Particulate emissions from vehicles:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Chichester [u.a.]
Wiley
2008
|
Schriftenreihe: | Wiley professional engineering publishing series
|
Schlagworte: | |
Online-Zugang: | Beschreibung für Leser Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | XV, 493 S. Ill., graph. Darst. |
ISBN: | 9780470724552 |
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100 | 1 | |a Eastwood, Peter |e Verfasser |4 aut | |
245 | 1 | 0 | |a Particulate emissions from vehicles |c by Peter Eastwood |
264 | 1 | |a Chichester [u.a.] |b Wiley |c 2008 | |
300 | |a XV, 493 S. |b Ill., graph. Darst. | ||
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adam_text |
PARTICULATE EMISSIONS FROM VEHICLES BY PETER EASTWOOD FORD MOTOR
COMPANY, LTD. JOHN WILEY &. SONS, LTD CONTENTS PREFACE XI ACRONYMS AND
ABBREVIATIONS XIII ABOUT THE AUTHOR XVII 1 INTRODUCTION 1 1.1 AIRTRAFFIC
4 1.2 MOTOR VEHICLES 4 1.3 THE LEGISLATIVE FRAMEWORK 6 2 FUNDAMENTALS 9
2.1 INTRODUCTION 9 2.2 PROPERTIES OF AEROSOL PARTICLES 9 2.2.1 DIAMETER
AND SHAPE 10 2.2.2 SIZE DISTRIBUTION 12 2.2.3 TRANSPORT AND DEPOSITION
14 2.2.4 TRANSFORMATION AND MUTATION 18 2.3 PARTICLES IN THE ATMOSPHERE
22 2.3.1 CHARACTER AND BEHAVIOUR 23 2.3.2 AEROSOLS IN NATURE 27 2.3.3
ANTHROPOGENIC AEROSOLS 30 2.3.4 ENVIRONMENTAL IMPLICATIONS 37 2.4 MOTOR
VEHICLE PARTICULATE 42 2.4.1 SOME TYPICAL PARTICLES DISSECTED 42 2.4.2
WHAT HAPPENS WITHIN THE ENGINE 48 2.4.3 WHAT HAPPENS WITHIN THE EXHAUST
51 2.4.4 NUMBER VERSUS MASS 53 2.5 CLOSURE 55 2.5.1 PROPERTIES OF
AEROSOL PARTICLES 55 2.5.2 PARTICLES IN THE ATMOSPHERE 57 2.5.3 MOTOR
VEHICLE PARTICULATE 58 VI PARTICULATE EMISSIONS FROM VEHICLES 3
FORMATION I: COMPOSITION 61 3.1 INTRODUCTION 61 3.2 CARBONACEOUS
FRACTION: I. CLASSICAL MODELS 62 3.2.1 EMPIRICISMS 65 3.2.2 INCEPTION 68
3.2.3 SURFACE GROWTH 73 3.2.4 AGGLOMERATION 75 3.2.5 OXIDATION 79 3.3
CARBONACEOUS FRACTION: II. THE COMBUSTING PLUME 84 3.3.1 HISTORICAL
OVERVIEW 85 3.3.2 PREMIXED BURN 86 3.3.3 MIXING-CONTROLLED BURN 88 3.3.4
LATE BURN 90 3.4 CARBONACEOUS FRACTION: III. WALL INTERACTIONS 91 3.4.1
THEORETICAL 92 3.4.2 EXPERIMENTAL 93 3.5 ASH FRACTION 95 3.5.1 CHEMICAL
REACTIONS 96 3.5.2 GAS-TO-PARTICLE CONVERSION 100 3.6 ORGANIC FRACTION
104 3.6.1 PREPARATORY CHEMICAL REACTIONS 10 4 3.6.2 CHEMICAL REACTIONS
IN THE EXHAUST 109 3.6.3 GAS-TO-PARTICLE CONVERSION: MODELS 112 3.6.4
GAS-TO-PARTICLE CONVERSION: MEASUREMENTS 117 3.6.5 WHITE SMOKE 119 3.7
SULPHATE FRACTION 122 3.7.1 CHEMICAL REACTIONS 122 3.7.2 GAS-TO-PARTICLE
CONVERSION 125 3.8 CLOSURE 129 3.8.1 CARBONACEOUS FRACTION I. CLASSICAL
