Paper
Investigation on thermal degradation properties of oleic acid and its methyl and ethyl esters through TG-FTIR
Published Oct 1, 2017 · S. Niu, Yan Zhou, Hewei Yu
Energy Conversion and Management
Q1 SJR score
114
Citations
2
Influential Citations
Abstract
Abstract hidden due to publisher request; this does not indicate any issues with the research. Click the full text link above to read the abstract and view the original source.
Study Snapshot
Thermal degradation properties of oleic acid and its esterification derivants can be improved through TG-FTIR, potentially benefiting biodiesel commercialization.
PopulationOlder adults (50-71 years)
Sample size24
MethodsObservational
OutcomesBody Mass Index projections
ResultsSocial networks mitigate obesity in older groups.
Sign up to use Study Snapshot
Consensus is limited without an account. Create an account or sign in to get more searches and use the Study Snapshot.
Full text analysis coming soon...
References
Thermal stability of some imidazolium [NTf2] ionic liquids: Isothermal and dynamic kinetic study through thermogravimetric procedures
The thermal stability of imidazolium ionic liquids varies slightly based on alkyl chain length, with the highest activation energy values found for 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide.
2017·50citations·J. J. Parajó et al.·The Journal of Chemical Thermodynamics
The Journal of Chemical Thermodynamics
Synthesis, spectral characterization and study of thermal behavior kinetics by thermogravimetric analysis of metal complexes derived from salicylaldehyde and alkylamine
Metal complexes derived from salicylaldehyde and alkylamine show promising thermal stability and kinetic properties, with activation energies ranging from Ni II (L) 2 to Cu II (L) 2 and Co III (L) 3 1/2H 2 O.
2017·15citations·B. Bouzerafa et al.·Journal of Molecular Structure
Journal of Molecular Structure
Determination of kinetic parameters in the pyrolysis operation and thermal behavior of Prosopis juliflora using thermogravimetric analysis.
The three-pseudo component model accurately predicts experimental results in the pyrolysis of Prosopis juliflora fuelwood at various heating rates, with activation energy, pre-exponential factor, and order of reaction being key factors.
2017·130citations·A. Chandrasekaran et al.·Bioresource technology
Bioresource technology
Quality improvement of biodiesel blends using different promising fuel additives to reduce fuel consumption and NO emission from CI engine
Pentanol and ignition promoters are promising additives for biodiesel blends, improving fuel properties and reducing NO emissions while maintaining engine performance.
2017·51citations·H. Imdadul et al.·Energy Conversion and Management
Energy Conversion and Management
Non-isothermal kinetics of biomass-pyrolysis-derived-tar (BPDT) thermal decomposition via thermogravimetric analysis
The Rayleigh DAEM is the most suitable kinetic model for biomass-pyrolysis-derived-tar (BPDT) thermal decomposition, with a first step controlled by diffusion and a main contributed step following a reaction order mechanism.
2017·44citations·Tingting Xu et al.·Energy Conversion and Management
Energy Conversion and Management
Citations
Innovative approach to the catalytic effects of oxide glasses and glass-ceramics on the thermal decomposition of fatty acids
Oxide glasses-(ceramics) from the Na2O-V2O5-(Al2O3-P2O5-Nb2O5) system show potential for efficient pyrolytic deoxygenation of long-chain fatty acids into alkanes, with potential applications in memory and
2025·0citations·Sara Marijan et al.·Journal of Non-Crystalline Solids
Journal of Non-Crystalline Solids
One-pot conversion Allium sativum peels into a cost-effective carbon-based heterogeneous acid catalyst for renewable biodiesel production using palm oil refining by-products
The garlic peel-derived acid catalyst demonstrates exceptional activity, stability, and recyclability, making it a viable option for cost-effective and environmentally sustainable biodiesel production using palm oil refining by-products.
2025·0citations·Ichraq El yaakouby et al.·Energy Conversion and Management
Energy Conversion and Management
Sn doping in In2O3-x nanoparticle achieving its synergy with oxygen vacancy towards high-efficiency electrocatalytic CO2 reduction and upcycling of spent liquid crystal display panels
Sn doping and oxygen vacancies in In2O3-x nanoparticles from spent liquid crystal display panels effectively enhance electrocatalytic CO2 reduction, achieving a maximum formate Faradaic efficiency of 94.6 %.
2025·0citations·Zhiyuan Ren et al.·Chemical Engineering Journal
Chemical Engineering Journal
Advances in the photon avalanche luminescence of inorganic lanthanide-doped nanomaterials.
Photon avalanche luminescence in nanoscale lanthanide-doped materials has advanced imaging, thermometry, and force sensing, enabling new applications in mid-IR imaging, biosensing, and nanophotonics.
2024·0citations·M. Szalkowski et al.·Chemical Society reviews
Chemical Society reviews
Screening and Characterization of 1,8-Cineole-Based Solvents as an Alternative to Hexane for Obtaining Nonpolar Compounds from Plant-Based Milk Coproducts
1,8-cineole-based solvents show potential as an alternative to hexane for extracting nonpolar compounds from plant-based milk coproducts, with potential for sustainable food and pharmaceutical applications.
2024·0citations·M. M. Strieder et al.·ACS Sustainable Chemistry & Engineering
ACS Sustainable Chemistry & Engineering
Magnetic Phase-Change Microcapsules with High Encapsulation Efficiency, Enhancement of Infrared Stealth, and Thermal Stability
Magnetic phase-change microcapsules with Fe3O4(m) improve encapsulation efficiency, enhance energy storage, and provide improved thermal stability and infrared stealth.
2024·0citations·Chun-Wei Chang et al.·Materials
Materials