Handbook of hydrogen storage: new materials for future energy storage
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2010
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XX, 353 S. Ill., graph. Darst. 25 cm |
ISBN: | 9783527322732 |
Internformat
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adam_text |
VIL CONTENTS FOREWORD V PREFACE XV LIST OF CONTRIBUTORS XIX 1 STORAGE OF
HYDROGEN IN THE PURE FORM 1 MANFRED KLELL 1.1 INTRODUCTION 1 1.2
THERMODYNAMIC STATE AND PROPERTIES 1 1.2.1 VARIABLES OF STATE 2 1.2.2
T^S-DIAGRAM 4 1.2.2.1 JOULE-THOMSON COEFFICIENT 5 1.2.3 PROPERTIES 5 1.3
GASEOUS STORAGE 8 1.3.1 COMPRESSION AND EXPANSION 10 1.3.2 TANK SYSTEMS
12 1.3.3 HIGH PRESSURE INFRASTRUCTURE 13 1.4 LIQUID STORAGE 15 1.4.1
LIQUEFACTION 15 1.4.2 THERMODYNAMIC ANALYSIS 17 1.4.2.1 PRESSURE
BUILD-UP 21 1.4.2.2 BOIL-OFF 23 1.4.2.3 COOLING AND FILLING 24 1.4.2.4
BACK-GAS 27 1.4.3 TANK SYSTEMS 28 1.4.4 DISTRIBUTION FACILITIES 30 1.5
HYBRID STORAGE JO 1.5.1 SUPERCRITICAL STORAGE 33 1.5.2 HYDROGEN SLUSH 32
1.6 COMPARISON OF ENERGY DENSITIES 32 1.7 CONCLUSION 35 REFERENCE
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/996919279 DIGITALISIERT
DURCH VIII CONTENTS 2 2.1 2.2 2.3 2.4 2.5 2.6 PHYSISORPTION IN POROUS
MATERIALS 39 BARBARA PANELLA AND MICHAEL HIRSCHER INTRODUCTION 39 CARBON
MATERIALS 44 ORGANIC POLYMERS 48 ZEOLITES 50 COORDINATION POLYMERS 51
CONCLUSIONS 58 REFERENCES 59 3 CLATHRATE HYDRATES 63 ALIREZA SHARIATI,
SONA RAEISSI, AND COR]. PETERS 3.1 INTRODUCTION 63 3.2 CLATHRATE HYDRATE
STRUCTURES 64 3.3 HYDROGEN CLATHRATE HYDRATE 66 3.4 KINETIC ASPECTS OF
HYDROGEN CLATHRATE HYDRATE 73 3.5 MODELING OF HYDROGEN CLATHRATE
HYDRATES 74 3.6 FUTURE OF HYDROGEN STORAGE 76 REFERENCES 77 4 METAL
HYDRIDES 81 JACQUES HUOT 4.1 INTRODUCTION 81 4.2 ELEMENTAL HYDRIDES 82
4.2.1 IONIC OR SALINE HYDRIDES 82 4.2.2 COVALENT HYDRIDES 82 4.2.3
METALLIC HYDRIDES 83 CONTENTS IX 4.5.8 DECREPITATION 99 4.6 METAL
HYDRIDES SYSTEMS 200 4.6.1 AB 5 100 4.6.2 TIFE 101 4.6.3 AB 2 LAVES
PHASES 102 4.6.4 BCC SOLID SOLUTION 103 4.7 NANOCRYSTALLINE MG AND
MG-BASED ALLOYS 104 AJA HYDROGEN SORPTION KINETICS 105 4.7.2 REDUCTION
OF THE HEAT OF FORMATION 107 4.7.3 SEVERE PLASTIC DEFORMATION TECHNIQUES
108 4.8 CONCLUSION 109 4.8.1 ALLOYS DEVELOPMENT 109 4.8.2 SYNTHESIS 110
4.8.3 SYSTEM ENGINEERING 120 REFERENCES 220 5 COMPLEX HYDRIDES 227
CLAUDIA WEIDENTHALER AND MICHAEL FELDERHOFF 5.1 INTRODUCTION 127 5.2
COMPLEX BOROHYDRIDES 228 5.2.1 INTRODUCTION 118 5.2.2 STABILITY OF METAL
BOROHYDRIDES 228 5.2.3 DECOMPOSITION OF COMPLEX BOROHYDRIDES 229 5.2.4
LITHIUM BOROHYDRIDE, LIBH 4 220 5.2.4.1 SYNTHESIS AND CRYSTAL STRUCTURE