MODELS 129 3.8.2 CARBONACEOUS FRACTION II. THE COMBUSTING PLUME 131
3.8.3 CARBONACEOUS FRACTION III. WALL INTERACTIONS 132 3.8.4 ASH
FRACTION 132 3.8.5 ORGANIC FRACTION 133 3.8.6 SULPHATE FRACTION 134 4
FORMATION II: LOCATION 135 4.1 INTRODUCTION 135 4.2 WITHIN THE EXHAUST
SYSTEM 136 4.2.1 STORAGE AND RELEASE 137 4.2.2 DEPOSITION WITHIN
CATALYSTS 139 4.3 WITHIN THE EXHAUST PLUME 141 4.3.1 LONG-TERM AGEING IN
THE ATMOSPHERE 145 4.4 WITHIN THE TRANSFER LINE 145 4.5 WITHIN THE
DILUTION TUNNEL 147 4.6 ON THE FILTER 150 4.7 CLOSURE 152 CONTENTS 4.7.1
WITHIN THE EXHAUST SYSTEM 152 4.7.2 WITHIN THE EXHAUST PLUME 153 4.7.3
WITHIN THE TRANSFER LINE 153 4.7.4 WITHIN THE DILUTION TUNNEL 153 4.7.5
ON THE FILTER 154 4.7.6 GENERAL REMARKS 154 5 MEASUREMENT 157 5.1
INTRODUCTION 157 5.2 PARTICULATE MEASURED CONVENTIONALLY 158 5.2.1
DRAWING A SAMPLE OF EXHAUST GAS 158 5.2.2 DILUTING THE EXHAUST 160 5.2.3
COLLECTION ONTO A FILTER 165 5.2.4 FRACTIONATION BY GASIFICATION 168
5.2.5 FRACTIONATION BY DISSOLUTION 171 5.2.6 CHEMICALLY ASSAYING THE
ORGANIC FRACTION 175 5.2.7 BIOLOGICALLY ASSAYING THE ORGANIC FRACTION
179 5.3 PARTICULATE MEASURED INDIVIDUALLY 182 5.3.1 INERTIAL MOBILITY
183 5.3.2 ELECTRICA! MOBILITY 185 5.3.3 LASER-INDUCED INCANDESCENCE 186
5.3.4 LIGHT SCATTERING 189 5.4 PARTICULATE MEASURED COLLECTIVELY 191
5.4.7 PHOTOACOUSTICITY 191 5.4.2 PHOTOELECTRIC AND DIFFUSION CHARGING 19
3 5.4.3 ELECTRICA! CHARGE 195 5.4.4 FLAME IONISATION 197 5.4.5 MASS 198
5.4.6 SMOKE 200 5.5 CLOSURE 204 5.5.7 PARTICULATE MEASURED
CONVENTIONALLY 204 5.5.2 PARTICULATE MEASURED INDIVIDUALLY 206 5.5.3
PARTICULATE MEASURED COLLECTIVELY 207 5.5.4 FURTHER REMARKS 209 6
CHARACTERISATION 211 6.1 INTRODUCTION 211 6.2 PHYSICAL CHARACTERISATION
212 6.2.7 MICROSTRUCTURE 212 6.2.2 MORPHOLOGY 215 6.2.3 DENSITY 219
6.2.4 SURFACE AREA 222 6.2.5 ELECTRICA! CHARGE 224 6.3 CHEMICAL
CHARACTERISATION 228 6.3.1 CARBONACEOUS FRACTION 228 6.3.2 ASH FRACTION
230 6.3.3 ORGANIC FRACTION 233 6.3.4 SULPHATE FRACTION 237 VIII
PARTICULATE EMISSIONS FROM VEHICLES 6.4 BIOLOGICAL CHARACTERISATION 238
6.5 DEMOGRAPHIC CHARACTERISATION 240 6.6 CLOSURE 244 6.6.1 PHYSICAL
CHARACTERISATION 244 6.6.2 CHEMICAL CHARACTERISATION 246 6.6.3
BIOLOGICAL CHARACTERISATION 246 6.6.4 DEMOGRAPHIC CHARACTERISATION 247
249 249 250 252 254 256 261 262 265 265 266 269 271 275 275 277 279 279
285 291 293 294 300 306 306 308 309 309 310 310 311 GASOLINE ENGINES 313
8.1 INTRODUCTION 313 8.2 A HISTORICAL PERSPECTIVE 314 8.2.1
ORGANOMETALLIC FUEL ADDITIVES AND ASH 314 8.2.2 OXIDATION CATALYSTS AND
