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Datensatz im Suchindex

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adam_text CONTENTS PREFACE TO THE SECOND EDITION - V 1 FLASH POINT - 1 1.1 1.2 1.2.1 1.2.2 1.2.3 1.3 1.3.1 1.3.2 MEASUREMENT OF THE FP - 2 PREDICTIVE METHODS OF THE FP FOR PURE COMPOUNDS - 5 EMPIRICAL MODELS - 5 THE SGC METHODS ---- 40 QSPR MODELS ---- 48 ESTIMATION METHODS OF THE FP FOR MIXTURES - 69 MIXING RULES ---- 70 ASSESSMENT OF COMBINATION OF THE MIXING RULE OF LIAW ET AL. AND QSPR MODELS ---- 72 1.3.3 1.4 EMPIRICAL METHODS FOR LIQUID MIXTURES ---- 72 SUMMARY - 76 2 AUTOIGNITION ---- 77 2.1 2.2 2.2.1 MEASUREMENT OF THE AIT - 78 PREDICTIVE METHODS OF THE AIT FOR PURE COMPOUNDS - 79 THE USE OF SGC BY A POLYNOMIAL OF DEGREE 3 FOR ORGANIC COMPOUNDS - 81 2.2.2 2.2.3 A SIMPLE QSPR MODEL FOR VARIOUS CLASSES OF HYDROCARBONS - 84 A NEW AND RELIABLE MODEL FOR PREDICTION OF THE AIT OF ORGANIC COMPOUNDS CONTAINING ENERGETIC GROUPS - 86 2.2.4 SIMPLE METHOD TO ASSESS THE AIT OF ORGANIC ETHER COMPOUNDS WITH HIGH RELIABILITY ---- 92 2.2.5 RELIABLE PREDICTION OF AUTOIGNITION TEMPERATURE OF ORGANIC HYDROXYL COMPOUNDS ---- 94 2.3 2.4 AUTOIGNITION AND IGNITION DELAY - 96 SUMMARY - 101 3 FLAMMABILITY LIMIT ---- 103 3.1 3.2 3.2.1 3.2.2 MEASUREMENT OF THE LFL AND UFL ---- 103 PREDICTIVE METHODS OF THE FLAMMABILITY LIMITS - 104 THE PREDICTED LFL AS A FUNCTION OF TEMPERATURE - 105 THE USE OF SGC METHOD FOR PREDICTION OF THE LFL AND UFL OF PURE HYDROCARBONS - 106 3.2.3 3.2.4 EXTENDED METHOD FOR PREDICTION OF THE UFL OF PURE COMPOUNDS - 110 MACHINE LEARNING-DEVELOPED MODELS FOR PREDICTION OF LFL AND UFL ---- 113 VIII -- CONTENTS 3.3 FLAMMABILITY LIMIT ESTIMATION OF THE HYDROCARBON-INERT GAS MIXTURE - 115 3.4 SUMMARY - 117 4 HEAT OF COMBUSTION - 119 4.1 EXPERIMENTAL METHODS FOR DETERMINATION OF HEATS OF COMBUSTION - 120 4.2 DIFFERENT APPROACHES FOR PREDICTION OF THE HEATS OF COMBUSTION - 121 4.2.1 PREDICTING THE STANDARD NET HEAT OF COMBUSTION FOR PURE HYDROCARBONS FROM THEIR MOLECULAR STRUCTURE - 123 4.2.2 PREDICTION OF THE STANDARD NET HEAT OF COMBUSTION FROM MOLECULAR STRUCTURE - 126 4.2.3 A COMPREHENSIVE METHODOLOGY FOR PREDICTION OF THE NET HEAT OF COMBUSTION FROM GROUP CONTRIBUTION-BASED PROPERTY MODELS - 129 4.2.4 A GENERALLY APPLICABLE GROUP ADDITIVITY METHOD FOR THE CALCULATION OF THE GROSS HEAT OF COMBUSTION OF ORGANIC COMPOUNDS AS WELL AS SALTS AND IONIC LIQUIDS - 136 4.2.5 MACHINE LEARNING-DEVELOPED MODELS OF PREDICTION OF THE NET HEAT OF COMBUSTION OF ORGANIC COMPOUNDS - 143 4.2.6 RELIABLE PREDICTIONS OF THE NET HEAT OF COMBUSTION OF ORGANOSILICON COMPOUNDS - 144 4.2.7 A NEW METHOD FOR PREDICTING THE GROSS HEAT OF COMBUSTION OF POLYNITRO ARENE, POLYNITRO HETEROARENE, ACYCLIC AND CYCLIC NITRAMINE, NITRATE ESTER AND NITROALIPHATIC COMPOUNDS - 145 