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中国燃煤电厂大气汞排放控制成本效果分析

中文摘要第3-4页
Abstract第4-5页
Acronyms/缩略语第12-14页
Chapter 1. Introduction第14-29页
    1.1. Research background第14-17页
    1.2. Literature review第17-26页
        1.2.1. Coal characteristics and impacts on mercury emissions第17-20页
        1.2.2. Mercury control technologies for coal-fired power plants第20-23页
        1.2.3. Cost-effectiveness analysis of mercury control technologies第23-26页
    1.3. Thesis objective and significance第26页
    1.4. Work plan第26-29页
Chapter 2. Methodology of cost-effectiveness analysis第29-49页
    2.1. General Description第29-31页
    2.2. Effectiveness of mercury control technologies第31-39页
        2.2.1. Pre-combustion techniques第32-33页
        2.2.2. Co-benefit control technologies第33-35页
        2.2.3. Dedicated mercury control technologies第35-37页
        2.2.4. Summary of removal efficiencies of mercury control technologies第37-39页
        2.2.5. Method for mercury reduction estimates第39页
    2.3. Costs of mercury control technologies第39-43页
        2.3.1. Pre-combustion mercury control options第39-41页
        2.3.2. Dedicated mercury control options第41-43页
    2.4. Pollutant equivalent apportionment method第43-45页
    2.5. Limitations of The Methodology第45-48页
        2.5.1. Choice of the Pollutant Equivalent Factors第45页
        2.5.2. Loss of fly ash sales第45-46页
        2.5.3. Costs for continuous emission monitoring第46-47页
        2.5.4. Compliance with environmental policies第47页
        2.5.5. Future natural gas-fired electricity generation第47-48页
        2.5.6. Technological innovation for APCDs第48页
    2.6. Summary第48-49页
Chapter 3. Control of atmospheric mercury emissions at enterprise level第49-65页
    3.1. Cost-effectiveness of co-benefit mercury control technologies第49-54页
    3.2. Cost-effectiveness of dedicated mercury control technologies第54-55页
    3.3. Impacts of power plant size第55-56页
    3.4. Comparison with other studies第56-57页
    3.5. Best available techniques for mercury control in China第57-63页
        3.5.1. Pre-combustion technologies第58-60页
        3.5.2. Post-combustion technologies第60-63页
    3.6. Summary第63-65页
Chapter 4. Regulatory framework on atmospheric mercury emission control第65-90页
    4.1. China’s regulatory framework第65-72页
        4.1.1. Air pollution control law第66-67页
        4.1.2. Emission standards第67-69页
        4.1.3. Five-years plan for national economy and social development and environmentalprotection第69-71页
        4.1.4. 2013-2017 Air Pollution Prevention and Control Action Plan第71-72页
    4.2. Global initiatives on atmospheric mercury control第72-82页
        4.2.1. The Minamata Convention on Mercury第72-74页
        4.2.2. European Union第74-79页
        4.2.3. United States’ regulatory framework on mercury emission control第79-81页
        4.2.4. Canada第81-82页
        4.2.5. Japan第82页
    4.3. Gap analysis第82-87页
        4.3.1. Policy gap第82-84页
        4.3.2. BAT/BEP gap第84页
        4.3.3. Emission standard gap第84-85页
        4.3.4. Monitoring and supervision gap第85-86页
        4.3.5. Information gap第86-87页
    4.4. Summary第87-90页
Chapter 5. Control of atmospheric mercury emissions at sector level第90-110页
    5.1. Energy scenarios第90-95页
        5.1.1. Coal-fired power fleet composition第90-93页
        5.1.2. Coal consumption and installed capacity第93-95页
    5.2. Future mercury emission control scenarios第95-98页
    5.3. Cost-effectiveness of control scenarios第98-103页
    5.4. Uncertainty and sensitivity analysis第103-107页
        5.4.1. Uncertainty and sensitivity analysis on costs of APCDs第104页
        5.4.2. Uncertainty and sensitivity analysis on energy patterns第104-107页
    5.5. Observations on subsidies for dedicated mercury control technologies第107-108页
    5.6. Summary第108-110页
Chapter 6. Conclusions and recommendations第110-115页
    6.1. Conclusions第110-112页
    6.2. Recommendations第112-115页
References第115-124页
Acknowledgements第124-126页
Curriculum Vitae第126页
Published academic papers第126页

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