220 5.2.4.2 DECOMPOSITION OF LIBH 4 220 5.2.5 SODIUM BOROHYDRIDE, NABH 4
X CONTENTS 5.3.2 LIALH 4 230 5.3.2.1 SYNTHESIS AND CRYSTAL STRUCTURE 230
5.3.2.2 DECOMPOSITION OF UEAIH4 130 5.3.2.3 ROLE OF CATALYSTS 232 5.3.3 U
3 A1H 5 232 5.3.3.1 SYNTHESIS AND CRYSTAL STRUCTURE 132 5.3.4 NAALH 4
233 5.3.4.1 SYNTHESIS AND CRYSTAL STRUCTURE 133 5.3.4.2 DECOMPOSITION
AND THERMODYNAMICS OF NAALH 4 233 5.3.4.3 ROLE OF CATALYSTS 135 5.3.5 NA
5 ALH 6 138 5.3.5.1 SYNTHESIS AND CRYSTAL STRUCTURE 138 5.3.6 KA1H 4 139
5.3.6.1 SYNTHESIS AND CRYSTAL STRUCTURE 139 5.3.6.2 DECOMPOSITION OF
KA1H 4 240 5.3.7 MG(ALH 4 ) 2 140 5.3.7.1 SYNTHESIS AND CRYSTAL
STRUCTURE 140 5.3.7.2 DECOMPOSITON 242 5.3.8 CA(ALH 4 ) 2 242 5.3.8.1
SYNTHESIS AND CRYSTAL STRUCTURE 142 5.3.8.2 DECOMPOSITION OF CA(ALH 4 )
CONTENTS XI 6.3 STRUCTURAL PROPERTIES OF AMIDE AND IMIDE 367 6.3.1
LITHIUM AMIDE AND IMIDE 268 6.3.2 SODIUM AMIDE 272 6.3.3 MAGNESIUM AMIDE
AND IMIDE 272 6.3.4 OTHER AMIDES AND IMIDES 172 6.4 PROSPECTS OF AMIDE
AND IMIDE SYSTEMS 173 6.4.1 KINETIC ANALYSIS AND IMPROVEMENT 173 6.4.2
NH 3 AMOUNT DESORBED FROM METAL-N-H SYSTEMS 276 6.4.3 PRACTICAL
PROPERTIES 277 6.5 PROPOSED MECHANISM OF THE HYDROGEN STORAGE REACTION
IN THE METAL-N-H SYSTEMS 278 6.5.1 AMMONIA-MEDIATED MODEL FOR HYDROGEN
DESORPTION 178 6.5.2 DIRECT SOLID-SOLID REACTION MODEL FOR HYDROGEN
DESORPTION 280 6.5.3 HYDROGENATING MECHANISM OF THE II-MG-N-H SYSTEM 282
6.6 SUMMARY 182 REFERENCES 182 7 TAILORING REACTION ENTHALPIES OF
HYDRIDES 187 MARTIN DORNHEIM 7.1 INTRODUCTION 187 7.2 THERMODYNAMIC
LIMITATIONS OF LIGHTWEIGHT HYDRIDES 189 7.3 STRATEGIES TO ALTER THE
REACTION ENTHALPIES OF HYDRIDES 393 7.3.1 THERMODYNAMIC TUNING OF SINGLE
PHASE HYDRIDES BY SUBSTITUTION ON THE METAL SITE 191 7.3.1.1 LIGHTWEIGHT
HYDRIDES FORMING STABLE COMPOUNDS IN THE DEHYDROGENATE XII I CONTENTS
8.4.3 8.5 8.6 8.7 8.7.1 8.7.2 DECOMPOSITION OF AMMONIA BORANE IN
HETEROGENEOUS SYSTEMS 232 HYDROLYSIS OF AB 233 SUBSTITUTED AMMONIA
BORANES 235 RECYCLING STRATEGIES 238 RECYCLING FROM B-O-CONTAINING
MATERIALS 239 RECYCLING OF BNHX-WASTE PRODUCTS 240 SUMMARY 243
REFERENCES 244 9 ALUMINUM HYDRIDE (ALANE) 249 RAGAIY ZIDAN 249 9.1
INTRODUCTION 249 9.2 HYDROGEN SOLUBILITY AND DIFFUSIVITY IN ALUMINUM 250
9.3 FORMATION AND THERMODYNAMICS OF DIFFERENT PHASES OF ALANE 252 9.4
STABILITY AND FORMATION OF ADDUCT ORGANO-ALUMINUM HYDRIDE COMPOUNDS 260
9.5 PHASES AND STRUCTURES OF ALUMINUM HYDRIDE 266 9.6 NOVEL ATTEMPTS AND
METHODS FOR FORMING ALANE REVERSIBLY 269 9.7 CONCLUSION 275 REFERENCES
275 10 10.1 10.2 10.2.1 10.2.2 10.3 10.3.1 10.3.2 10.3.3 10.4 10.4.1
10.4.2 10.4.3 10.4.4 10.4. CONTENTS XIII 10.5.2.2 MELT INFILTRATION 320
10.6 EXPERIMENTAL RESULTS ON 3D-SUPPORTED NANOMATERIALS 322 10.6.1