4.3 SUMMARY - 149 5 POLYMER FLAMMABILITY - 151 5.1 EXPERIMENTAL METHOD BASED ON PYROLYSIS COMBUSTION FLOW CALORIMETRY - 152 5.2 DIFFERENT APPROACHES FOR PREDICTION OF FLAMMABILITY PARAMETERS - 153 5.2.1 SGC METHOD OF WALTERS AND LYON FOR PREDICTION OF THE HEAT RELEASE CAPACITY - 154 5.2.2 SGC METHOD OF LYON ET AL. FOR PREDICTION OF TOTAL HEAT RELEASE (HEAT OF COMBUSTION), CHAR YIELD, AND HEAT RELEASE CAPACITY - 158 5.2.3 THE SIMPLEST MODEL FOR RELIABLE PREDICTION OF TOTAL HEAT RELEASE (HEAT OF COMBUSTION) - 162 5.2.4 A SIMPLE MODEL FOR RELIABLE PREDICTION OF THE SPECIFIC HEAT RELEASE CAPACITY OF POLYMERS - 164 CONTENTS - - IX 5.2.5 A SIMPLE METHOD FOR THE RELIABLE PREDICTION OF CHAR YIELD OF POLYMERS - 165 5.3 SUMMARY - 170 PROBLEMS - 171 ANSWERS TO PROBLEMS - 175 LIST OF SYMBOLS - 177 APPENDIX A ---- 183 APPENDIX B ---- 223 APPENDIX C ---- 241 APPENDIX D - 255 REFERENCES - 259 ABOUT THE AUTHOR - 275 INDEX ---- 277
adam_txt CONTENTS PREFACE TO THE SECOND EDITION - V 1 FLASH POINT - 1 1.1 1.2 1.2.1 1.2.2 1.2.3 1.3 1.3.1 1.3.2 MEASUREMENT OF THE FP - 2 PREDICTIVE METHODS OF THE FP FOR PURE COMPOUNDS - 5 EMPIRICAL MODELS - 5 THE SGC METHODS ---- 40 QSPR MODELS ---- 48 ESTIMATION METHODS OF THE FP FOR MIXTURES - 69 MIXING RULES ---- 70 ASSESSMENT OF COMBINATION OF THE MIXING RULE OF LIAW ET AL. AND QSPR MODELS ---- 72 1.3.3 1.4 EMPIRICAL METHODS FOR LIQUID MIXTURES ---- 72 SUMMARY - 76 2 AUTOIGNITION ---- 77 2.1 2.2 2.2.1 MEASUREMENT OF THE AIT - 78 PREDICTIVE METHODS OF THE AIT FOR PURE COMPOUNDS - 79 THE USE OF SGC BY A POLYNOMIAL OF DEGREE 3 FOR ORGANIC COMPOUNDS - 81 2.2.2 2.2.3 A SIMPLE QSPR MODEL FOR VARIOUS CLASSES OF HYDROCARBONS - 84 A NEW AND RELIABLE MODEL FOR PREDICTION OF THE AIT OF ORGANIC COMPOUNDS CONTAINING ENERGETIC GROUPS - 86 2.2.4 SIMPLE METHOD TO ASSESS THE AIT OF ORGANIC ETHER COMPOUNDS WITH HIGH RELIABILITY ---- 92 2.2.5 RELIABLE PREDICTION OF AUTOIGNITION TEMPERATURE OF ORGANIC HYDROXYL COMPOUNDS ---- 94 2.3 2.4 AUTOIGNITION AND IGNITION DELAY - 96 SUMMARY - 101 3 FLAMMABILITY LIMIT ---- 103 3.1 3.2 3.2.1 3.2.2 MEASUREMENT OF THE LFL AND UFL ---- 103 PREDICTIVE METHODS OF THE FLAMMABILITY LIMITS - 104 THE PREDICTED LFL AS A FUNCTION OF TEMPERATURE - 105 THE USE OF SGC METHOD FOR PREDICTION OF THE LFL AND UFL OF PURE HYDROCARBONS - 106 3.2.3 3.2.4 EXTENDED METHOD FOR PREDICTION OF THE UFL OF PURE COMPOUNDS - 110 MACHINE LEARNING-DEVELOPED MODELS FOR PREDICTION OF LFL AND UFL ---- 113 VIII -- CONTENTS 3.3 FLAMMABILITY LIMIT ESTIMATION OF THE HYDROCARBON-INERT GAS MIXTURE - 115 3.4 SUMMARY - 117 4 HEAT OF COMBUSTION - 119 4.1 EXPERIMENTAL METHODS FOR DETERMINATION OF HEATS OF COMBUSTION - 120 4.2 DIFFERENT APPROACHES FOR PREDICTION OF THE HEATS OF COMBUSTION - 121 4.2.1 PREDICTING THE STANDARD NET HEAT OF COMBUSTION FOR PURE HYDROCARBONS FROM THEIR