The hydrogen economy: opportunities and challenges
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Cambridge Univ. Press
2009
|
Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | XXIII, 646 S. graph. Darst., Kt. |
ISBN: | 9780521882163 |
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adam_text | IMAGE 1
THE HYDROGEN ECONOMY
OPPORTUNITIES AND CHALLENGES EDITED BY MICHAEL BALL SHELL DEN HAAG, THE
NETHERLANDS
MARTIN WIETSCHEL FRAUNHOFER INSTITUTE FOR SYSTEMS AND INNOVATION
RESEARCH KARLSRUHE, GERMANY
CAMBRIDGE UNIVERSITY PRESS
IMAGE 2
CONTENTS
LIST OF MAIN CONTRIBUTORS PAGE XIII
PREFACE XV
ACKNOWLEDGEMENTS XVII
LIST OF ABBREVIATIONS XVIII
1 SCOPE OF THE BOOK 1
M. BALL AND M. WIETSCHEL 2 WHY HYDROGEN? 8
M. BALL 2.1 THE CHALLENGES OF TODAY S ENERGY SYSTEM 8
2.2 HISTORICAL TRANSITIONS OF ENERGY SOURCES 32
2.3 PROSPECTS FOR A HYDROGEN ECONOMY 37
2.4 SUMMARY 41
3 NON-RENEWABLE ENERGY RESOURCES: FOSSIL FUELS - SUPPLY AND FUTURE
AVAILABILITY 46
M. BALL 3.1 PROJECTIONS ON THE FUTURE DEVELOPMENT OF GLOBAL ENERGY
DEMAND 46
3.2 GENERAL CLASSIFICATION OF RESERVES AND RESOURCES 52
3.3 OIL 56
3.4 NATURAL GAS 86
3.5 COAL 100
3.6 SUMMARY 107
4 NON-RENEWABLE ENERGY RESOURCES: NUCLEAR FUELS 115
M. BALL AND F.A. TORO 4.1 NUCLEAR FUELS 115
4.2 SUMMARY 133
5 ASSESSMENT OF THE POTENTIALS FOR RENEWABLE ENERGY SOURCES 135 G.
RESCH, A. HELD, F.A. TORO AND M. RAGWITZ 5.1 POTENTIAL CATEGORIES 135
5.2 THE GLOBAL POTENTIAL FOR RENEWABLE ENERGY SOURCES (RES) 136
IMAGE 3
VIII CONTENTS
5.3 THE EUROPEAN POTENTIAL FOR RES 144
5.4 GLOBAL BIOFUEL POTENTIAL 160
5.5 SUMMARY 161
6 CARBON CAPTURE AND STORAGE 168
C. CREMER - - --
6.1 WHY CARBON CAPTURE AND STORAGE? 168
6.2 CAPTURE OF CO 2 169
6.3 TRANSPORT OF CO 2 172
6.4 STORAGE OF CO 2 175
6.5 COSTS OF CCS 182
6.6 LEGAL AND REGULATORY FRAMEWORK FOR CO 2 CAPTURE, TRANSPORT AND
STORAGE 184
6.7 THE PUBLIC PERCEPTION OF CO 2 CAPTURE AND STORAGE 190
6.8 CHALLENGES FOR IMPLEMENTATION OF CCS 192
6.9 SUMMARY 193
7 ENERGY-CHAIN ANALYSIS OF HYDROGEN AND ITS COMPETING ALTERNATIVE FUELS
FOR TRANSPORT 199
W. WEINDORF AND U. BIINGER 7.1 OVERVIEW OF ALTERNATIVE FUEL OPTIONS 199
7.2 INTRODUCTION TO ENERGY-CHAIN ANALYSIS 204
7.3 CHARACTERISTICS OF ALTERNATIVE FUEL SUPPLY 206
7.4 VEHICLE DRIVE SYSTEMS 223
7.5 WELL-TO-WHEEL ANALYSIS (GHG EMISSIONS AND COSTS) 224 7.6 IMPACT OF
ALTERNATIVE FUELS ON RESOURCE AVAILABILITY 227
7.7 PORTFOLIO ANALYSIS 228
7.8 CRITICAL REFLECTION ON WTW STUDIES 231
7.9 BATTERY-ELECTRIC TECHNOLOGY 231
7.10 CURRENT PRODUCTION OF ALTERNATIVE TRANSPORTATION FUELS 241 7.11