SULPHATES 317 8.3 PORT-INJECTION ENGINES 318 8.3.1 FORMATION 319 7.1 7.2
7.3 7.4 7.5 7.6 7.7 7.8 7.9 INTRODUCTION FUEL FORMULATION 7.2.7 SULPHUR
7.2.2 HYDROCARBONS 7.2.3 OXYGENATES 7.2.4 ADDITIVES 7.2.5 VOLATILITY,
CETANE NUMBER AND DENSITY FUEL INJECTION 7.3.1 THE INJECTOR NOZZLE 7.3.2
INJECTION PRESSURE 7.3.3 INJECTION SCHEDULING EXHAUST GAS RECIRCULATION
INDUCTION 7.5.1 EXTERNA! TO THE ENGINE 7.5.2 INTERNAL TO THE ENGINE
LUBRICATION 7.6.1 OIL IN PARTICULATE 7.6.2 PARTICULATE IN OIL
ALTERNATIVE COMBUSTION SYSTEMS AFTERTREATMENT 7.8.1 CATALYTIC CONVERTERS
7.8.2 PARTICULATE FILTERS CLOSURE 7.9.1 FUEL FORMULATION 7.9.2 FUEL
INJECTION 7.9.3 EXHAUST GAS RECIRCULATION (EGR) 7.9.4 INDUCTION 7.9.5
LUBRICATION 7.9.6 ALTERNATIVE COMBUSTION SYSTEMS 7.9.7 AFTERTREATMENT
CONTENTS IX 8.3.2 CHARACTERISATION 322 8.3.3 ABATEMENT 325 8.4
DIRECT-INJECTION ENGINES 326 8.4.1 FORMATION 327 8.4.2 CHARACTERISATION
330 8.4.3 ABATEMENT 333 8.5 TWO-STROKE ENGINES 334 8.6 CLOSURE 338 8.6.1
PORT-INJECTION ENGINES 338 8.6.2 DIRECT-INJECTION ENGINES 339 8.6.3
TWO-STROKE ENGINES 340 9 DISINTEGRATION 341 9.1 INTRODUCTION 341 9.2
ROADS 342 9.3 BRAKES 344 9.4 TYRES 346 9.5 EXHAUSTS 348 9.6 CATALYSTS
349 9.7 CLOSURE 352 9.7.1 ROADS 352 9.7.2 BRAKES 352 9.7.3 TYRES 353
9.7.4 EXHAUSTS 353 9.7.5 CATALYSTS 353 10 TOXICOLOGY 355 10.1
INTRODUCTION 355 10.2 PUBLIC EXPOSURE 356 10.2.1 NANOPARTICLES 360 10.3
PUBLIC HEALTH 362 10.4 PATHOGENESIS 364 10.4.1 PARTICLE DEPOSITION AND
CLEARANCE 364 10.4.2 THE CHEMISTRY AND BIOCHEMISTRY OF PARTICLE-INDUCED
REACTIONS 367 10.4.3 PARTICLE-INDUCED DISEASES 369 10.5 EPIDEMIOLOGY 371
10.6 IN VITRO 375 10.7 IN VIVO 311 10.8 HUMANS 381 10.9 CLOSURE 382
10.9.1 PUBLIC EXPOSURE 382 10.9.2 PUBLIC HEALTH 382 10.9.3 PATHOGENESIS
382 10.9.4 EPIDEMIOLOGY 383 10.9.5 IN VITRO 383 10.9.6 IN VIVO 384
70.9.7 HUMANS 38 4 X PARTICULATE EMISSIONS FROM VEHICLES 10.9.8 WHICH
PARTICULATE FRACTION? 384 10.9.9 HEALTHY ANTIOXIDANT DIET 385 10.10
GLOSSARY OF BIOMEDICAL TERMS 385 11 CLOSURE 387 11.1 RECOMMENDATIONS FOR
RESEARCH 387 11.1.1 SIGNAL-TO-NOISE RATIOS 387 11.1.2 STATUTORY TEST
CYCLES AND REAL EMISSION RATES 388 11.1.3 INSPECTION AND MAINTENANCE 388
11.1.4 THE SOOT SENSOR IN ENGINE AND AFTERTREATMENT MANAGEMENT 388
11.1.5 SURFACE AREA DISTRIBUTION 389 11.1.6 INSTRUMENTATION FOR
NUMBER-BASED LEGISLATION 389 11.1.7 NANOPARTICLES IN REAL EXHAUST PLUMES
(AND THE AMBIENT) 389 11.1.8 HOW SHOULD PRIMARY AND SECONDARY PARTICLES
BE DEMARCATED? 390 11.1.9 WILL GAS-PARTICLE PARTITIONING IN THE WIDER
ENVIRONMENT BE AFFECTED? 390 11.1.10 THE CHEMICAL COMPOSITIONS
