Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 10/2017, Volume 130, Issue 1, pp. 301 - 309
In this study, a polymer composition of poly(acrylic acid) and dextrin (PAA/D) cross-linked with microwave radiation, belonging to the new BioCo group of...
Polymer Sciences | TG–DSC | TG–IR | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Foundry sands | Polymer binders | Inorganic Chemistry | TG–MS | Thermal degradation | TG-MS | CARBOXYMETHYL STARCH | CHEMISTRY, ANALYTICAL | TG-IR | ACID | CA2+ IONS | FT-RAMAN | DECOMPOSITION | CHEMISTRY, PHYSICAL | GLUTARALDEHYDE | POLY(ACRYLIC ACID)/SODIUM SALT | TG-DSC | CROSS-LINKING PROCESSES | THERMODYNAMICS | MICROWAVE-RADIATION | DEGRADATION
Polymer Sciences | TG–DSC | TG–IR | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Foundry sands | Polymer binders | Inorganic Chemistry | TG–MS | Thermal degradation | TG-MS | CARBOXYMETHYL STARCH | CHEMISTRY, ANALYTICAL | TG-IR | ACID | CA2+ IONS | FT-RAMAN | DECOMPOSITION | CHEMISTRY, PHYSICAL | GLUTARALDEHYDE | POLY(ACRYLIC ACID)/SODIUM SALT | TG-DSC | CROSS-LINKING PROCESSES | THERMODYNAMICS | MICROWAVE-RADIATION | DEGRADATION
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 10/2017, Volume 130, Issue 1, pp. 285 - 290
In this work, the main purpose was the determination of the thermal stability of the modified starch: sodium carboxymethyl starch (CMS-Na) used in foundry...
Polymer Sciences | Chemistry | Analytical Chemistry | Modified starch | Measurement Science and Instrumentation | Foundry polymer binders | Physical Chemistry | Thermal decomposition | TG–DTG–DSC | Inorganic Chemistry | Thermal analysis
Polymer Sciences | Chemistry | Analytical Chemistry | Modified starch | Measurement Science and Instrumentation | Foundry polymer binders | Physical Chemistry | Thermal decomposition | TG–DTG–DSC | Inorganic Chemistry | Thermal analysis
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 10/2017, Volume 130, Issue 1, pp. 585 - 593
This study aims at evaluating the main hydration reactions of a type II Portland cement, when partially substituted by the fines of spent cracking catalyst...
Polymer Sciences | DTA | Chemistry | Analytical Chemistry | Spent catalyst | TG | Measurement Science and Instrumentation | Physical Chemistry | DTG | Inorganic Chemistry | Epcat | CHEMISTRY, ANALYTICAL | MORTARS | INDUSTRIES | CHEMISTRY, PHYSICAL | STRENGTH | THERMAL-ANALYSIS | THERMODYNAMICS | FCC CATALYST | PASTES
Polymer Sciences | DTA | Chemistry | Analytical Chemistry | Spent catalyst | TG | Measurement Science and Instrumentation | Physical Chemistry | DTG | Inorganic Chemistry | Epcat | CHEMISTRY, ANALYTICAL | MORTARS | INDUSTRIES | CHEMISTRY, PHYSICAL | STRENGTH | THERMAL-ANALYSIS | THERMODYNAMICS | FCC CATALYST | PASTES
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 3/2014, Volume 115, Issue 3, pp. 2079 - 2087
In this paper, a TG/DTG–DSC–FTIR study of type I collagen extracted from bovine Achilles tendon both in inert (nitrogen) and oxidative atmosphere (synthetic...
