Search results for "Thermogravimetric analysi"

showing 10 items of 213 documents

Synthesis, structure and properties of new heterometallic octanuclear Li2Na2Cu4 and decanuclear Li2Zn8 complexes

2019

Abstract A carboxylate containing polydentate ligand in combination with exogeneous succinate (suc) has been used to stabilize heterometallic octanuclear [Li2Na2Cu4(cpdp)2(suc)2(CH3OH)2(H2O)4]Cl2·6H2O (1) and decanuclear Na(H3O)2[Li2Zn8(cpdp)4(suc)2(H2O)4]Cl2Br3·6MeOH·19H2O (2) complexes. The reaction of ligand H3cpdp (H3cpdp = N,N'-bis[2-carboxybenzomethyl]-N,N'-bis[2-pyridylmethyl]-1,3-diaminopropan-2-ol) with stoichiometric amounts of CuCl2/sodium succinate, and ZnCl2/sodium succinate, allowed isolation of complexes 1 and 2, respectively. Analyses of single crystal X-ray structures indicate that complex 1 is capped by two [Cu2(cpdp)]+ molecular building units and two succinate linkers, w…

Thermogravimetric analysisDenticity010405 organic chemistryChemistrySodiumchemistry.chemical_elementZinc010402 general chemistry01 natural sciencesCopper0104 chemical sciencesInorganic ChemistryCrystallographychemistry.chemical_compoundMaterials ChemistryCarboxylatePhysical and Theoretical ChemistrySingle crystalStoichiometryPolyhedron
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Synthesis, structure and properties of a novel self-assembled tetranuclear copper(II) complex derived from carboxylate-based multidentate ligand

2020

Abstract A novel tetranuclear copper(II) complex, [Cu(H2O)5][Cu4(cpdp)2(adip)]ClBr∙2CH3OH·8H2O (1) of carboxylate-based symmetrical multidentate ligand, H3cpdp [H3cpdp = N,N'-Bis[2-carboxybenzomethyl]-N,N'-Bis[2-pyridylmethyl]-1,3-diaminopropan-2-ol; adip = adipate], has been synthesized and fully characterized. Complex 1 has been synthesized by carrying out reaction of ligand H3cpdp with stoichiometric amounts of CuCl2·2H2O/Na2(CH2CH2COO)2 in methanol-water in the presence of NaOH at room temperature. The solid state structure of 1 consists of a [Cu4(µ4-adip)] core unit which is held together by two multidentate bridging ligands, cpdp3−. In fact, complex 1 can be viewed as a “dimer-of-dime…

Thermogravimetric analysisDenticityLigandchemistry.chemical_element02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCopperMagnetic susceptibility0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryAdipateMaterials ChemistryCarboxylatePhysical and Theoretical Chemistry0210 nano-technologyStoichiometryInorganic Chemistry Communications
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NanoMORALs: Metal Nanoparticles Doped with Organic Molecules

2009

A new class of nanosized metal–organic alloys (MORALs) has been synthesized for the first time. Silver nanoparticles doped with Cu(II) and Fe(III) phthalocyanines were thus synthesized in the presence of sodium dodecyl sulfate (SDS). The resulting materials were characterized by means of XRD, SEM, TEM coupled to energy dispersive X-ray analysis, and thermogravimetric analysis. No leaching of the photoactive dopant species was observed in water or in common organic solvents.

Thermogravimetric analysisDopantOrganic ChemistryInorganic chemistryDopingtechnology industry and agricultureGeneral ChemistryCatalysisSilver nanoparticleOrganic moleculeschemistry.chemical_compoundchemistryLeaching (metallurgy)Sodium dodecyl sulfateMetal nanoparticlesNuclear chemistry
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An experimental investigation on the long-term compatibility of preheated crude palm oil in a large compression ignition diesel engine

2018

An experimental study was carried out on a large stationary compression ignition engine to evaluate the long-term compatibility and durability issues associated with the use of crude palm oil as fuel. Two different preheating temperatures (60 and 80 °C) were adopted to assess the potential improvements related to lower fuel viscosity. The results obtained, in terms of in-cylinder carbon deposits and engine wear, were compared with the results obtained using ordinary diesel fuel. For each fuel and preheating temperature, the engine was operated for 300 consecutive h, during which several engine lubricant samples were collected and analysed to determine soot and fuel contaminations, viscosity…

