Journal Home Online First Current Issue Archive For Authors Journal Information 中文版

Strategic Study of CAE >> 2015, Volume 17, Issue 9

Progress and Prospects on Clean Coal Technology for Power Generation

State Key Laboratory of Clean Energy Utilization (Zhejiang University), Hangzhou 310027, China

Funding project:中国工程院重大咨询项目”先进清洁煤燃烧与气化技术“ Received: 2015-11-09 Revised: 2015-11-18 Available online: 2016-01-04 10:20:16.000

Next Previous

Abstract

Recently, air pollution has taken Chinese a great concern. The emission control of electricity industry is the key to the air quality improvement since electricity industry accounts for over 50 % of China’s coal consumption. This work introduces the progress and prospects of ultra-low emission control technologies based power generation technologies. The ultra-low emission control technologies and integrated systems are developed and optimized by the support of a series of national projects to reach the emission level of natural gas power generation units in using coal-fired units. The application and promotion of these technologies are proven to be an important solution for the air quality improvement, especially in regions with high energy-consumption, since these technologies have shown great potential for deep-cut in pollutant emissions, which will benefit both the society and the environment. In the future, the research will focus on the deep-cut of various pollutants and high-efficiency CO2 capture to lay a solid foundation for the construction of the world’s cleanest coal-fired power plants.

Figures

图1

图2

图3

References

[ 1 ] 中华人民共和国国家统计局. 中国统计年鉴[M]. 北京: 中国统 计出版社, 2014.

[ 2 ] BP 中国. BP 世界能源统计年鉴2013[EB/OL]. [2015-11-08]. http:// www.bp.com/zh_cn/China/reporte-and publications/bp_2013.html.

[ 3 ] IEA. Energy Balances of OECD Countries 2014 [EB/OL]. [2015- 11-08]. http://dx.doi.org/10.1787/energy_bal_oecd-2014-en. link1

[ 4 ] 李存杰, 张军, 张涌新, 等, 基于pH 值分区控制的湿法烟气脱硫 增效研究[J]. 环境科学学报. doi: 10.13671/j.hjkxxb. 2015.0137 link1

[ 5 ] 张军, 张涌新, 郑成航, 等. 复合脱硫添加剂在湿法烟气脱硫系 统中的工程应用[J]. 中国环境科学, 2014, 09: 2186–2191. link1

[ 6 ] 许昌日. 燃煤烟气NOx/SO2一体化强化吸收试验研究[D]. 杭州. 浙江大学硕士学位论文, 2014. link1

[ 7 ] 王惠挺. 钙基湿法烟气脱硫增效关键技术研究[D]. 杭州: 浙江 大学博士学位论文, 2013. link1

[ 8 ] 谢克昌, 等. 中国煤炭清洁高效可持续开发利用战略研究[M]. 北京: 科学出版社, 2014.

[ 9 ] 姜烨, 高翔, 吴卫红, 等. 选择性催化还原脱硝催化剂失活研究 综述[J]. 中国电机工程学报, 2013, 14:18–31, 13. link1

[10] 姜烨, 张涌新, 吴卫红, 等. 用于选择性催化还原烟气脱硝的 V2O5/TiO2催化剂钾中毒动力学研究[J]. 中国电机工程学报, 2014, 23:3899–3906. link1

[11] 毛剑宏, 宋浩, 吴卫红, 等. 电站锅炉SCR 脱硝系统导流板的设 计与优化[J]. 浙江大学学报( 工学版),2011,06:1124–1129. link1

[12] 万益, 黄薇薇, 郑成航, 等. 湿式静电除尘器喷嘴特性[J]. 浙江大 学学报 (工学版), 2015, 02: 336–343. link1

[13] 杨正大, 常倩云, 岳涛, 等. 湿式静电协同脱除SO2、PM 试验研 究[J]. 工程热物理学报, 2015, 06: 1365–1370. link1

[14] 万益. 湿式静电除尘水膜均布及细颗粒物强化脱除研究[D]. 杭 州: 浙江大学硕士学位论文, 2014. link1

[15] 陈吉宁. “十二五”生态环境保护成就报告 [R]. 中华人民共和 国环境保护部, 2015.10

[16] 电力规划设计总院. 火电工程限额设计参考造价指标(2012年 水平)[M]. 北京: 中国电力出版社, 2013.

[17] GB 13223―2011, 火电厂大气污染物排放标准[S]. 北京: 中国 标准出版社, 2011.

[18] 中华人民共和国国务院. 国务院关于印发大气污染防治行动计 划的通知[EB/OL]. [2013-09-12]. http://www.gov.cn/zwgk/2013- 09/12/content_2486773.htm. link1

[19] 中华人民共和国国家发展和改革委员会. 煤电节能减排升级与 改造行动计划(2014―2020年)[EB/OL]. [214-09-19]. http:// www.sdpc.gov.cn/gzdt/201409/t20140919_626240.html. link1

Related Research