Greenhouse Gas Control Technologies: Proceedings of the 5th International Conference on Greenhouse Gas Control TechnologiesThe control of greenhouse gas emissions continues to be a major global problem. It is inter-disciplinary, both in substance and approach, and covers technical, political and economic issues involving governments, industry and the scientific community. These proceedings contain 220 papers presented at the 5th International Conference on Greenhouse Gas Control Technologies (GHGT-5) held in August 2000 at Cairns, Queensland, Australia. The papers cover the capture of carbon dioxide, geological storage of carbon dioxide, ocean storage of carbon dioxide, storage of carbon dioxide with enhanced hydrocarbon recovery, utilisation of carbon dioxide, other greenhouse gases, fuel cells, alternative energy carriers, energy efficiency, life cycle assessments and energy modelling, economics, international and national policy, trading and accounting policy, social and community issues, and reducing emission from industry and power generation. |
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Contents
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Lessons from a Case Study in How to Reduce Capture Costs | 121 |
Development and Application of Flue Gas Carbon Dioxide Recovery Technology | 138 |
Capture of C0 Using Water Scrubbing | 155 |
The Preliminary Assessment of Novel Power Generation Options Aimed at CO Abatement | 809 |
Meeting Conflicting Objectives | 827 |
Offshore Wind Farms and a Green Certificate Market | 845 |
CSIROs Advanced Power Generation Technology Using Solar Thermal Fossil Energy Hybrid | 863 |
hour Solar Power | 880 |
The Role of the Clean Development Mechanism CDM in Assuring Project Feasibility In Brazil | 897 |
Life Cycle Assessment LCA and Exergetic Life Cycle Assessment ELCA of an Innovative | 911 |
Environmental Life Cycle Assessment ELCA Applied to the Synthesis of Methanol | 924 |
Economic Evaluation of Capture and Sequestration of C0 from Australian Black | 173 |
Update of New Power Plant C0L Control Options Analysis | 193 |
An Investigation of Solvent Stability in Amine Based Systems Used to Capture CO | 211 |
COCapture | 229 |
CO Sequestration in Oil Reservoirs A Monitoring and Research Opportunity | 243 |
Assessing European Potential for Geological Storage of | 260 |
Ocean Storage of CO 397 | 277 |
Global Capacity Costs and Barriers | 278 |
Underground Sequestration of Carbon Dioxide in Tectonically Active Area | 296 |
Geological C02 Disposal Understanding the Long Term Fate of C02 in Natural | 311 |
A Roadmap for Assessing Sedimentary Basins | 328 |
A New CO Disposal Process Using Artificial Rock Weathering | 346 |
Reservoir | 360 |
Reservoir History Matching | 378 |
Experimental Evaluation of Chemical Sequestration of Carbon Dioxide in Deep Saline Formations | 391 |
Update on the International Experiment on CO? Ocean Sequestration | 399 |
A Numerical Prediction on Plume Structure of Liquid LCO in the Ocean | 417 |
Stability of CO in Different Phases Related to Ocean Storage | 435 |
Enhancement of Oceanic Uptake of Anthropogenic COj by Macronutrient Fertilisation | 451 |
Ocean CO Sequestration Efficiency from 3D Ocean Model Comparison | 469 |
CO? Ocean Sequestration Project in RITE | 491 |
Oceanographic Criteria for Selecting Future Sites for C03 Sequestration | 505 |
Observations Using Raman Spectroscopy | 523 |
Storage of C02 with Enhanced Hydrocarbon Recovery | 529 |
Economics of Flue Gas Injection and C02 Sequestration in Coalbed Methane Reservoirs | 543 |
C02Sequestration in The Netherlands C0 Injection and CHi Production as Related | 561 |
COEGR with Microbial Methanogenesis | 578 |
Reservoir Mechanisms Field | 593 |
Bench Scale Study of the Characteristics of the Catalytic Hydrogenation of C02 | 607 |
Artificial Photosynthesis to Redress the Global Carbon Dioxide Balance? | 624 |
A Conceptual Approach | 640 |
Synthesis of Organic Carbonates Based on COj as Raw Material | 653 |
Other Greenhouse Gases | 665 |
The Emission Flux and Mitigation Options for N0 and CH Under Different Rotation | 679 |
