Gasification:
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Boston
Elsevier/Gulf Professional Pub.
2003
|
Schlagworte: | |
Online-Zugang: | FAW01 FAW02 Volltext |
Beschreibung: | Includes bibliographical references and index Cover -- Front Cover -- Copyright -- Contents -- Preface -- COMPANION WEBSITE -- TERMINOLOGY -- ACKNOWLEDGMENTS -- 1. Introduction -- 1.1 HISTORICAL DEVELOPMENT OF GASIFICATION -- 1.2 GASIFICATION TODAY -- 2. The Thermodynamics of Gasification -- 2.1 REACTIONS -- 2.2 THERMODYNAMIC MODELING OF GASIFICATION -- 2.2.1 Basic Data -- 2.2.2 Equations -- 2.2.3 Variables -- 2.3 DEDUCTIONS FROM THE THERMODYNAMIC MODEL -- 2.3.1 Effect of Pressure -- 2.3.2 Effect of Temperature -- 2.3.3 Fuel Footprint -- 2.3.4 Surprises in Calculations -- 2.4 OPTIMIZING PROCESS CONDITIONS -- 2.4.1 Process Indicators -- 2.4.2 Optimum Operating Point -- 3. The Kinetics of Gasification and Reactor Theory -- 3.1 KINETICS -- 3.1.1 Devolatilization -- 3.1.2 Volatiles Combustion -- 3.1.3 Char Gasification -- 3.2 REACTOR THEORY -- 3.3 APPLICATIONS TO REACTOR DESIGN -- 3.3.1 Modeling -- 4. Feedstocks and Feedstock Characteristics -- 4.1 COALS AND COKE -- 4.1.1 Formation of Coal -- 4.1.2 Coal Analysis -- - 4.1.3 Other Minerals in Coal -- 4.1.4 Other Properties -- 4.1.5 Ash Properties -- 4.1.6 Coke -- 4.1.7 Petroleum Coke -- 4.2 LIQUID AND GASEOUS FEEDSTOCKS -- 4.2.1 Refinery Residues -- 4.2.2 Other Liquid Feedstocks -- 4.2.3 Natural Gas -- 4.2.4 Other Gaseous Feedstocks -- 4.3 BIOMASS -- 4.3.1 Properties of Biomass -- 4.3.2 Black Liquor -- 4.3.3 Biomass Production -- 4.3.4 Development Potential -- 4.4 WASTES -- 4.4.1 Solid Waste -- 4.4.2 Liquid Wastes -- 5. Gasification Processes -- 5.1 MOVING- BED PROCESSES -- 5.1.1 The Lurgi Dry Ash Process -- 5.1.2 British Gas/ Lurgi (BGL) Slagging Gasifier -- 5.1.3 Ruhr 100 -- 5.2 FLUID- BED GASIFIERS -- 5.2.1 Common Issues -- 5.2.2 The Winkler Process -- 5.2.3 The High- Temperature Winkler (HTW) Process -- 5.2.4 Circulating Fluid- Bed (CFB) Processes -- 5.2.5 The KBR Transport Gasifier -- 5.2.6 Agglomerating Fluid- Bed Processes -- 5.2.7 Development Potential -- 5.3 ENTRAINED- FLOW GASIFIERS -- 5.3.1 General Considerations -- - 5.3.2 The Koppers- Totzek Atmospheric Process -- 5.3.3 Shell Coal Gasification Process (SCGP) and Prenflo Process -- 5.3.4 The Noell Process -- 5.3.5 The Texaco Process -- 5.3.6 The E- Gas Process -- 5.3.7 The CCP Gasifier -- 5.3.8 The EAGLE Gasifier -- 5.4 OIL GASIFICATION AND PARTIAL OXIDATION OF NATURAL GAS -- 5.4.1 The Texaco Gasification Process -- 5.4.2 The Shell Gasification Process (SGP) -- 5.4.3 Lurgi's Multipurpose Gasification Process (MPG) -- 5.4.4 New Developments -- 5.4.5 Process Safety -- 5.5 BIOMASS GASIFICATION -- 5.5.1 Fluid- Bed Processes -- 5.5.2 Twin Fluid- Bed Steam Gasification -- 5.5.3 Pyrolysis Processes -- 5.5 "This is the only book on the market offering the engineer a complete and comprehensive guide to gasification. The reader will get an overview of current technologies for the gasification of coal, oil, gas, biomass and waste feedstocks. Starting from basic theory, it reviews the potential feedstocks and their suitability for different types of gasification processes. It provides an up-to-date overview of commercial processes and covers applications relevant to today's demands, including topics such as clean coal to power, natural gas to liquids, and cleaner refining."--Jacket |
