Written by two of the world's leading researchers on CO2, Greenhouse Gas Carbon Dioxide Mitigation: Science and Technology provides an invaluable roadmap of information on this subject. Aware of the complexity and still-unknown factors behind climatic change, the authors consider the need to make CO2 mitigation viable for both environmental and economic gain. Professor Halmann offers new insights into interesting chemical pathways for the conversion of CO2 to useful products. Steinberg adds real-life engineering solutions, applicable to heavy CO2-producing industrial processes, and improving efficiency of energy conversion.…mehr
Written by two of the world's leading researchers on CO2, Greenhouse Gas Carbon Dioxide Mitigation: Science and Technology provides an invaluable roadmap of information on this subject. Aware of the complexity and still-unknown factors behind climatic change, the authors consider the need to make CO2 mitigation viable for both environmental and economic gain. Professor Halmann offers new insights into interesting chemical pathways for the conversion of CO2 to useful products. Steinberg adds real-life engineering solutions, applicable to heavy CO2-producing industrial processes, and improving efficiency of energy conversion.
The Science of the Greenhouse Effect and Global Climate Change Adaptive Response Strategies for Global Warming Mitigation Concepts for CO2 Emission Reduction Technologies for Improving Efficiency of Energy Conversion and Utilization Removal, Recovery, and Disposal of Carbon Dioxide Biomass Processes/Enzymatic Reactions and Bioconversion Decarbonization of Fossil Fuels, Energetics, Processes and Economics High Temperature Thermochemical Reactions Carboxylation by CO2 Insertion Heterogeneous Catalysis, Hydrogenation, and Reforming Photosensitized Activation of Carbon Dioxide Electrochemical Reactions Photoelectrochemical and Photocatalytic Reduction Conclusions on Remediation Strategies
The Science of the Greenhouse Effect and Global Climate Change Adaptive Response Strategies for Global Warming Mitigation Concepts for CO2 Emission Reduction Technologies for Improving Efficiency of Energy Conversion and Utilization Removal, Recovery, and Disposal of Carbon Dioxide Biomass Processes/Enzymatic Reactions and Bioconversion Decarbonization of Fossil Fuels, Energetics, Processes and Economics High Temperature Thermochemical Reactions Carboxylation by CO2 Insertion Heterogeneous Catalysis, Hydrogenation, and Reforming Photosensitized Activation of Carbon Dioxide Electrochemical Reactions Photoelectrochemical and Photocatalytic Reduction Conclusions on Remediation Strategies
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