POLICY MEASURES TO PROMOTE BIOFUELS AND GHG-EMISSIONS REDUCTION IN THE
TRANSPORT SECTOR 243
7.12 ADVANTAGES AND DISADVANTAGES OF DIFFERENT TRANSPORTATION FUELS 244
7.13 STATIONARY HYDROGEN PATHWAYS 246
7.14 SUMMARY 248
8 HYDROGEN TODAY 254
M. WIETSCHEL, M. BALL AND P. SEYDEL 8.1 HYDROGEN IN THE TRANSPORT SECTOR
254
8.2 HYDROGEN ROADMAPS 260
8.3 SOCIAL ACCEPTANCE 264
8.4 REGULATIONS, CODES AND STANDARDS 267
8.5 SUMMARY 267
IMAGE 4
CONTENTS IX
9 FUNDAMENTAL PROPERTIES OF HYDROGEN 271
M.-FICHTNER AND F. IDRISSOVA 9.1 DISCOVERY AND OCCURRENCE 271
9.2 ATOMIC STRUCTURE AND ISOTOPES 271
9.3 CHEMICAL AND PHYSICAL PROPERTIES 272
9.4 ADIABATIC EXPANSION 274
9.5 ENERGY CONTENT 275
9.6 SUMMARY 276
10 HYDROGEN PRODUCTION 277
M. BALL, W. WEINDORF AND U. BIINGER 10.1 OVERVIEW OF PRODUCTION
PROCESSES 277
10.2 STEAM REFORMING OF NATURAL GAS 280
10.3 COAL GASIFICATION 283
10.4 BIOMASS GASIFICATION 288
10.5 ELECTROLYSIS 290
10.6 OTHER HYDROGEN-PRODUCTION METHODS 293
10.7 HYDROGEN PURIFICATION 296
10.8 INDUSTRIAL USE OF HYDROGEN 297
10.9 AVAILABILITY OF INDUSTRIAL SURPLUS HYDROGEN 299
10.10 SUMMARY 303
11 HYDROGEN STORAGE 309
M. FICHTNER 11.1 REQUIREMENTS FOR HYDROGEN STORAGE 309
11.2 OVERVIEW OF HYDROGEN STORAGE OPTIONS 311
11.3 HYDROGEN COMPRESSION AND LIQUEFACTION 317
11.4 HYDROGEN STORAGE IN STATIONARY APPLICATIONS AND FUEL STATIONS 317
11.5 HYDROGEN SAFETY 318
11.6 SUMMARY 319
12 HYDROGEN DISTRIBUTION . 322
M. BALL, W. WEINDORF AND U. BIINGER 12.1 TRANSPORT OPTIONS FOR HYDROGEN
322
12.2 HYDROGEN REFUELLING STATIONS 338
12.3 SUMMARY 345
13 KEY ROLE OF FUEL CELLS 348
F. MARSCHEIDER-WEIDEMANN, E. SCHIRRMEISTER AND A. ROSER 13.1 HISTORICAL
DEVELOPMENT OF FUEL CELLS 348
13.2 FUEL CELLS IN A HYDROGEN ECONOMY 349
13.3 PRINCIPLES OF FUEL CELLS 350
13.4 TYPES OF FUEL CELL 352
13.5 STATUS OF FUEL-CELL DEVELOPMENT AND APPLICATION 359
13.6 SECTORAL CHANGES INDUCED BY FUEL CELLS 369
IMAGE 5
CONTENTS
13.7 IMPACTS OF FUEL CELLS ON THE SERVICE SECTOR 376
13.8 SUMMARY 380
14 HYDROGEN-INFRASTRUCTURE BUILD-UP IN EUROPE 385
M. BALL, P. SEYDEL, M. WIETSCHEL AND C. STILLER 14.1 THE NEED FOR A
HYDROGEN-INFRASTRUCTURE ANALYSIS 385
14.2 TOOLS FOR THE ASSESSMENT OF HYDROGEN-INTRODUCTION STRATEGIES 387
14.3 A MODEL-BASED APPROACH FOR HYDROGEN-INFRASTRUCTURE ANALYSIS - THE
MOREHYS MODEL 390
14.4 GENERAL INPUT DATA FOR THE MOREHYS MODEL 400
14.5 CASE STUDY: GERMANY 410
14.6 CONSTRUCTING A PAN-EUROPEAN HYDROGEN INFRASTRUCTURE 434 14.7 GLOBAL
HYDROGEN SCENARIOS 439
14.8 SUMMARY AND CONCLUSIONS 443
15 BUILDING A HYDROGEN INFRASTRUCTURE IN THE USA 454