OFLNDIVIDUAL PARTICLES 390 11.1.11 TOXICITY AS A FUNCTION OF PARTICLE
SIZE 390 11.2 SMALLER PARTICLES IN LARGER NUMBERS; OR LARGER PARTICLES
IN SMALLER NUMBERS 391 11.3 SMALLER AND SMALLER AND SMALLER 395 11.4
BROADER QUESTIONS OF POLICY 396 FURTHER READING 399 LITERATURE CITED
(CROSS-REFERENCED AGAINST THE TEXT) 401 INDEX 485 |
adam_txt |
PARTICULATE EMISSIONS FROM VEHICLES BY PETER EASTWOOD FORD MOTOR
COMPANY, LTD. JOHN WILEY &. SONS, LTD CONTENTS PREFACE XI ACRONYMS AND
ABBREVIATIONS XIII ABOUT THE AUTHOR XVII 1 INTRODUCTION 1 1.1 AIRTRAFFIC
4 1.2 MOTOR VEHICLES 4 1.3 THE LEGISLATIVE FRAMEWORK 6 2 FUNDAMENTALS 9
2.1 INTRODUCTION 9 2.2 PROPERTIES OF AEROSOL PARTICLES 9 2.2.1 DIAMETER
AND SHAPE 10 2.2.2 SIZE DISTRIBUTION 12 2.2.3 TRANSPORT AND DEPOSITION
14 2.2.4 TRANSFORMATION AND MUTATION 18 2.3 PARTICLES IN THE ATMOSPHERE
22 2.3.1 CHARACTER AND BEHAVIOUR 23 2.3.2 AEROSOLS IN NATURE 27 2.3.3
ANTHROPOGENIC AEROSOLS 30 2.3.4 ENVIRONMENTAL IMPLICATIONS 37 2.4 MOTOR
VEHICLE PARTICULATE 42 2.4.1 SOME TYPICAL PARTICLES DISSECTED 42 2.4.2
WHAT HAPPENS WITHIN THE ENGINE 48 2.4.3 WHAT HAPPENS WITHIN THE EXHAUST
51 2.4.4 NUMBER VERSUS MASS 53 2.5 CLOSURE 55 2.5.1 PROPERTIES OF
AEROSOL PARTICLES 55 2.5.2 PARTICLES IN THE ATMOSPHERE 57 2.5.3 MOTOR
VEHICLE PARTICULATE 58 VI PARTICULATE EMISSIONS FROM VEHICLES 3
FORMATION I: COMPOSITION 61 3.1 INTRODUCTION 61 3.2 CARBONACEOUS
FRACTION: I. CLASSICAL MODELS 62 3.2.1 EMPIRICISMS 65 3.2.2 INCEPTION 68
3.2.3 SURFACE GROWTH 73 3.2.4 AGGLOMERATION 75 3.2.5 OXIDATION 79 3.3
CARBONACEOUS FRACTION: II. THE COMBUSTING PLUME 84 3.3.1 HISTORICAL
OVERVIEW 85 3.3.2 PREMIXED BURN 86 3.3.3 MIXING-CONTROLLED BURN 88 3.3.4
LATE BURN 90 3.4 CARBONACEOUS FRACTION: III. WALL INTERACTIONS 91 3.4.1
THEORETICAL 92 3.4.2 EXPERIMENTAL 93 3.5 ASH FRACTION 95 3.5.1 CHEMICAL
REACTIONS 96 3.5.2 GAS-TO-PARTICLE CONVERSION 100 3.6 ORGANIC FRACTION
104 3.6.1 PREPARATORY CHEMICAL REACTIONS 10 4 3.6.2 CHEMICAL REACTIONS
IN THE EXHAUST 109 3.6.3 GAS-TO-PARTICLE CONVERSION: MODELS 112 3.6.4
GAS-TO-PARTICLE CONVERSION: MEASUREMENTS 117 3.6.5 WHITE SMOKE 119 3.7
SULPHATE FRACTION 122 3.7.1 CHEMICAL REACTIONS 122 3.7.2 GAS-TO-PARTICLE
CONVERSION 125 3.8 CLOSURE 129 3.8.1 CARBONACEOUS FRACTION I. CLASSICAL
MODELS 129 3.8.2 CARBONACEOUS FRACTION II. THE COMBUSTING PLUME 131
3.8.3 CARBONACEOUS FRACTION III. WALL INTERACTIONS 132 3.8.4 ASH
FRACTION 132 3.8.5 ORGANIC FRACTION 133 3.8.6 SULPHATE FRACTION 134 4
FORMATION II: LOCATION 135 4.1 INTRODUCTION 135 4.2 WITHIN THE EXHAUST
SYSTEM 136 4.2.1 STORAGE AND RELEASE 137 4.2.2 DEPOSITION WITHIN