Thermogravimetric analysisEnvironmental EngineeringMaterials scienceCrude palm oilStraight vegetable oilEnergy Engineering and Power Technologylcsh:HD9502-9502.5medicine.disease_causeDiesel enginelcsh:Fuellaw.inventionEngine lubricantDiesel fuellcsh:TP315-360lawmedicineChemical Engineering (miscellaneous)LubricantWaste Management and DisposalBiodieselRenewable Energy Sustainability and the EnvironmentMetallurgyDurability testlcsh:Energy industries. Energy policy. Fuel tradeSootCompression ignition engineIgnition systemSettore ING-IND/08 - Macchine A FluidoFuel TechnologyBiofuelBiofuel compatibilityBiotechnologyBiofuel Research Journal
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Reprocessed polylactide: Studies of thermo-oxidative decomposition

2012

The combustion process of virgin and reprocessed polylactide (PLA) was simulated by multi-rate linear non-isothermal thermogravimetric experiments under O2. A complete methodology that accounted on the thermal stability and emission of gases was thoroughly developed. A new model, Thermal Decomposition Behavior, and novel parameters, the Zero-Decomposition Temperatures, were used to test the thermal stability of the materials under any linear heating rate. The release of gases was monitored by Evolved Gas Analysis with in-line FT-IR analysis. In addition, a kinetic analysis methodology that accounted for variable activation parameters showed that the decomposition process could be driven by …

Thermogravimetric analysisEnvironmental EngineeringMaterials scienceHot TemperatureEvolved gas analysisPolyestersKinetic analysisBioengineeringCombustionEvolved-Gas Analysis (EGA)Forensic engineeringThermal stabilityComputer SimulationRecyclingWaste Management and DisposalThermo-oxidative decomposition kineticsRenewable Energy Sustainability and the EnvironmentChemical process of decompositionThermal decompositionTermoplàsticsEnergetic valorizationGeneral MedicineThermal stabilityCiència dels materialsDecompositionChemical engineeringModels ChemicalPolylactide (PLA)MAQUINAS Y MOTORES TERMICOSOxidation-Reduction
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Structure and performance properties of environmentally-friendly biocomposites based on poly(ɛ-caprolactone) modified with copper slag and shale dril…

2018

The potential application of two types of industrial wastes, drill cuttings (DC) and copper slag (CS), as silica-rich modifiers of poly(ɛ-caprolactone) (PCL) was investigated. Chemical structure and physical properties of DC and CS fillers were characterized using X-ray diffractometer, X-ray fluorescence spectroscopy, particle size and density measurements. PCL/DC and PCL/CS composites with a variable content of filler (5 to 50 parts by weight) were prepared by melt compounding in an internal mixer. It was observed that lower particle size of DC filler enhanced processing of biocomposites comparing to CS filler. Smaller particles of DC filler and thus the higher specific surface area, enabl…

Thermogravimetric analysisEnvironmental EngineeringMaterials scienceScanning electron microscopeindustrial wastes02 engineering and technology010402 general chemistry01 natural sciencesCopper slagstructure-property relationshipsSpecific surface areaUltimate tensile strengthEnvironmental ChemistryComposite materialPorosityWaste Management and Disposalchemistry.chemical_classificationbiocompositesPolymer021001 nanoscience & nanotechnologyPollutionCopper slag0104 chemical sciencesdrill cuttingschemistryParticle size0210 nano-technologyvolatile organic compounds emissionsThe Science of the total environment
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Nanocrystalline ZnCO3—A novel sorbent for low-temperature removal of H2S

2013

Abstract The reactivity of a nanocrystalline ZnCO 3 toward H 2 S (0.2 vol% in N 2 /H 2 mixture) at 140–180 °C was characterized by thermal gravimetric analysis and by breakthrough curves measurements. We have found that under used conditions transformation of ZnCO 3 into ZnS is complete and the rate determining step of the sulfidation is the surface reaction. Such behavior is in strike contrast with that of ZnO whose sulfidation is severely limited by diffusion. The higher reactivity of ZnCO 3 in comparison with ZnO is attributed to the different microstructure of ZnS layer formed in these materials after a partial sulfidation. As in ZnO–ZnS transformation the molar volume increases (from 1…