J. OGDEN AND C. YANG 15.1 INTRODUCTION - TRANSPORTATION-ENERGY CONTEXT
IN THE USA 454 15.2 HYDROGEN-ENERGY POLICY IN THE USA 455
15.3 RESOURCES FOR HYDROGEN PRODUCTION IN THE USA 457
15.4, SCENARIO ANALYSIS OF US HYDROGEN INFRASTRUCTURE AND VEHICLE COSTS
461
15.5 PROJECTIONS OF US HYDROGEN DEMAND FOR VEHICLES TO 2030 462 15.6
HYDROGEN TECHNOLOGY AND COST ASSUMPTIONS 465
15.7 FUEL-CELL-VEHICLE COST ASSUMPTIONS 465
15.8 MODELLING HYDROGEN-INFRASTRUCTURE BUILD-UP USING THE SSCHISM MODEL
467
15.9 US HYDROGEN-INFRASTRUCTURE RESULTS 468
15.10 BENEFITS OF HYDROGEN VEHICLES: MODELLING US FLEET REDUCTIONS IN
GREENHOUSE-GAS EMISSIONS AND GASOLINE USE 472
15.11 TRANSITION MODELLING: ESTIMATING THE INVESTMENTS REQUIRED TO BRING
HYDROGEN AND FUEL-CELL VEHICLES TO COST COMPETITIVENESS 474
15.12 REGIONAL CASE STUDIES 476
15.13 SUMMARY 477
16 HYDROGEN AND THE ELECTRICITY SECTOR 482
M. WIETSCHEL, C. CREMER AND M. BALL 16.1 HYDROGEN FROM INTERMITTENT
RENEWABLE-ENERGY SOURCES 482 16.2 CO-PRODUCTION OF HYDROGEN AND
ELECTRICITY 496
16.3 WHERE BEST TO USE RENEWABLES - ELECTRICITY SECTOR OR TRANSPORT
SECTOR? 502
16.4 SUMMARY 504
IMAGE 6
CONTENTS XI
17 HYDROGEN CORRIDORS 507
M. WIETSCHEL AND U. HASENAUER 17.1 WHAT IS A HYDROGEN CORRIDOR? 507
17.2 WHY HYDROGEN CORRIDORS? 508
17.3 OVERVIEW OF HYDROGEN-CORRIDOR STUDIES 509
17.4 ENERGY-CORRIDOR OPTIMISATION FOR A EUROPEAN MARKET OF HYDROGEN 514
17.5 SUMMARY 526
18 MACROECONOMIC IMPACTS OF HYDROGEN 529
M. WIETSCHEL, S. JOKISCH, S. BOETERS, W. SCHADE AND P. SEYDEL 18.1
INTRODUCTION 529
18.2 INTERNATIONAL COMPETITIVENESS OF ECONOMIES IN THE FIELD OF HYDROGEN
530
18.3 HYDROGEN-PENETRATION SCENARIOS AND INVESTMENTS IN HYDROGEN
TECHNOLOGIES 534
18.4 INPUT-OUTPUT MODEL: ISIS 537
18.5 COMPUTABLE GENERAL EQUILIBRIUM MODEL: PACE-T(H 2 ) 544 18.6
SYSTEM-DYNAMICS MODEL: ASTRA 549
18.7 SUMMARY AND CONCLUSIONS 557
19 SUSTAINABLE TRANSPORT VISIONS: THE ROLE OF HYDROGEN AND FUEL-CELL
VEHICLE TECHNOLOGIES 563
M. WIETSCHEL AND C. DOLL 19.1 INTRODUCTION 563
19.2 ECONOMIC DEVELOPMENT OF THE TRANSPORT SECTOR 564
19.3 SOCIAL EFFECTS OF TRANSPORTATION 565
19.4 EXITS TOWARDS A SUSTAINABLE FUTURE 580
19.5 CONTRIBUTION OF HYDROGEN-BASED PROPULSION SYSTEMS 585 19.6 SUMMARY
AND CONCLUSIONS 593
20 ENERGY-EFFICIENT SOLUTIONS NEEDED - PAVING THE WAY FOR HYDROGEN 599
E. JOCHEM 20.1 PRESENT ENERGY LOSSES - WASTEFUL TRADITIONS AND OBSTACLES
TO THE USE OF HYDROGEN 599
20.2 HOW TO SPEED UP MAJOR ENERGY-EFFICIENT INNOVATIONS IN MATERIAL AND
ENERGY EFFICIENCY 602