Polymer Sciences | Chemistry | Analytical Chemistry | Evolved gases | Measurement Science and Instrumentation | Physical Chemistry | Thermal decomposition | Collagen | TG–FTIR | Inorganic Chemistry | TG-FTIR | CHEMISTRY, ANALYTICAL | CHEMISTRY, PHYSICAL | DENATURATION | IDENTIFICATION | THERMAL-DECOMPOSITION | THERMOGRAVIMETRIC ANALYSIS | HISTORICAL PARCHMENTS | PIG BONE | PYROLYSIS | HYALURONIC ACID SCAFFOLDS | SPECTROMETRY | Methane | Pyrolysis | Analysis | Oxides | Chemical properties | Dehydration (Physiology) | Band spectra | Bands | Atmospheres | Collagens | Calorimetry | Inert | Decomposition | Thermal analysis
Polymer Sciences | Chemistry | Analytical Chemistry | Evolved gases | Measurement Science and Instrumentation | Physical Chemistry | Thermal decomposition | Collagen | TG–FTIR | Inorganic Chemistry | TG-FTIR | CHEMISTRY, ANALYTICAL | CHEMISTRY, PHYSICAL | DENATURATION | IDENTIFICATION | THERMAL-DECOMPOSITION | THERMOGRAVIMETRIC ANALYSIS | HISTORICAL PARCHMENTS | PIG BONE | PYROLYSIS | HYALURONIC ACID SCAFFOLDS | SPECTROMETRY | Methane | Pyrolysis | Analysis | Oxides | Chemical properties | Dehydration (Physiology) | Band spectra | Bands | Atmospheres | Collagens | Calorimetry | Inert | Decomposition | Thermal analysis
Journal Article
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, ISSN 1556-7036, 10/2018, Volume 40, Issue 20, pp. 2458 - 2466
This work presents the results obtained from the experimental study on the effects of KOH treatment and its combustion behavior of high sulfur Indian coal....
TG-DTG | desulphurization | C-R method | Activation energy | burning profile | ENGINEERING, CHEMICAL | ENERGY & FUELS | KINETICS | DIFFERENT BINDERS | LIGNITE
TG-DTG | desulphurization | C-R method | Activation energy | burning profile | ENGINEERING, CHEMICAL | ENERGY & FUELS | KINETICS | DIFFERENT BINDERS | LIGNITE
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 6/2018, Volume 132, Issue 3, pp. 1489 - 1498
The nature of the complexing agents used in the bioscouring process of cotton fabrics aiming to eliminate the non-cellulosic compounds (pectin, waxes, etc.)...
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | TG/DTG/DTA analysis | Thermal behaviour | Inorganic Chemistry | Sodium citrate or disodium EDTA salt complexing agents | Cotton fabric | FT-IR analysis | Bioscouring | CHEMISTRY, ANALYTICAL | CHELATING-AGENT | CHEMISTRY, PHYSICAL | ATR SPECTROSCOPY | PARAMETERS | EDTA | THERMAL-DEGRADATION | FIBERS | THERMODYNAMICS | ENZYMES | CELLULOSE | Cotton textiles | Enzymes | Pectin | Biological products | Cotton fabrics
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | TG/DTG/DTA analysis | Thermal behaviour | Inorganic Chemistry | Sodium citrate or disodium EDTA salt complexing agents | Cotton fabric | FT-IR analysis | Bioscouring | CHEMISTRY, ANALYTICAL | CHELATING-AGENT | CHEMISTRY, PHYSICAL | ATR SPECTROSCOPY | PARAMETERS | EDTA | THERMAL-DEGRADATION | FIBERS | THERMODYNAMICS | ENZYMES | CELLULOSE | Cotton textiles | Enzymes | Pectin | Biological products | Cotton fabrics
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 2/2014, Volume 115, Issue 2, pp. 1949 - 1960
Nesquehonite, hydromagnesite, and brucite are important precursors for the preparation of high-purity magnesia (MgO) using magnesium resources from salt lake...