Beschreibung: | 1 Online-Ressource (x, 391 pages) |
ISBN: | 0080477992 0750677074 9780080477992 9780750677073 |
Internformat
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500 | |a Includes bibliographical references and index | ||
500 | |a Cover -- Front Cover -- Copyright -- Contents -- Preface -- COMPANION WEBSITE -- TERMINOLOGY -- ACKNOWLEDGMENTS -- 1. Introduction -- 1.1 HISTORICAL DEVELOPMENT OF GASIFICATION -- 1.2 GASIFICATION TODAY -- 2. The Thermodynamics of Gasification -- 2.1 REACTIONS -- 2.2 THERMODYNAMIC MODELING OF GASIFICATION -- 2.2.1 Basic Data -- 2.2.2 Equations -- 2.2.3 Variables -- 2.3 DEDUCTIONS FROM THE THERMODYNAMIC MODEL -- 2.3.1 Effect of Pressure -- 2.3.2 Effect of Temperature -- 2.3.3 Fuel Footprint -- 2.3.4 Surprises in Calculations -- 2.4 OPTIMIZING PROCESS CONDITIONS -- 2.4.1 Process Indicators -- 2.4.2 Optimum Operating Point -- 3. The Kinetics of Gasification and Reactor Theory -- 3.1 KINETICS -- 3.1.1 Devolatilization -- 3.1.2 Volatiles Combustion -- 3.1.3 Char Gasification -- 3.2 REACTOR THEORY -- 3.3 APPLICATIONS TO REACTOR DESIGN -- 3.3.1 Modeling -- 4. Feedstocks and Feedstock Characteristics -- 4.1 COALS AND COKE -- 4.1.1 Formation of Coal -- 4.1.2 Coal Analysis -- | ||
500 | |a - 4.1.3 Other Minerals in Coal -- 4.1.4 Other Properties -- 4.1.5 Ash Properties -- 4.1.6 Coke -- 4.1.7 Petroleum Coke -- 4.2 LIQUID AND GASEOUS FEEDSTOCKS -- 4.2.1 Refinery Residues -- 4.2.2 Other Liquid Feedstocks -- 4.2.3 Natural Gas -- 4.2.4 Other Gaseous Feedstocks -- 4.3 BIOMASS -- 4.3.1 Properties of Biomass -- 4.3.2 Black Liquor -- 4.3.3 Biomass Production -- 4.3.4 Development Potential -- 4.4 WASTES -- 4.4.1 Solid Waste -- 4.4.2 Liquid Wastes -- 5. Gasification Processes -- 5.1 MOVING- BED PROCESSES -- 5.1.1 The Lurgi Dry Ash Process -- 5.1.2 British Gas/ Lurgi (BGL) Slagging Gasifier -- 5.1.3 Ruhr 100 -- 5.2 FLUID- BED GASIFIERS -- 5.2.1 Common Issues -- 5.2.2 The Winkler Process -- 5.2.3 The High- Temperature Winkler (HTW) Process -- 5.2.4 Circulating Fluid- Bed (CFB) Processes -- 5.2.5 The KBR Transport Gasifier -- 5.2.6 Agglomerating Fluid- Bed Processes -- 5.2.7 Development Potential -- 5.3 ENTRAINED- FLOW GASIFIERS -- 5.3.1 General Considerations -- | ||
500 | |a - 5.3.2 The Koppers- Totzek Atmospheric Process -- 5.3.3 Shell Coal Gasification Process (SCGP) and Prenflo Process -- 5.3.4 The Noell Process -- 5.3.5 The Texaco Process -- 5.3.6 The E- Gas Process -- 5.3.7 The CCP Gasifier -- 5.3.8 The EAGLE Gasifier -- 5.4 OIL GASIFICATION AND PARTIAL OXIDATION OF NATURAL GAS -- 5.4.1 The Texaco Gasification Process -- 5.4.2 The Shell Gasification Process (SGP) -- 5.4.3 Lurgi's Multipurpose Gasification Process (MPG) -- 5.4.4 New Developments -- 5.4.5 Process Safety -- 5.5 BIOMASS GASIFICATION -- 5.5.1 Fluid- Bed Processes -- 5.5.2 Twin Fluid- Bed Steam Gasification -- 5.5.3 Pyrolysis Processes -- 5.5 | ||
500 | |a "This is the only book on the market offering the engineer a complete and comprehensive guide to gasification. The reader will get an overview of current technologies for the gasification of coal, oil, gas, biomass and waste feedstocks. Starting from basic theory, it reviews the potential feedstocks and their suitability for different types of gasification processes. It provides an up-to-date overview of commercial processes and covers applications relevant to today's demands, including topics such as clean coal to power, natural gas to liquids, and cleaner refining."--Jacket | ||
