Thermal Conductivity Of Gases
Mostrando 1-9 de 9 artigos, teses e dissertações.
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1. A Gas Chromatography Method for Simultaneous Quantification of Inorganic Gases and Light Hydrocarbons Generated in Thermochemical Processes
This paper reports a method for simultaneous determination of H2, O2, N2, CO, CO2, CH4, C2H2, C2H4, C2H6, C3H4 (propadiene and propyne), C3H6, C3H8 and C4H10 (n-butane and isobutane) by gas chromatography using thermal conductivity and flame ionization detectors. A single porous layer open tubular column (0.53 mm internal diameter ? 30 m length ? 30 µm thic
J. Braz. Chem. Soc.. Publicado em: 2021-06
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2. Production of porous ceramic materialusing different sources of alumina and calcia
ABSTRACTNumerous papers and publications report the use of microporous calcium hexaluminate (CaO.6Al2O3; CA6) as a key raw material for high temperature insulating materials. This material has unique properties with respect to chemical purity and mineral composition. Another important property of CA6 is its structure, which consists of platelet-shaped crysta
Matéria (Rio J.). Publicado em: 2015-09
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3. DEPLOYMENT OF METHOD FOR ANALYSIS OF STABLE CARBON ISOTOPES (N-ALKANES C1-C5) IN GAS SAMPLES AT LOW CONCENTRATIONS / IMPLANTAÇÃO DE MÉTODO PARA ANÁLISE DE ISÓTOPOS ESTÁVEIS DE CARBONO (N-ALCANOS C1-C5) EM GASES A BAIXAS CONCENTRAÇÕES
The concentration and isotopic composition of n-alkanes C1-C5 has revealed as a powerful tool for interpretation of interesting processes in the oil exploration industry, studies of global climate change, oil biodegradation and carbon cycle elucidation. In this context, studies about methane analysis have been distinguished and multiplied due to the importan
IBICT - Instituto Brasileiro de Informação em Ciência e Tecnologia. Publicado em: 06/10/2011
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4. Thermal conductivity of gas by pulse injection techniques using specific thermal conductivity detector (TCD)
Este artigo apresenta um procedimento para determinar a condutividade térmica de gases através de injeção por pulso, utilizando um detector de condutividade térmica (TCD). As medidas foram efetuadas à 323K e pressão atmosférica, com um sensor de filamento de tungstênio de 160 Ω. Através de aproximações bem definidas, foi possível transformar um
Publicado em: 2010
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5. NanocompÃsito montmorilonita/polipirrol: preparaÃÃo,caracterizaÃÃo e aplicaÃÃo como sensores de volÃteis
Clay/polymer nanocomposites have been sufficiently studied during some time because they could be used in industrial applications. Clay is a Phyllosilicate Subclass Mineral, it is formed by sheets, layers or lamels and has a Tetrahedron- Octahedron-Tetrahedron (TOT) like structure with free hydroxile and cations between the lamels and on the surface. In this
Publicado em: 2006
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6. Thermal conductivity of gas by pulse injection techniques using specific thermal conductivity detector (TCD)
Este artigo apresenta um procedimento para determinar a condutividade térmica de gases através de injeção por pulso, utilizando um detector de condutividade térmica (TCD). As medidas foram efetuadas à 323K e pressão atmosférica, com um sensor de filamento de tungstênio de 160 ômega. Através de aproximações bem definidas, foi possível transforma
Journal of the Brazilian Chemical Society. Publicado em: 2004-12
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7. Kinetic theory of quantum ideal gases. / Teoria cinética dos gases ideias quânticos.
The aim of this work is the determination of the coefficients of shear viscosity and thermal conductivity of quantum ideal gases. In the calculation of the transport coefficients two aspects have been taken into account: a classical statistical with quantum cross-sections and a quantum statistical with quantum cross-sections. In the first case, an alternativ
Publicado em: 1993
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8. AN ADAPTATION OF THE THERMAL CONDUCTIVITY METHOD TO THE ANALYSIS OF RESPIRATORY GASES 1
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9. Rapid Method for the Radioisotopic Analysis of Gaseous End Products of Anaerobic Metabolism
A gas chromatographic procedure for the simultaneous analysis of 14C-labeled and unlabeled metabolic gases from microbial methanogenic systems is described. H2, CH4, and CO2 were separated within 2.5 min on a Carbosieve B column and were detected by thermal conductivity. Detector effluents were channeled into a gas proportional counter for measurement of rad