Polymer Sciences | Chemistry | Analytical Chemistry | TG–DTG | Measurement Science and Instrumentation | Physical Chemistry | Hydromagnesite | DSC | Inorganic Chemistry | Nesquehonite | Brucite | TG-DTG | CHEMISTRY, ANALYTICAL | CARBONATES | CRYSTAL-STRUCTURE | CHEMISTRY, PHYSICAL | FT-IR ANALYSIS | AGGLOMERATION | DECOMPOSITION KINETICS | SEA-WATER | POWDERS | EVOLUTION | THERMODYNAMICS | MGO | TEMPERATURE | Structure | Comparative analysis | Methods | Crystals | Differential scanning calorimetry | Precursors | Magnesium oxide | Raw materials | Decomposition | Magnesium hydroxide | Magnesium
Polymer Sciences | Chemistry | Analytical Chemistry | TG–DTG | Measurement Science and Instrumentation | Physical Chemistry | Hydromagnesite | DSC | Inorganic Chemistry | Nesquehonite | Brucite | TG-DTG | CHEMISTRY, ANALYTICAL | CARBONATES | CRYSTAL-STRUCTURE | CHEMISTRY, PHYSICAL | FT-IR ANALYSIS | AGGLOMERATION | DECOMPOSITION KINETICS | SEA-WATER | POWDERS | EVOLUTION | THERMODYNAMICS | MGO | TEMPERATURE | Structure | Comparative analysis | Methods | Crystals | Differential scanning calorimetry | Precursors | Magnesium oxide | Raw materials | Decomposition | Magnesium hydroxide | Magnesium
Journal Article
Waste Management, ISSN 0956-053X, 04/2017, Volume 62, pp. 91 - 100
Co-pyrolysis characteristics of municipal sewage sludge and hazelnut shell blend have been studied in this work. The behavior of co-pyrolysis was researched by...
Municipal sewage sludge | Co-pyrolysis | Hazelnut shell | TG-DTG-MS | Bio-char | ENVIRONMENTAL SCIENCES | MICROALGAE | ENGINEERING, ENVIRONMENTAL | HEAVY-METALS | BIOMASS | KINETIC-ANALYSIS | LIQUEFACTION | Sewage | Waste Disposal, Fluid - methods | Incineration | Cities | Hot Temperature | Kinetics | Corylus | Pyrolysis | Sludge | Activation energy | Analysis
Municipal sewage sludge | Co-pyrolysis | Hazelnut shell | TG-DTG-MS | Bio-char | ENVIRONMENTAL SCIENCES | MICROALGAE | ENGINEERING, ENVIRONMENTAL | HEAVY-METALS | BIOMASS | KINETIC-ANALYSIS | LIQUEFACTION | Sewage | Waste Disposal, Fluid - methods | Incineration | Cities | Hot Temperature | Kinetics | Corylus | Pyrolysis | Sludge | Activation energy | Analysis
Journal Article
Thermochimica Acta, ISSN 0040-6031, 12/2018, Volume 670, pp. 44 - 54
The evolution of the pyrolysis products of olive kernel, a municipal solid waste fraction and a sewage sludge was analyzed qualitatively and quantitatively,...
TG/MS | Synergy | Olive kernel | Co-pyrolysis | Sewage sludge | Municipal solid waste | THERMOCHEMICAL CONVERSION | CHEMISTRY, ANALYTICAL | COMBUSTION | HIGH-DENSITY POLYETHYLENE | SEWAGE-SLUDGE PYROLYSIS | CHEMISTRY, PHYSICAL | SOLID-WASTE | THERMAL-DEGRADATION | THERMODYNAMICS | KINETICS | THERMOGRAVIMETRIC ANALYZER | ENERGY CROPS | TG-FTIR | Pyrolysis | Sludge | Mass spectrometry | Analysis | Refuse and refuse disposal
TG/MS | Synergy | Olive kernel | Co-pyrolysis | Sewage sludge | Municipal solid waste | THERMOCHEMICAL CONVERSION | CHEMISTRY, ANALYTICAL | COMBUSTION | HIGH-DENSITY POLYETHYLENE | SEWAGE-SLUDGE PYROLYSIS | CHEMISTRY, PHYSICAL | SOLID-WASTE | THERMAL-DEGRADATION | THERMODYNAMICS | KINETICS | THERMOGRAVIMETRIC ANALYZER | ENERGY CROPS | TG-FTIR | Pyrolysis | Sludge | Mass spectrometry | Analysis | Refuse and refuse disposal
Journal Article
REVUE ROUMAINE DE CHIMIE, ISSN 0035-3930, 05/2019, Volume 64, Issue 5, pp. 453 - 460
The TG/DTG analysis of the raw cotton-flax fabric (40% flax-60% cotton), bioscoured samples with/without ultrasonication (in the presence of different enzyme...
