Heats of combustion of high temperature polymers
The heats of combustion for 49 commercial and developmental polymers of known chemical structure were determined using an oxygen bomb calorimeter according to standard methods. The experimental results were compared with thermochemical calculations of the net heat of combustion from oxygen consumpti...
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Published in: | Fire and materials Vol. 24; no. 5; pp. 245 - 252 |
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John Wiley & Sons, Ltd
01-09-2000
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Abstract | The heats of combustion for 49 commercial and developmental polymers of known chemical structure were determined using an oxygen bomb calorimeter according to standard methods. The experimental results were compared with thermochemical calculations of the net heat of combustion from oxygen consumption and the gross heat of combustion from group additivity of the heats of formation of products and reactants. The polymers examined were thermally stable, char forming thermoplastics and thermoset resins containing a significant degree of aromaticity and heteroatoms including — nitrogen, sulphur, phosphorus, silicon, and oxygen in linear and heterocyclic structures. The gross and net heats of combustion calculated from polymer enthalpies of formation and oxygen consumption thermochemistry were within 5% of the experimental values from oxygen bomb calorimetry. The heat released by combustion per gram of diatomic oxygen consumed in the present study was E=13.10±0.78 kJ/gO2 for polymers tested (n=48). This value is indistinguishable from the universal value E13.1 kJ/gO2 used in oxygen consumption combustion calorimetry. Published in 2000 by John Wiley & Sons Ltd. |
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AbstractList | The heats of combustion for 49 commercial and developmental polymers of known chemical structure were determined using an oxygen bomb calorimeter according to standard methods. The experimental results were compared with thermochemical calculations of the net heat of combustion from oxygen consumption and the gross heat of combustion from group additivity of the heats of formation of products and reactants. The polymers examined were thermally stable, char forming thermoplastics and thermoset resins containing a significant degree of aromaticity and heteroatoms including - nitrogen, sulphur, phosphorus, silicon, and oxygen in linear and heterocyclic structures. The gross and net heats of combustion calculated from polymer enthalpies of formation and oxygen consumption thermochemistry were within 5% of the experimental values from oxygen bomb calorimetry. The heat released by combustion per gram of diatomic oxygen consumed in the present study was E = 13.10 plus or minus 0.78 kJ/gO sub(2) for polymers tested (n = 48). This value is indistinguishable from the universal value E = 13.1 kJ/gO sub(2) used in oxygen consumption combustion calorimetry. The heats of combustion for 49 commercial and developmental polymers of known chemical structure were determined using an oxygen bomb calorimeter according to standard methods. The experimental results were compared with thermochemical calculations of the net heat of combustion from oxygen consumption and the gross heat of combustion from group additivity of the heats of formation of products and reactants. The polymers examined were thermally stable, char forming thermoplastics and thermoset resins containing a significant degree of aromaticity and heteroatoms including — nitrogen, sulphur, phosphorus, silicon, and oxygen in linear and heterocyclic structures. The gross and net heats of combustion calculated from polymer enthalpies of formation and oxygen consumption thermochemistry were within 5% of the experimental values from oxygen bomb calorimetry. The heat released by combustion per gram of diatomic oxygen consumed in the present study was E=13.10±0.78 kJ/gO2 for polymers tested (n=48). This value is indistinguishable from the universal value E13.1 kJ/gO2 used in oxygen consumption combustion calorimetry. Published in 2000 by John Wiley & Sons Ltd. |
Author | Lyon, Richard E. Hackett, Stacey M. Walters, Richard N. |
Author_xml | – sequence: 1 givenname: Richard N. surname: Walters fullname: Walters, Richard N. organization: Galaxy Scientific Corporation, 2500 English Creek Avenue, Building C, Egg Harbor Township, NJ 08234, USA – sequence: 2 givenname: Stacey M. surname: Hackett fullname: Hackett, Stacey M. organization: Galaxy Scientific Corporation, 2500 English Creek Avenue, Building C, Egg Harbor Township, NJ 08234, USA – sequence: 3 givenname: Richard E. surname: Lyon fullname: Lyon, Richard E. organization: Federal Aviation Administration, William J. Hughes Technical Center, Fire Safety Section AAR-422, Atlantic City International Airport, NJ 08405, USA |
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Keywords | Heat of combustion Thermochemistry Chemical reaction Fire test Calorimetry Oxygen consumption Polymer High temperature Experimental study Thermal stability |
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References | Experimental Thermochemistry. Rossini FD (ed). Interscience: New York, 1956. Thornton W. Philos Mag J Sci 1917; 33:196. Walters RN, Lyon RE. A Microscale Combustion Calorimeter for Determining Flammability Parameters of Materials. Beall K (ed.). NISTIR 5904. 1996; 89-90. Lyon RE. Fire Retardancy of Polymeric Materials, Grand AF, Wilkie CA (eds). Marcel Dekker: New York, 2000; 391-447. Bensen SW. Thermochemical Kinetics, Methods for the Estimation of Thermochemical Data and Rate Parameters. John Wiley: New York, 1968. Wunderlich W. Polymer Handbook, 3rd edn, Brandrup J, Immergut EH (eds). Section 5. John Wiley & Sons: New York, 1989; 77-88. Walters RN, Lyon RE. Proc 42nd Int SAMPE Symp Exhib 1997; 42(2):1335-1344. Huggett C. Fire Mater 1980; 4:61-65. 1990 2000 1997; 42 1980; 4 1917; 33 1997 1996 1995 1992 1968 1989 1956 1999 Rossini (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB17) 1956 Gilman (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB18) 1997 Janssens (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB6) 1992 Huggett (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB5) 1980; 4 Walters (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB9) 1997; 42 (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB16) 1990 Hill (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB1) Bensen (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB14) 1968 (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB3) 2000 (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB2) 2000 Babrauskas (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB7) 1995 Thornton (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB4) 1917; 33 Lyon (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB12) 2000 Babrauskas (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB8) 1992 Wunderlich (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB15) 1989 Van Krevlen (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB13) 1990 Walters (10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB10) 1996 10.1002/1099-1018(200009/10)24:5<245::AID-FAM744>3.0.CO;2-7-BIB11 |
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SubjectTerms | Applied sciences Building technical equipments Buildings Buildings. Public works Exact sciences and technology Fire behavior of materials and structures Fire protection Materials Plastics polymers |
Title | Heats of combustion of high temperature polymers |
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