CATALYSTS 139 4.3 WITHIN THE EXHAUST PLUME 141 4.3.1 LONG-TERM AGEING IN
THE ATMOSPHERE 145 4.4 WITHIN THE TRANSFER LINE 145 4.5 WITHIN THE
DILUTION TUNNEL 147 4.6 ON THE FILTER 150 4.7 CLOSURE 152 CONTENTS 4.7.1
WITHIN THE EXHAUST SYSTEM 152 4.7.2 WITHIN THE EXHAUST PLUME 153 4.7.3
WITHIN THE TRANSFER LINE 153 4.7.4 WITHIN THE DILUTION TUNNEL 153 4.7.5
ON THE FILTER 154 4.7.6 GENERAL REMARKS 154 5 MEASUREMENT 157 5.1
INTRODUCTION 157 5.2 PARTICULATE MEASURED CONVENTIONALLY 158 5.2.1
DRAWING A SAMPLE OF EXHAUST GAS 158 5.2.2 DILUTING THE EXHAUST 160 5.2.3
COLLECTION ONTO A FILTER 165 5.2.4 FRACTIONATION BY GASIFICATION 168
5.2.5 FRACTIONATION BY DISSOLUTION 171 5.2.6 CHEMICALLY ASSAYING THE
ORGANIC FRACTION 175 5.2.7 BIOLOGICALLY ASSAYING THE ORGANIC FRACTION
179 5.3 PARTICULATE MEASURED INDIVIDUALLY 182 5.3.1 INERTIAL MOBILITY
183 5.3.2 ELECTRICA! MOBILITY 185 5.3.3 LASER-INDUCED INCANDESCENCE 186
5.3.4 LIGHT SCATTERING 189 5.4 PARTICULATE MEASURED COLLECTIVELY 191
5.4.7 PHOTOACOUSTICITY 191 5.4.2 PHOTOELECTRIC AND DIFFUSION CHARGING 19
3 5.4.3 ELECTRICA! CHARGE 195 5.4.4 FLAME IONISATION 197 5.4.5 MASS 198
5.4.6 SMOKE 200 5.5 CLOSURE 204 5.5.7 PARTICULATE MEASURED
CONVENTIONALLY 204 5.5.2 PARTICULATE MEASURED INDIVIDUALLY 206 5.5.3
PARTICULATE MEASURED COLLECTIVELY 207 5.5.4 FURTHER REMARKS 209 6
CHARACTERISATION 211 6.1 INTRODUCTION 211 6.2 PHYSICAL CHARACTERISATION
212 6.2.7 MICROSTRUCTURE 212 6.2.2 MORPHOLOGY 215 6.2.3 DENSITY 219
6.2.4 SURFACE AREA 222 6.2.5 ELECTRICA! CHARGE 224 6.3 CHEMICAL
CHARACTERISATION 228 6.3.1 CARBONACEOUS FRACTION 228 6.3.2 ASH FRACTION
230 6.3.3 ORGANIC FRACTION 233 6.3.4 SULPHATE FRACTION 237 VIII
PARTICULATE EMISSIONS FROM VEHICLES 6.4 BIOLOGICAL CHARACTERISATION 238
6.5 DEMOGRAPHIC CHARACTERISATION 240 6.6 CLOSURE 244 6.6.1 PHYSICAL
CHARACTERISATION 244 6.6.2 CHEMICAL CHARACTERISATION 246 6.6.3
BIOLOGICAL CHARACTERISATION 246 6.6.4 DEMOGRAPHIC CHARACTERISATION 247
249 249 250 252 254 256 261 262 265 265 266 269 271 275 275 277 279 279
285 291 293 294 300 306 306 308 309 309 310 310 311 GASOLINE ENGINES 313
8.1 INTRODUCTION 313 8.2 A HISTORICAL PERSPECTIVE 314 8.2.1
ORGANOMETALLIC FUEL ADDITIVES AND ASH 314 8.2.2 OXIDATION CATALYSTS AND
SULPHATES 317 8.3 PORT-INJECTION ENGINES 318 8.3.1 FORMATION 319 7.1 7.2
7.3 7.4 7.5 7.6 7.7 7.8 7.9 INTRODUCTION FUEL FORMULATION 7.2.7 SULPHUR
7.2.2 HYDROCARBONS 7.2.3 OXYGENATES 7.2.4 ADDITIVES 7.2.5 VOLATILITY,
CETANE NUMBER AND DENSITY FUEL INJECTION 7.3.1 THE INJECTOR NOZZLE 7.3.2
INJECTION PRESSURE 7.3.3 INJECTION SCHEDULING EXHAUST GAS RECIRCULATION