THERMAL-DEGRADATION | FIBER | ultrasonication | SPECTROSCOPY | TG/DTG analysis | eco-friendly scouring | COTTON FABRICS | FT-IR analysis | MECHANICAL-PROPERTIES | CELLULOSE | CHEMISTRY, MULTIDISCIPLINARY | cotton-flax fabric
THERMAL-DEGRADATION | FIBER | ultrasonication | SPECTROSCOPY | TG/DTG analysis | eco-friendly scouring | COTTON FABRICS | FT-IR analysis | MECHANICAL-PROPERTIES | CELLULOSE | CHEMISTRY, MULTIDISCIPLINARY | cotton-flax fabric
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 2/2011, Volume 103, Issue 2, pp. 525 - 531
Copper(I) halide complexes formulated as [(L)CuX(μ2-L)2CuX(L)] (X = Cl, Br and L = pyridine-2-thione (py2SH), or 4,6-dimethylpyrimidine-2-thione (dmpymtH))...
Polymer Sciences | Heterocyclic thiones | TG/DTG–DTA | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Luminescence | Coupled TG–MS | Inorganic Chemistry | Copper(I) complexes | PXRD | TG/DTG-DTA | Coupled TG-MS | CHEMISTRY, ANALYTICAL | MONONUCLEAR | LIGANDS | CHEMISTRY, PHYSICAL | CRYSTAL-STRUCTURES | HALIDE-COMPLEXES | Thermal properties | Usage | Pyridine | Photoluminescence | Residues | PROPERTIES | SULFIDES | THERMAL ANALYSIS | HALOGENS | COPPER SULFIDE | LUMINESCENCE | Copper sulfides | CALORIMETRY | Copper | COPPER COMPOUNDS | THERMAL PROPERTIES | Thermal degradation
Polymer Sciences | Heterocyclic thiones | TG/DTG–DTA | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Luminescence | Coupled TG–MS | Inorganic Chemistry | Copper(I) complexes | PXRD | TG/DTG-DTA | Coupled TG-MS | CHEMISTRY, ANALYTICAL | MONONUCLEAR | LIGANDS | CHEMISTRY, PHYSICAL | CRYSTAL-STRUCTURES | HALIDE-COMPLEXES | Thermal properties | Usage | Pyridine | Photoluminescence | Residues | PROPERTIES | SULFIDES | THERMAL ANALYSIS | HALOGENS | COPPER SULFIDE | LUMINESCENCE | Copper sulfides | CALORIMETRY | Copper | COPPER COMPOUNDS | THERMAL PROPERTIES | Thermal degradation
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 04/2019, Volume 136, Issue 2, pp. 581 - 588
This work synthesized and characterized the NOR-RIB 1:1 (mol-mol) cocrystal. During a study of the reagents, Riboflavin (RIB) melted at 304 degrees C, which is...
Riboflavin | TG–DTA | Norfloxacin | Photo-DSC | Cocrystal | Mechanochemistry | CHEMISTRY, ANALYTICAL | TG-DTA | BEHAVIOR | CHEMISTRY, PHYSICAL | CLASSIFICATION | SOLUBILITY | THERMODYNAMICS | PHARMACEUTICAL COCRYSTAL | Infrared spectroscopy | Diffraction | Antibiotics | Chemical tests and reagents | Analysis | X-rays | Calorimetry | Investigations
Riboflavin | TG–DTA | Norfloxacin | Photo-DSC | Cocrystal | Mechanochemistry | CHEMISTRY, ANALYTICAL | TG-DTA | BEHAVIOR | CHEMISTRY, PHYSICAL | CLASSIFICATION | SOLUBILITY | THERMODYNAMICS | PHARMACEUTICAL COCRYSTAL | Infrared spectroscopy | Diffraction | Antibiotics | Chemical tests and reagents | Analysis | X-rays | Calorimetry | Investigations
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 12/2019, Volume 138, Issue 6, pp. 4417 - 4425
The paper presents the results of thermal analysis of polymer material in the form of starch derivatives in the form of sodium carboxymethyl starch (CMS–Na)...