High Potential Energy from Dilute Methane Emissions | 709 |
Fuel Cells | 729 |
Greenhouse Impact of BiomassBased Methanol Use in Fuel Cell Vehicles | 744 |
Hydrogen Fuelled Ships With Carbon Management | 759 |
An Ecofriendly Process for Natural Gas Conversion | 777 |
Reducing Greenhouse Gas Emissions from Electricity Supply in Australia | 795 |
Assessment of the Future Potentials of C05 Sequestration Technologies with | 935 |
Testing Options for a BiomassMethanol Economy in Australia | 941 |
Database Clean Energy Systems 2050 ATool to Assess Energy Systems | 953 |
The Economic Benefits of Carbon Capture and Sequestration RD Under Uncertainty | 961 |
Costs of Carbon Dioxide Removal by Underground Storage | 967 |
Economic Modelling of CO Capture and Sequestration | 973 |
The Economics of C02 Sequestration in Australia | 979 |
The Cost of Carbon Capture | 985 |
Total Greenhouse Gas Emissions and Costs of Alternative Swiss Energy Supply Strategies | 991 |
A Review of Trends and Challenges | 997 |
TechnoEconomic Comparison of Different Options of Very Low C02 Emission Technologies | 1003 |
An Economic Viable Option? | 1009 |
Greenhouse Gas Key Performance Indicators for Australian Coal Mines | 1020 |
A Report on the EMF 19 Study onTechnology and Global Climate Change Policies | 1026 |
Greenhouse Mitigation Scenarios | 1032 |
The iEAs Collaborative Programme on Energy Technology Developing | 1038 |
Overview of the U S Carbon Sequestration Program | 1044 |
A Review of Carbon Sequestration Science andTechnology Opportunities by | 1050 |
Canadas National Initiative on CO? Capture and Storage | 1056 |
Chinas Carbon Stocks and the Future Perspective of International Cooperation on the CDM | 1062 |
lnfrastructure Initiative A Feasibility Study | 1068 |
New Technology to Control Climate Change The Finnish Nationai Technology | 1074 |
Evolving scenarios | 1092 |
Regional Context for Abatement of Greenhouse Gases | 1106 |
CoOrdination with the Other Kyoto Instruments Key Issues and Options | 1121 |
Greenhouse Gas Reduction Inventories What Then? | 1139 |
The Technology of Certification of Soil Carbon Sinks Baseline Sampling | 1157 |
Technology Assessment in Climate Change Mitigation | 1171 |
Ate We Getting Our Moneys Worth? The CostEffectiveness of Australias Domestic | 1186 |
Demand Side Acceptance of Energy Reduction Options A Household Perspective | 1203 |
Reducing Emissions from Industry and Power Generation | 1209 |
A New Process for Ammonia Production with Reduced COj Emission and CoProduct | 1222 |
The Effect of New Solid Waste Treatment Systems on Greenhouse Gas Emissions | 1236 |
Potential and CostEffectiveness of CO Reducing Measures in the Pulp and Paper Industry | 1253 |
Measurement of Greenhouse Gas Emissions from Spontaneous Combustion | 1271 |
Power Production With Zero Atmospheric Emissions | 1289 |
Underground Coal Gasification as a Method for Reducing the Greenhouse Impact | 1307 |
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Common terms and phrases
absorption analysis anthropogenic aquifer assessment atmosphere Australia biomass capture carbon dioxide catalyst chemical climate change coalbed methane cogeneration combustion concentration cost cycle density depth disposal droplet economic effect efficiency electricity energy enhanced enhanced oil recovery environmental estimated evaluated Figure flue gas fluid formation fossil fuels fuel cell Gas Control Technologies gas turbine gases geochemical geologic sequestration global Greenhouse Gas Control greenhouse gas emissions heat hydrate hydrocarbon hydrogen impact increase industry injection Laboratory layers liquid membrane methanol migration mineral monitoring natural gas nitrogen ocean sequestration oil and gas operating options oxide oxygen permeability phase plume potential power plant predicted pressure production reaction reactor recovery recycle reduce region reservoir simulation saline scenario seawater sedimentary basins seismic sequestration capacity shale Sleipner solution solvent sources steam storage syngas temperature Utsira Sand