INDUCTION 7.5.1 EXTERNA! TO THE ENGINE 7.5.2 INTERNAL TO THE ENGINE
LUBRICATION 7.6.1 OIL IN PARTICULATE 7.6.2 PARTICULATE IN OIL
ALTERNATIVE COMBUSTION SYSTEMS AFTERTREATMENT 7.8.1 CATALYTIC CONVERTERS
7.8.2 PARTICULATE FILTERS CLOSURE 7.9.1 FUEL FORMULATION 7.9.2 FUEL
INJECTION 7.9.3 EXHAUST GAS RECIRCULATION (EGR) 7.9.4 INDUCTION 7.9.5
LUBRICATION 7.9.6 ALTERNATIVE COMBUSTION SYSTEMS 7.9.7 AFTERTREATMENT
CONTENTS IX 8.3.2 CHARACTERISATION 322 8.3.3 ABATEMENT 325 8.4
DIRECT-INJECTION ENGINES 326 8.4.1 FORMATION 327 8.4.2 CHARACTERISATION
330 8.4.3 ABATEMENT 333 8.5 TWO-STROKE ENGINES 334 8.6 CLOSURE 338 8.6.1
PORT-INJECTION ENGINES 338 8.6.2 DIRECT-INJECTION ENGINES 339 8.6.3
TWO-STROKE ENGINES 340 9 DISINTEGRATION 341 9.1 INTRODUCTION 341 9.2
ROADS 342 9.3 BRAKES 344 9.4 TYRES 346 9.5 EXHAUSTS 348 9.6 CATALYSTS
349 9.7 CLOSURE 352 9.7.1 ROADS 352 9.7.2 BRAKES 352 9.7.3 TYRES 353
9.7.4 EXHAUSTS 353 9.7.5 CATALYSTS 353 10 TOXICOLOGY 355 10.1
INTRODUCTION 355 10.2 PUBLIC EXPOSURE 356 10.2.1 NANOPARTICLES 360 10.3
PUBLIC HEALTH 362 10.4 PATHOGENESIS 364 10.4.1 PARTICLE DEPOSITION AND
CLEARANCE 364 10.4.2 THE CHEMISTRY AND BIOCHEMISTRY OF PARTICLE-INDUCED
REACTIONS 367 10.4.3 PARTICLE-INDUCED DISEASES 369 10.5 EPIDEMIOLOGY 371
10.6 IN VITRO 375 10.7 IN VIVO 311 10.8 HUMANS 381 10.9 CLOSURE 382
10.9.1 PUBLIC EXPOSURE 382 10.9.2 PUBLIC HEALTH 382 10.9.3 PATHOGENESIS
382 10.9.4 EPIDEMIOLOGY 383 10.9.5 IN VITRO 383 10.9.6 IN VIVO 384
70.9.7 HUMANS 38 4 X PARTICULATE EMISSIONS FROM VEHICLES 10.9.8 WHICH
PARTICULATE FRACTION? 384 10.9.9 HEALTHY ANTIOXIDANT DIET 385 10.10
GLOSSARY OF BIOMEDICAL TERMS 385 11 CLOSURE 387 11.1 RECOMMENDATIONS FOR
RESEARCH 387 11.1.1 SIGNAL-TO-NOISE RATIOS 387 11.1.2 STATUTORY TEST
CYCLES AND REAL EMISSION RATES 388 11.1.3 INSPECTION AND MAINTENANCE 388
11.1.4 THE SOOT SENSOR IN ENGINE AND AFTERTREATMENT MANAGEMENT 388
11.1.5 SURFACE AREA DISTRIBUTION 389 11.1.6 INSTRUMENTATION FOR
NUMBER-BASED LEGISLATION 389 11.1.7 NANOPARTICLES IN REAL EXHAUST PLUMES
(AND THE AMBIENT) 389 11.1.8 HOW SHOULD PRIMARY AND SECONDARY PARTICLES
BE DEMARCATED? 390 11.1.9 WILL GAS-PARTICLE PARTITIONING IN THE WIDER
ENVIRONMENT BE AFFECTED? 390 11.1.10 THE CHEMICAL COMPOSITIONS
OFLNDIVIDUAL PARTICLES 390 11.1.11 TOXICITY AS A FUNCTION OF PARTICLE
SIZE 390 11.2 SMALLER PARTICLES IN LARGER NUMBERS; OR LARGER PARTICLES
IN SMALLER NUMBERS 391 11.3 SMALLER AND SMALLER AND SMALLER 395 11.4
BROADER QUESTIONS OF POLICY 396 FURTHER READING 399 LITERATURE CITED
(CROSS-REFERENCED AGAINST THE TEXT) 401 INDEX 485 |