Thermogravimetric analysisEnvironmental EngineeringMaterials scienceSorbentHealth Toxicology and MutagenesisInorganic chemistryCarbonatesTemperatureSulfidationOxideMicrostructureRate-determining stepPollutionNanocrystalline materialchemistry.chemical_compoundchemistryZinc CompoundsNanoparticlesEnvironmental ChemistryReactivity (chemistry)Hydrogen SulfideWaste Management and DisposalJournal of Hazardous Materials
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Thermogravimetric analysis. A tool to evaluate the ability of mixtures in consolidating waterlogged archaeological woods

2010

Waterlogged archaeological woods (Pinus pinaster, Ulmus cf. minor and Fagus sylvatica L.) were consolidated by using Colophony, Rosin 100, and a mixture of Poly(ethylene) glycol (PEG) 3000 and Poly(propylene) glycol (PPG) 425. The efficiency of the consolidants was estimated by determining the content entrapped into the cavity of degraded wood. For this purpose, thermogravimetry was demonstrated to be a reliable tool. In the case that the polymeric mixture was used for impregnation, it was also possible to discriminate the amount of PEG 3000 from that of PPG 425 captured by the wood capillaries. Regardless of the wood nature, all the consolidants were present in treated samples in large amo…

Thermogravimetric analysisEthyleneMaterials scienceAbsorption of waterbiologyRosinCondensed Matter Physicsbiology.organism_classificationArchaeologywood TGA polymerThermogravimetrychemistry.chemical_compoundFagus sylvaticachemistryPEG ratiomedicinePhysical and Theoretical ChemistryThermal analysismedicine.drug
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Analysis of archaeological samples and local clays using ICP-AES, TG–DTG and FTIR techniques

2000

Abstract The spectrochemical and thermal analysis of different archaeological samples as bricks, terra-cotta and local clays were carried out. The concentration of major and minor elements of samples was determined by sequential inductively coupled plasma atomic emission spectrometry. The method was tested by determining Si, Al, Fe, Ca, Mg, Mn, Pb, Cu, Zn, Ti, Na and K in the standard solutions and reference material GXR-4. The precision of the determination (relative standard deviation) ranged from 0.4 to 1.54%. The clay minerals are the main materials for the production of bricks and terra-cotta figures. Thermogravimetric (TG) and differential (TG–DTG) analysis and Fourier transform infra…

Thermogravimetric analysisEvolved gas analysisChemistryInductively coupled plasma atomic emission spectroscopyAnalytical chemistryFourier transform infrared spectroscopyStandard solutionInductively coupled plasmaClay mineralsThermal analysisArchaeologyAnalytical ChemistryTalanta
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Upgrade of citrus waste as a biofuel via slow pyrolysis

2015

Abstract Slow pyrolysis (200–650 °C) experiments on citrus residues (orange peel waste “OP” and lemon peel waste “LP”) were carried out in lab scale fixed bed batch reactor. Bio-oil and bio-char obtained by thermal degradation are more stable, more homogeneous and higher energy content fuels when compared to the parent feedstock. Thermogravimetric analysis (TGA) showed higher stability of LP waste, which appears related to the higher lignin content . Mass and energy yields of solid and liquid products (i.e., char and oil) were measured to determine the effects of peak temperature on feedstock. A linear correlation between Gross Calorific Value (GCV), peak temperatures and mass loss (ML) all…

Thermogravimetric analysisFixed-bed reactorChemistryChemistry (all)Batch reactorAnalytical chemistrychemistry.chemical_elementPyrolysiRaw materialChar reactivityNitrogenAnalytical ChemistryEnergy densityFuel TechnologyBiofuelCitrus peel wasteSettore ING-IND/10 - Fisica Tecnica IndustrialeOrganic chemistryChemical Engineering (all)Heat of combustionCharPyrolysisJournal of Analytical and Applied Pyrolysis
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