20.3 THE FOCUS ON MAJOR IMPROVEMENTS IN ENERGY-EFFICIENT SOLUTIONS 603
20.4 OBSTACLES AND MARKET IMPERFECTIONS - BUT ALSO MOTIVATIONS AND
OPPORTUNITIES 606
20.5 POLICY ASPECTS SUPPORTING THE EFFICIENCY PATH TO A SUSTAINABLE
ENERGY SYSTEM 609
20.6 SUMMARY 610
IMAGE 7
CONTENTS
21 THE FUTURE OF HYDROGEN - OPPORTUNITIES AND CHALLENGES 613
M. WIETSCHEL AND M. BALL 21.1 CONTEXT - THE ENERGY CHALLENGE OF THE
FUTURE 613
21.2 THE CHALLENGE FOR ROAD TRANSPORT 614
21.3 ALTERNATIVE FUELS AND PROPULSION SYSTEMS 616
21.4 WHY HYDROGEN? 623
21.5 THE ROLE OF FUEL CELLS 625
21.6 HYDROGEN STORAGE 626
21.7 SUPPLY OF HYDROGEN 626
21.8 HYDROGEN INFRASTRUCTURE BUILD-UP 630
21.9 HYDROGEN AND THE ELECTRICITY SECTOR 632
21.10 INTERNATIONAL COMPETITIVENESS AND ECONOMIC IMPACTS 633 21.11
GLOBAL HYDROGEN SCENARIOS 635
21.12 PERSPECTIVES 636
FURTHER READING 640
INDEX 642
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spellingShingle | The hydrogen economy opportunities and challenges Hydrogen as fuel Hydrogen / Research / Economic aspects Hydrogen industry Alternative fuel vehicles Wasserstoffenergietechnik (DE-588)4121905-3 gnd Wasserstoff (DE-588)4064784-5 gnd Energieversorgung (DE-588)4014736-8 gnd |
subject_GND | (DE-588)4121905-3 (DE-588)4064784-5 (DE-588)4014736-8 |
title | The hydrogen economy opportunities and challenges |
title_auth | The hydrogen economy opportunities and challenges |
title_exact_search | The hydrogen economy opportunities and challenges |
title_full | The hydrogen economy opportunities and challenges ed. by Michael Ball ... |
title_fullStr | The hydrogen economy opportunities and challenges ed. by Michael Ball ... |
title_full_unstemmed | The hydrogen economy opportunities and challenges ed. by Michael Ball ... |
title_short | The hydrogen economy |
title_sort | the hydrogen economy opportunities and challenges |
title_sub | opportunities and challenges |
topic | Hydrogen as fuel Hydrogen / Research / Economic aspects Hydrogen industry Alternative fuel vehicles Wasserstoffenergietechnik (DE-588)4121905-3 gnd Wasserstoff (DE-588)4064784-5 gnd Energieversorgung (DE-588)4014736-8 gnd |
topic_facet | Hydrogen as fuel Hydrogen / Research / Economic aspects Hydrogen industry Alternative fuel vehicles Wasserstoffenergietechnik Wasserstoff Energieversorgung |
url | http://www.gbv.de/dms/zbw/595949207.pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018630780&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT ballmichael thehydrogeneconomyopportunitiesandchallenges |
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