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Foundry binders | Py–GC/MS | Polymer | TG–DTG–DSC | Inorganic Chemistry | Sodium carboxymethyl starch | Thermal degradation
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Foundry binders | Py–GC/MS | Polymer | TG–DTG–DSC | Inorganic Chemistry | Sodium carboxymethyl starch | Thermal degradation
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 5/2013, Volume 112, Issue 2, pp. 637 - 647
Seven novel divalent transitional metal chelate polymers compounds (commonly known as chelate compounds or metal coordination complexes or polymer complexes)...
Polymer Sciences | Chemistry | Analytical Chemistry | Thermal decomposition behaviour | Chelate polymer compounds | Measurement Science and Instrumentation | TG/DTG/DTA curves | Physical Chemistry | Terphthaoyl-bis( p -methoxyphenylcarbamide) | Inorganic Chemistry | Kinetic parameter | Coordinated water | Terphthaoyl-bis(p-methoxyphenylcarbamide) | CHEMISTRY, ANALYTICAL | COMPLEXES | DECOMPOSITION | CHEMISTRY, PHYSICAL | CONDUCTIVITY | KINETICS | DERIVATIVES | Polymer industry | Polymers | Cobalt | Analysis | Nanotechnology | Scanning electron microscopy | Chelating | Thermal decomposition | Lattices | Nanomaterials | Decomposition | Nanostructure | Differential thermal analysis
Polymer Sciences | Chemistry | Analytical Chemistry | Thermal decomposition behaviour | Chelate polymer compounds | Measurement Science and Instrumentation | TG/DTG/DTA curves | Physical Chemistry | Terphthaoyl-bis( p -methoxyphenylcarbamide) | Inorganic Chemistry | Kinetic parameter | Coordinated water | Terphthaoyl-bis(p-methoxyphenylcarbamide) | CHEMISTRY, ANALYTICAL | COMPLEXES | DECOMPOSITION | CHEMISTRY, PHYSICAL | CONDUCTIVITY | KINETICS | DERIVATIVES | Polymer industry | Polymers | Cobalt | Analysis | Nanotechnology | Scanning electron microscopy | Chelating | Thermal decomposition | Lattices | Nanomaterials | Decomposition | Nanostructure | Differential thermal analysis
Journal Article
Applied Surface Science, ISSN 0169-4332, 2010, Volume 256, Issue 17, pp. 5533 - 5538
The method for Brönsted acidity measurement based on TPD of alkyl amines desorption by gas-chromatography or thermogravimetry was adapted for simultaneous...
Brönsted acidity | Cs xH 3− xPW 12O 40 acidity | 12-Tungstophosphoric acid | TG/DTG–DTA analysis | n-Butyl amine desorption | TPD measurement | TG/DTG-DTA analysis | acidity | THERMAL-STABILITY | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | HETEROPOLY COMPOUNDS | CHEMISTRY, PHYSICAL | CsxH3-xPW12O40 acidity | HETEROGENEOUS CATALYSIS | SALTS | Bronsted acidity | SPECTROSCOPY | H3PW12O40 | X-RAY | DIFFRACTION | HEXAHYDRATE | MATERIALS SCIENCE, COATINGS & FILMS
Brönsted acidity | Cs xH 3− xPW 12O 40 acidity | 12-Tungstophosphoric acid | TG/DTG–DTA analysis | n-Butyl amine desorption | TPD measurement | TG/DTG-DTA analysis | acidity | THERMAL-STABILITY | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | HETEROPOLY COMPOUNDS | CHEMISTRY, PHYSICAL | CsxH3-xPW12O40 acidity | HETEROGENEOUS CATALYSIS | SALTS | Bronsted acidity | SPECTROSCOPY | H3PW12O40 | X-RAY | DIFFRACTION | HEXAHYDRATE | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
WOOD RESEARCH, ISSN 1336-4561, 2019, Volume 64, Issue 5, pp. 871 - 878
Steam exploded lignin (SEL) thermal decomposition was investigated by thermogravimetric technique (TG/DTG) within the temperature range from room temperature...