MOLECULAR STRUCTURE - 123 4.2.2 PREDICTION OF THE STANDARD NET HEAT OF COMBUSTION FROM MOLECULAR STRUCTURE - 126 4.2.3 A COMPREHENSIVE METHODOLOGY FOR PREDICTION OF THE NET HEAT OF COMBUSTION FROM GROUP CONTRIBUTION-BASED PROPERTY MODELS - 129 4.2.4 A GENERALLY APPLICABLE GROUP ADDITIVITY METHOD FOR THE CALCULATION OF THE GROSS HEAT OF COMBUSTION OF ORGANIC COMPOUNDS AS WELL AS SALTS AND IONIC LIQUIDS - 136 4.2.5 MACHINE LEARNING-DEVELOPED MODELS OF PREDICTION OF THE NET HEAT OF COMBUSTION OF ORGANIC COMPOUNDS - 143 4.2.6 RELIABLE PREDICTIONS OF THE NET HEAT OF COMBUSTION OF ORGANOSILICON COMPOUNDS - 144 4.2.7 A NEW METHOD FOR PREDICTING THE GROSS HEAT OF COMBUSTION OF POLYNITRO ARENE, POLYNITRO HETEROARENE, ACYCLIC AND CYCLIC NITRAMINE, NITRATE ESTER AND NITROALIPHATIC COMPOUNDS - 145 4.3 SUMMARY - 149 5 POLYMER FLAMMABILITY - 151 5.1 EXPERIMENTAL METHOD BASED ON PYROLYSIS COMBUSTION FLOW CALORIMETRY - 152 5.2 DIFFERENT APPROACHES FOR PREDICTION OF FLAMMABILITY PARAMETERS - 153 5.2.1 SGC METHOD OF WALTERS AND LYON FOR PREDICTION OF THE HEAT RELEASE CAPACITY - 154 5.2.2 SGC METHOD OF LYON ET AL. FOR PREDICTION OF TOTAL HEAT RELEASE (HEAT OF COMBUSTION), CHAR YIELD, AND HEAT RELEASE CAPACITY - 158 5.2.3 THE SIMPLEST MODEL FOR RELIABLE PREDICTION OF TOTAL HEAT RELEASE (HEAT OF COMBUSTION) - 162 5.2.4 A SIMPLE MODEL FOR RELIABLE PREDICTION OF THE SPECIFIC HEAT RELEASE CAPACITY OF POLYMERS - 164 CONTENTS - - IX 5.2.5 A SIMPLE METHOD FOR THE RELIABLE PREDICTION OF CHAR YIELD OF POLYMERS - 165 5.3 SUMMARY - 170 PROBLEMS - 171 ANSWERS TO PROBLEMS - 175 LIST OF SYMBOLS - 177 APPENDIX A ---- 183 APPENDIX B ---- 223 APPENDIX C ---- 241 APPENDIX D - 255 REFERENCES - 259 ABOUT THE AUTHOR - 275 INDEX ---- 277
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author Keshavarz, Mohammad Hossein 1966-
author_GND (DE-588)1139275755
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spelling Keshavarz, Mohammad Hossein 1966- Verfasser (DE-588)1139275755 aut
Combustible organic materials determination and prediction of combustion properties Mohammad Hossein Keshavarz
2nd edition
Berlin De Gruyter [2022]
© 2022
IX, 274 Seiten Illustrationen
txt rdacontent
n rdamedia
nc rdacarrier
De Gruyter STEM
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Physikalische Chemie
Hochenergetische Materialien
Explosivstoffe
Organische Chemie
Organic Compounds, Safety and Risk Assessment
Combustion
Thermochemistry
Physical Chemistry
Organic Chemistry
High Energy Materials
Explosives
Organic Compounds, Safety and Risk Assessment; Combustion; Thermochemistry; Physical Chemistry; Organic Chemistry; High Energy Materials; Explosives
TB: Textbook
Physikalische Chemie; Hochenergetische Materialien; Explosivstoffe; Organische Chemie