AMMONIA BORANE, (NH 3 BH 3 ) 323 10.6.2 SODIUM ALANATE, (NAALH 4 ) 325
10.6.3 MAGNESIUM HYDRIDE (MGH 2 ) 329 10.6.4 LITHIUM BOROHYDRIDE (LIBH 4
) 331 10.6.5 PALLADIUM 333 10.7 CONCLUSIONS AND OUTLOOK 334 REFERENCES
336 INDEX 342 |
any_adam_object | 1 |
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spelling | Handbook of hydrogen storage new materials for future energy storage ed. by Michael Hirscher Weinheim Wiley-VCH 2010 XX, 353 S. Ill., graph. Darst. 25 cm txt rdacontent n rdamedia nc rdacarrier Hydrogen Storage Hydrid-Speicher (DE-588)4387876-3 gnd rswk-swf Nanostrukturiertes Material (DE-588)4342626-8 gnd rswk-swf Wasserstoffspeicherung (DE-588)4189283-5 gnd rswk-swf Wasserstoff-Speicher (DE-588)4480116-6 gnd rswk-swf Wasserstoffspeicherung (DE-588)4189283-5 s DE-604 Wasserstoff-Speicher (DE-588)4480116-6 s Hydrid-Speicher (DE-588)4387876-3 s Nanostrukturiertes Material (DE-588)4342626-8 s Hirscher, Michael (DE-588)111725070 edt text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3357025&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018662602&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Handbook of hydrogen storage new materials for future energy storage Hydrogen Storage Hydrid-Speicher (DE-588)4387876-3 gnd Nanostrukturiertes Material (DE-588)4342626-8 gnd Wasserstoffspeicherung (DE-588)4189283-5 gnd Wasserstoff-Speicher (DE-588)4480116-6 gnd |
subject_GND | (DE-588)4387876-3 (DE-588)4342626-8 (DE-588)4189283-5 (DE-588)4480116-6 |
title | Handbook of hydrogen storage new materials for future energy storage |
title_auth | Handbook of hydrogen storage new materials for future energy storage |
title_exact_search | Handbook of hydrogen storage new materials for future energy storage |
title_full | Handbook of hydrogen storage new materials for future energy storage ed. by Michael Hirscher |
title_fullStr | Handbook of hydrogen storage new materials for future energy storage ed. by Michael Hirscher |
title_full_unstemmed | Handbook of hydrogen storage new materials for future energy storage ed. by Michael Hirscher |
title_short | Handbook of hydrogen storage |
title_sort | handbook of hydrogen storage new materials for future energy storage |
title_sub | new materials for future energy storage |
topic | Hydrogen Storage Hydrid-Speicher (DE-588)4387876-3 gnd Nanostrukturiertes Material (DE-588)4342626-8 gnd Wasserstoffspeicherung (DE-588)4189283-5 gnd Wasserstoff-Speicher (DE-588)4480116-6 gnd |
topic_facet | Hydrogen Storage Hydrid-Speicher Nanostrukturiertes Material Wasserstoffspeicherung Wasserstoff-Speicher |
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