SAWDUST | WOOD LIGNIN | Steam explosion | pyrolysis | MECHANISM | ETHANOL-PRODUCTION | HEATING RATES | EXPLOSION | lignin | kinetics | TG/DTG | MATERIALS SCIENCE, PAPER & WOOD
SAWDUST | WOOD LIGNIN | Steam explosion | pyrolysis | MECHANISM | ETHANOL-PRODUCTION | HEATING RATES | EXPLOSION | lignin | kinetics | TG/DTG | MATERIALS SCIENCE, PAPER & WOOD
Journal Article
Journal of Saudi Chemical Society, ISSN 1319-6103, 07/2015, Volume 19, Issue 4, pp. 442 - 453
The four chelate polymer complexes commonly called as coordination polymers of Mn(II), Co(II), Ni(II) and Cu(II) ions with ( = fumaroyl...
Coordination polymers | SEM | Electrical conductivity | Fumaroyl bis (paramethoxyphenylcarbamide) | TG/DTG/DTA techniques | Thermal stability | CRYSTAL-STRUCTURES | CHELATE POLYMERS | CHEMISTRY, MULTIDISCIPLINARY | Fumaroyl bis (paramethoxy-phenylcarbamide) | COPPER(II) COMPLEXES | LIGANDS | DERIVATIVES | METAL-COMPLEXES
Coordination polymers | SEM | Electrical conductivity | Fumaroyl bis (paramethoxyphenylcarbamide) | TG/DTG/DTA techniques | Thermal stability | CRYSTAL-STRUCTURES | CHELATE POLYMERS | CHEMISTRY, MULTIDISCIPLINARY | Fumaroyl bis (paramethoxy-phenylcarbamide) | COPPER(II) COMPLEXES | LIGANDS | DERIVATIVES | METAL-COMPLEXES
Journal Article
CELLULOSE CHEMISTRY AND TECHNOLOGY, ISSN 0576-9787, 05/2017, Volume 51, Issue 5-6, pp. 387 - 394
The pyrolysis of pine sawdust was investigated by thermogravimetric techniques (TG/DTG) in the temperature range from room temperature (20 degrees C) to 1000...
PY-GC/MS ANALYSIS | pine sawdust | pyrolysis | reaction kinetics | BIOMASS PYROLYSIS | PRODUCTS | TG-FTIR ANALYSIS | TG/DTG | POPLAR WOOD SAWDUST | MATERIALS SCIENCE, PAPER & WOOD | THERMOGRAVIMETRIC ANALYSIS
PY-GC/MS ANALYSIS | pine sawdust | pyrolysis | reaction kinetics | BIOMASS PYROLYSIS | PRODUCTS | TG-FTIR ANALYSIS | TG/DTG | POPLAR WOOD SAWDUST | MATERIALS SCIENCE, PAPER & WOOD | THERMOGRAVIMETRIC ANALYSIS
Journal Article
Cellulose Chemistry and Technology, ISSN 0576-9787, 05/2017, Volume 51, Issue 5-6, pp. 387 - 394
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 12/2019, Volume 138, Issue 6, pp. 4427 - 4436
The results of thermal analysis (TG–DTG–DSC) of a foundry binder from the BioCo group in the form of a polymer composition of poly(acrylic acid)–sodium...
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Py-GC/MS | Physical Chemistry | Foundry sands | Polymer binders | TG–DTG–DSC | Inorganic Chemistry | Thermal degradation
Polymer Sciences | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Py-GC/MS | Physical Chemistry | Foundry sands | Polymer binders | TG–DTG–DSC | Inorganic Chemistry | Thermal degradation
Journal Article