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id | DE-604.BV023027722 |
illustrated | Illustrated |
index_date | 2024-07-02T19:15:46Z |
indexdate | 2024-07-20T09:28:07Z |
institution | BVB |
isbn | 9780470724552 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016231663 |
oclc_num | 180204973 |
open_access_boolean | |
owner | DE-703 DE-634 DE-83 |
owner_facet | DE-703 DE-634 DE-83 |
physical | XV, 493 S. Ill., graph. Darst. |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Wiley |
record_format | marc |
series2 | Wiley professional engineering publishing series |
spelling | Eastwood, Peter Verfasser aut Particulate emissions from vehicles by Peter Eastwood Chichester [u.a.] Wiley 2008 XV, 493 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Wiley professional engineering publishing series Automobiles Motors Exhaust gas Abgasemission (DE-588)4141041-5 gnd rswk-swf Einspritzmotor (DE-588)4151409-9 gnd rswk-swf Abgasemission (DE-588)4141041-5 s Einspritzmotor (DE-588)4151409-9 s DE-604 http://deposit.dnb.de/cgi-bin/dokserv?id=3036211&prov=M&dok_var=1&dok_ext=htm Beschreibung für Leser http://www.gbv.de/dms/ilmenau/toc/54603814X.PDF Inhaltsverzeichnis GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016231663&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Eastwood, Peter Particulate emissions from vehicles Automobiles Motors Exhaust gas Abgasemission (DE-588)4141041-5 gnd Einspritzmotor (DE-588)4151409-9 gnd |
subject_GND | (DE-588)4141041-5 (DE-588)4151409-9 |
title | Particulate emissions from vehicles |
title_auth | Particulate emissions from vehicles |
title_exact_search | Particulate emissions from vehicles |
title_exact_search_txtP | Particulate emissions from vehicles |
title_full | Particulate emissions from vehicles by Peter Eastwood |
title_fullStr | Particulate emissions from vehicles by Peter Eastwood |
title_full_unstemmed | Particulate emissions from vehicles by Peter Eastwood |
title_short | Particulate emissions from vehicles |
title_sort | particulate emissions from vehicles |
topic | Automobiles Motors Exhaust gas Abgasemission (DE-588)4141041-5 gnd Einspritzmotor (DE-588)4151409-9 gnd |
topic_facet | Automobiles Motors Exhaust gas Abgasemission Einspritzmotor |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3036211&prov=M&dok_var=1&dok_ext=htm http://www.gbv.de/dms/ilmenau/toc/54603814X.PDF http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016231663&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT eastwoodpeter particulateemissionsfromvehicles |
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