veranderungen des Materials wurden …

Polymers and PlasticsChemistryGeneral Chemical EngineeringRadiation inducedLow-density polyethylenePhase (matter)Polymer chemistrymedicineDegradation (geology)IrradiationSolubilitySwellingmedicine.symptomDose rateNuclear chemistryActa Polymerica
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Necking behavior of low-density polyethylene-isotactic polypropylene blends: A morphological investigation

1984

The tensile behavior of low-density polyethylene-isotactic polypropylene blends was investigated at room temperature. Neck formation and propagation along the whole length of the samples were observed for the whole range of composition. This behavior, which is not indicated by most data available in the literature, was examined in relation to sample morphology by scanning electron microscopy. The results of this investigation indicated some differences between the morphology of these materials and the morphology of blends which do not undergo necking propagation.

PolypropyleneMaterials scienceMorphology (linguistics)Polymers and PlasticsScanning electron microscopeGeneral Chemistrychemistry.chemical_compoundLow-density polyethyleneTensile behaviorchemistryTacticityMaterials ChemistryComposite materialNeckingTensile testingPolymer Engineering and Science
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Study of thermal properties of polyethylene and polypropylene nanocomposites with long alkyl chain-substituted POSS fillers

2016

The effect of incorporation of octakis({alkyl}dimethylsiloxy)octasilsesquioxanes molecules with n-octyl, n-octadecyl and 4-methyl-hexyl substituents on thermal properties of polypropylene (PP), low-density polyethylene (LDPE) and high-density polyethylene (HDPE) was investigated. Thermal properties of those composite materials were evaluated by means of the differential scanning calorimetry (DSC) and thermogravimetric analysis (TG) methods. The type and mass% content of POSS nanofillers influenced the crystallization and melting properties as well as thermal stability of the obtained polyolefin nanocomposites. The incorporated POSS particles—acting as nucleating agents—improved the crystall…

PolypropyleneThermogravimetric analysisMaterials sciencethermal propertiesnucleating agentspolyhedral oligomeric silsesquioxanes02 engineering and technologyPolyethylene010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesthermal stability0104 chemical sciencesPolyolefinchemistry.chemical_compoundLow-density polyethyleneDifferential scanning calorimetrychemistryThermal stabilityHigh-density polyethylenepolyolefin matrix (nano)compositesComposite materialPhysical and Theoretical Chemistry0210 nano-technologyJournal of Thermal Analysis and Calorimetry
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Influence of the e-beam irradiation and photo-oxidation aging on the structure and properties of LDPE-OMMT nanocomposite films

2012

Abstract In this paper two systems, polyethylene (LDPE) and polyethylene/commercial organo-modified montmorillonite (LDPE/OMMT) nanocomposite, were subjected to e-beam irradiation at different doses and both the molecular modifications and mechanical properties have been investigated through solubility, FT-IR, calorimetric and tensile tests. Moreover, in some of the irradiated systems photo-oxidation aging was performed and its effects were studied. The results show an enhancement with irradiation of the positive effect of the nano-filler loading, related to the increase of the mechanical properties, due to the increase of the nano-filler polymer interaction. Nevertheless calorimetric and F…

RadiationMaterials scienceNanocompositeLDPE-OMMT nanocomposite film e-beam irradiation Photo-oxidation ageing Mechanical properties Carbonyl index Molecular modificationPolyethylenechemistry.chemical_compoundLow-density polyethyleneSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMontmorillonitechemistryPolymer chemistryUltimate tensile strengthSettore CHIM/07 - Fondamenti Chimici Delle TecnologieIrradiationComposite materialE beam irradiationSolubilityRadiation Physics and Chemistry
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