650 | 7 | |a TECHNOLOGY & ENGINEERING / Power Resources / General |2 bisacsh | |
650 | 7 | |a Coal gasification |2 fast | |
650 | 7 | |a Vergassing |2 gtt | |
650 | 7 | |a Thermodynamische eigenschappen |2 gtt | |
650 | 7 | |a Dynamica |2 gtt | |
650 | 7 | |a Procestechnologie |2 gtt | |
650 | 7 | |a Biomassa |2 gtt | |
650 | 4 | |a Coal gasification | |
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Datensatz im Suchindex
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any_adam_object | |
author | Higman, Chris |
author_facet | Higman, Chris |
author_role | aut |
author_sort | Higman, Chris |
author_variant | c h ch |
building | Verbundindex |
bvnumber | BV043134381 |
collection | ZDB-4-EBA |
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dewey-full | 665.7/72 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 665 - Industrial oils, fats, waxes & gases |
dewey-raw | 665.7/72 |
dewey-search | 665.7/72 |
dewey-sort | 3665.7 272 |
dewey-tens | 660 - Chemical engineering |
discipline | Chemie / Pharmazie |
format | Electronic eBook |
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publisher | Elsevier/Gulf Professional Pub. |
record_format | marc |
spelling | Higman, Chris Verfasser aut Gasification Chris Higman and Maarten van der Burgt Boston Elsevier/Gulf Professional Pub. 2003 1 Online-Ressource (x, 391 pages) txt rdacontent c rdamedia cr rdacarrier Includes bibliographical references and index Cover -- Front Cover -- Copyright -- Contents -- Preface -- COMPANION WEBSITE -- TERMINOLOGY -- ACKNOWLEDGMENTS -- 1. Introduction -- 1.1 HISTORICAL DEVELOPMENT OF GASIFICATION -- 1.2 GASIFICATION TODAY -- 2. The Thermodynamics of Gasification -- 2.1 REACTIONS -- 2.2 THERMODYNAMIC MODELING OF GASIFICATION -- 2.2.1 Basic Data -- 2.2.2 Equations -- 2.2.3 Variables -- 2.3 DEDUCTIONS FROM THE THERMODYNAMIC MODEL -- 2.3.1 Effect of Pressure -- 2.3.2 Effect of Temperature -- 2.3.3 Fuel Footprint -- 2.3.4 Surprises in Calculations -- 2.4 OPTIMIZING PROCESS CONDITIONS -- 2.4.1 Process Indicators -- 2.4.2 Optimum Operating Point -- 3. The Kinetics of Gasification and Reactor Theory -- 3.1 KINETICS -- 3.1.1 Devolatilization -- 3.1.2 Volatiles Combustion -- 3.1.3 Char Gasification -- 3.2 REACTOR THEORY -- 3.3 APPLICATIONS TO REACTOR DESIGN -- 3.3.1 Modeling -- 4. Feedstocks and Feedstock Characteristics -- 4.1 COALS AND COKE -- 4.1.1 Formation of Coal -- 4.1.2 Coal Analysis -- - 4.1.3 Other Minerals in Coal -- 4.1.4 Other Properties -- 4.1.5 Ash Properties -- 4.1.6 Coke -- 4.1.7 Petroleum Coke -- 4.2 LIQUID AND GASEOUS FEEDSTOCKS -- 4.2.1 Refinery Residues -- 4.2.2 Other Liquid Feedstocks -- 4.2.3 Natural Gas -- 4.2.4 Other Gaseous Feedstocks -- 4.3 BIOMASS -- 4.3.1 Properties of Biomass -- 4.3.2 Black Liquor -- 4.3.3 Biomass Production -- 4.3.4 Development Potential -- 4.4 WASTES -- 4.4.1 Solid Waste -- 4.4.2 Liquid Wastes -- 5. Gasification Processes -- 5.1 MOVING- BED PROCESSES -- 5.1.1 The Lurgi Dry Ash Process -- 5.1.2 British Gas/ Lurgi (BGL) Slagging Gasifier -- 5.1.3 Ruhr 100 -- 5.2 FLUID- BED GASIFIERS -- 5.2.1 Common Issues -- 5.2.2 The Winkler Process -- 5.2.3 The High- Temperature Winkler (HTW) Process -- 5.2.4 Circulating Fluid- Bed (CFB) Processes -- 5.2.5 The KBR Transport Gasifier -- 5.2.6 Agglomerating Fluid- Bed Processes -- 5.2.7 Development Potential -- 5.3 ENTRAINED- FLOW GASIFIERS -- 5.3.1 General Considerations -- - 5.3.2 The Koppers- Totzek Atmospheric Process -- 5.3.3 Shell Coal Gasification Process (SCGP) and Prenflo Process -- 5.3.4 The Noell Process -- 5.3.5 The Texaco Process -- 5.3.6 The E- Gas Process -- 5.3.7 The CCP Gasifier -- 5.3.8 The EAGLE Gasifier -- 5.4 OIL GASIFICATION AND PARTIAL OXIDATION OF NATURAL GAS -- 5.4.1 The Texaco Gasification Process -- 5.4.2 The Shell Gasification Process (SGP) -- 5.4.3 Lurgi's Multipurpose Gasification Process (MPG) -- 5.4.4 New Developments -- 5.4.5 Process Safety -- 5.5 BIOMASS GASIFICATION -- 5.5.1 Fluid- Bed Processes -- 5.5.2 Twin Fluid- Bed Steam Gasification -- 5.5.3 Pyrolysis Processes -- 5.5 "This is the only book on the market offering the engineer a complete and comprehensive guide to gasification. The reader will get an overview of current technologies for the gasification of coal, oil, gas, biomass and waste feedstocks. Starting from basic theory, it reviews the potential feedstocks and their suitability for different types of gasification processes. It provides an up-to-date overview of commercial processes and covers applications relevant to today's demands, including topics such as clean coal to power, natural gas to liquids, and cleaner refining."--Jacket TECHNOLOGY & ENGINEERING / Power Resources / General bisacsh Coal gasification fast Vergassing gtt Thermodynamische eigenschappen gtt Dynamica gtt Procestechnologie gtt Biomassa gtt Coal gasification Vergasung (DE-588)4062830-9 gnd rswk-swf Kohlevergasung (DE-588)4125530-6 gnd rswk-swf 1\p (DE-588)4123623-3 Lehrbuch gnd-content Vergasung (DE-588)4062830-9 s 2\p DE-604 Kohlevergasung (DE-588)4125530-6 s 3\p DE-604 Burgt, Maarten van der Sonstige oth http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=196313 Aggregator Volltext 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Higman, Chris Gasification TECHNOLOGY & ENGINEERING / Power Resources / General bisacsh Coal gasification fast Vergassing gtt Thermodynamische eigenschappen gtt Dynamica gtt Procestechnologie gtt Biomassa gtt Coal gasification Vergasung (DE-588)4062830-9 gnd Kohlevergasung (DE-588)4125530-6 gnd |
subject_GND | (DE-588)4062830-9 (DE-588)4125530-6 (DE-588)4123623-3 |
title | Gasification |
title_auth | Gasification |
title_exact_search | Gasification |
title_full | Gasification Chris Higman and Maarten van der Burgt |
title_fullStr | Gasification Chris Higman and Maarten van der Burgt |
title_full_unstemmed | Gasification Chris Higman and Maarten van der Burgt |
title_short | Gasification |
title_sort | gasification |
topic | TECHNOLOGY & ENGINEERING / Power Resources / General bisacsh Coal gasification fast Vergassing gtt Thermodynamische eigenschappen gtt Dynamica gtt Procestechnologie gtt Biomassa gtt Coal gasification Vergasung (DE-588)4062830-9 gnd Kohlevergasung (DE-588)4125530-6 gnd |
topic_facet | TECHNOLOGY & ENGINEERING / Power Resources / General Coal gasification Vergassing Thermodynamische eigenschappen Dynamica Procestechnologie Biomassa Vergasung Kohlevergasung Lehrbuch |
url | http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=196313 |
work_keys_str_mv | AT higmanchris gasification AT burgtmaartenvander gasification |