Organic Compounds; Safety and Risk Assessment; Combustion; Thermochemistry; Physical Chemistry; Organic Chemistry; High Energy Materials; Explosives
Organischer Stoff (DE-588)4203832-7 s
Brennbarkeit (DE-588)4137148-3 s
Flammpunkt (DE-588)4247726-8 s
Selbstzündung (DE-588)4259899-0 s
Explosionsgrenze (DE-588)4226184-3 s
Verbrennungswärme (DE-588)4440431-1 s
DE-604
Walter de Gruyter GmbH & Co. KG (DE-588)10095502-2 pbl
Erscheint auch als Online-Ausgabe, EPUB 978-3-11-078225-7
Erscheint auch als Online-Ausgabe, PDF 978-3-11-078213-4
B:DE-101 application/pdf https://d-nb.info/1257247417/04 Inhaltsverzeichnis
DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=034083502&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Keshavarz, Mohammad Hossein 1966-
Combustible organic materials determination and prediction of combustion properties
Flammpunkt (DE-588)4247726-8 gnd
Explosionsgrenze (DE-588)4226184-3 gnd
Selbstzündung (DE-588)4259899-0 gnd
Brennbarkeit (DE-588)4137148-3 gnd
Verbrennungswärme (DE-588)4440431-1 gnd
Organischer Stoff (DE-588)4203832-7 gnd
subject_GND (DE-588)4247726-8
(DE-588)4226184-3
(DE-588)4259899-0
(DE-588)4137148-3
(DE-588)4440431-1
(DE-588)4203832-7
title Combustible organic materials determination and prediction of combustion properties
title_auth Combustible organic materials determination and prediction of combustion properties
title_exact_search Combustible organic materials determination and prediction of combustion properties
title_exact_search_txtP Combustible organic materials determination and prediction of combustion properties
title_full Combustible organic materials determination and prediction of combustion properties Mohammad Hossein Keshavarz
title_fullStr Combustible organic materials determination and prediction of combustion properties Mohammad Hossein Keshavarz
title_full_unstemmed Combustible organic materials determination and prediction of combustion properties Mohammad Hossein Keshavarz
title_short Combustible organic materials
title_sort combustible organic materials determination and prediction of combustion properties
title_sub determination and prediction of combustion properties
topic Flammpunkt (DE-588)4247726-8 gnd
Explosionsgrenze (DE-588)4226184-3 gnd
Selbstzündung (DE-588)4259899-0 gnd
Brennbarkeit (DE-588)4137148-3 gnd
Verbrennungswärme (DE-588)4440431-1 gnd
Organischer Stoff (DE-588)4203832-7 gnd
topic_facet Flammpunkt
Explosionsgrenze
Selbstzündung
Brennbarkeit
Verbrennungswärme
Organischer Stoff
url https://d-nb.info/1257247417/04
http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=034083502&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
work_keys_str_mv AT keshavarzmohammadhossein combustibleorganicmaterialsdeterminationandpredictionofcombustionproperties
AT walterdegruytergmbhcokg combustibleorganicmaterialsdeterminationandpredictionofcombustionproperties