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正版 中国二氧化碳利用技术评估报告(英文版) 中国21世纪议程管
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Abstract
1 Overview
1.1 CO2 Utilization Technologies and Classification
1.2 Development of CO2 Utilization Technologies around the World
1.3 Developm
Abstract
1 Overview
1.1 CO2 Utilization Technologies and Classification
1.2 Development of CO2 Utilization Technologies around the World
1.3 Development of CO2 Utilization Technologies in China
1.4 Significance of CO2 Utilization Technologies for China
1.5 Assessment Purpose and Methodology for CO2 Utilization Technologies
1.6 Overall Framework of the Assessment Report
References
2 Potential and Benefits
2.1 Emission Reduction Potential of CO2 Utilization Technologies
2.2 Benefits of CO2 Utilization Technologies
2.3 Utilization Technologies to Increase Energy Production and Efficiency
2.4 Enhanced Recovery of Mineral Resource and Utilization Technologies
2.5 Utilization Technologies for the Synthesis of Organic Chemicals
2.6 Increased Biological and Agricultural Production and Utilization Technologies
2.7 Utilization Technology for Inorganic Chemicals and Materials Synthesis
2.8 Summary
References
3 CO2 Geological Utilization
3.1 CO2 Enhanced Oil Recovery
3.2 CO2 Enhanced Coalbed Methane
3.3 CO2=Enhanced Natural Gas Recovery
3.4 CO2 Enhanced Shale Gas Recovery
3.5 CO2 Enhanced Geothermal System
3.6 CO2 Enhanced Uranium Leaching
3.7 CO2 EnhancedWater Recovery
References
4 CO2 Chemical Utilization
4.1 CO2 Reforming of Methane to Synthesis Gas (CO2-CDR)
4.2 CO2 to Liquid Fuels via Carbon Monoxide (CO2-CTL)
4.3 CO2 to Methanol (CO2-CTM)
4.4 Organic Carbonate Synthesis Technology with CO2(CO2:CTD)
4.5 CO2 to Formic Acid (CO2-CTF)
4.6 CO2 to Polymers (COi-CTP)
4.7 CO2 to Isoeyanate/Polyurethane ( CO2-CTU)
4.8 CO2 to Polycarbonate (CO2-CTPC)
4.9 CO2 Utilization by (Indirect) Steel Slag Carbonation (CO2-SCU and CO2-ISCU)
4.10 CO2 Utilization by Phosphogypsum Carbonation(CO2 PCU)
4.11 COi Mineralization with Potassium Feldspar (CO2 PCM)
4.12 Summary of Chemical Utilization of CO2
References
5 CO2 Bio-utilization
5.1 The Technology of CO2 Sequestration by Algae for Producing Biofuel and Chemical
5.2 Technology of CO2 Sequestration with Algal Bioferfilizer
5.3 Technology of CO2 Sequestration by Algae for Producing Food and Feed Supplements
5.4 Technology of Using CO2 as Gas Fertilizer
5.5 Conclusions
References
6 Development Expectations and Policy Recommendations
6.1 Expectations for Technological Development
6.2 Comprehensive Comparison of Technologies
6.3 Policy Recommendations
6.4 Summary and Outlook
Appendix Ⅰ Assessment Methods for CO2 Technologies
Appendix Ⅱ IEvaluation of CO2 Utilization
作为第三次《气候变化国家评估报告》特别报告,本报告结合我国国情,从促进可持续发展的角度,系统评估了三大类(地质、化工和生物)25种二氧化碳利用技术的技术现状、发展趋势、减排潜力和经济环境效益。针对我国发展二氧化碳利用技术的深入研究和应用提供参考,推动碳捕集、利用与封存技术在我国应对气候变化的工作中发挥更好的作用。
WangQian编著的《AREPORTONCO2UTILIZATIONTECHNOLOGIESASSESSMENTINCHINA(TheAdministrativeCenterforChina'sAgenda21)(英文版)》介绍了,Climatechangeisoneofthemostseriouschallengesfacingtheworldtoday,affectingthesurvivalanddevelopmentofhumanbeing.TacklingclimatechangeservesthecommoninterestoftheworldandhasabearingonChina'sfuturedevelopmentandChinesepeople'swellbeing.Theever-increasingpressureforemissionsreductiondomesticallyandinternationallyhassignificantlyaffectedenergysecurity,economicdevelopmentandliveli-hoodimprovementinChina.Amongthetechnologiesthatcanreducegreenhousegasemis-sions,Carboncaptureandstorage(CCS)isanemergingonethathasthepotentialtoachievethelarge-scaleuseoffossilfuelsinalow-carbonmanner.
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