[1] 郦建国, 朱法华, 孙雪丽. 中国火电大气污染防治现状及挑战[J]. 中国电力, 2018, 51(6): 2–10 LI Jianguo, ZHU Fahua, SUN Xueli. Current status and challenges of atmospheric pollution prevention and control of thermal power plants in China[J]. Electric Power, 2018, 51(6): 2–10 [2] 刘艳梅, 闫静, 徐文帅, 等. 超低排放改造后燃煤电厂常规大气污染物排放特征[J]. 环境科学学报, 2020, 40(6): 1967–1975 LIU Yanmei, YAN Jing, XU Wenshuai, et al. Emission characteristics of conventional air pollutants in coal-fired power plants after ultra-low emission transformation[J]. Acta Scientiae Circumstantiae, 2020, 40(6): 1967–1975 [3] 张金亭, 赵玉丹, 田扬戈, 等. 大气污染物排放量与颗粒物环境空气质量的空间非协同耦合研究: 以武汉市为例[J]. 地理科学进展, 2019, 38(4): 612–624 ZHANG Jinting, ZHAO Yudan, TIAN Yangge, et al. Spatial non-coupling of air pollutant emissions and particulate matter-related air quality: a case study in Wuhan City, China[J]. Progress in Geography, 2019, 38(4): 612–624 [4] 张菊, 苗鸿, 欧阳志云, 等. 近20年北京市城近郊区环境空气质量变化及其影响因素分析[J]. 环境科学学报, 2006, 26(11): 1886–1892 ZHANG Ju, MIAO Hong, OUYANG Zhiyun, et al. Ambient air quality trends and driving factor analysis since 1980’s in Beijing[J]. Acta Scientiae Circumstantiae, 2006, 26(11): 1886–1892 [5] 国家能源局. 关于印发《煤电节能减排升级与改造行动计划(2014-2020年)》的通知[EB/OL]. (2014-09-12) [2021-10-28]. http://zfxxgk.nea.gov.cn/auto84/201409/ t20140919_1840.htm. [6] 曲立涛, 于洪海, 李超, 等. 超低排放煤电机组主要大气污染物排放分析[J]. 热力发电, 2022, 51(1): 196–202 QU Litao, YU Honghai, LI Chao, et al. Emission analysis of main air pollutants from ultra-low emission coal-fired power units[J]. Thermal Power Generation, 2022, 51(1): 196–202 [7] 全面实施燃煤电厂超低排放和节能改造工作方案[J]. 节能与环保, 2016(1): 32. [8] 朱法华. 《火电厂污染防治可行技术指南》(HJ 2301—2017)解读[J]. 环境影响评价, 2018, 40(2): 1–4, 16 ZHU Fahua. Interpretation of guideline on available technologies of pollution prevention and control for thermal power plants[J]. Environmental Impact Assessment, 2018, 40(2): 1–4, 16 [9] 中国电力企业联合会. 中国电力行业年度发展报告: 2020[M]. 北京: 中国建材工业出版社, 2020. [10] 朱法华, 许月阳, 孙尊强, 等. 中国燃煤电厂超低排放和节能改造的实践与启示[J]. 中国电力, 2021, 54(4): 1–8 ZHU Fahua, XU Yueyang, SUN Zunqiang, et al. Practice and enlightenment of ultra-low emission and energy-saving retrofit of coal-fired power plants in China[J]. Electric Power, 2021, 54(4): 1–8 [11] 高星, 刘潇, 武新斌, 等. 燃煤电厂典型超低排放除尘技术组合下的尘排放特性[J]. 环境工程学报, 2020, 14(1): 181–188 GAO Xing, LIU Xiao, WU Xinbin, et al. Dust emission characteristics of typical dust ultra-low emission technology configurations in coal-fired plants[J]. Chinese Journal of Environmental Engineering, 2020, 14(1): 181–188 [12] 李洋, 罗林, 吴建群, 等. 1000 MW燃煤机组负荷变化对颗粒物排放特性影响[J]. 洁净煤技术, 2021, 27(6): 115–120 LI Yang, LUO Lin, WU Jianqun, et al. Effect of load change of an 1000 MW coal-fired unit on particulate matter emission[J]. Clean Coal Technology, 2021, 27(6): 115–120 [13] 洪屹磐. pH调控强化湿法烟气SO2脱除研究[D]. 杭州: 浙江大学, 2020. HONG Yipan. Study on wet flue gas desulfurization based on pH control technology [D]. Hangzhou: Zhejiang University, 2020. [14] 牛拥军, 宦宣州, 李兴华. 燃煤电厂烟气脱硫系统运行优化与经济性分析[J]. 热力发电, 2018, 47(12): 22–28 NIU Yongjun, HUAN Xuanzhou, LI Xinghua. Operation optimization and economic analysis for WFGD system of coal-fired power plants[J]. Thermal Power Generation, 2018, 47(12): 22–28 [15] 冯前伟, 张杨, 王丰吉, 等. 燃煤机组SCR脱硝超低排放改造前后性能对比分析[J]. 中国电机工程学报, 2020, 40(20): 6644–6653 FENG Qianwei, ZHANG Yang, WANG Fengji, et al. Performance comparison and analysis before and after SCR ultra-low emission transformation of coal-fired units[J]. Proceedings of the CSEE, 2020, 40(20): 6644–6653 [16] 赵虹, 何梦漪, 杨建国, 等. SCR脱硝的硫酸铵生成机理及其定量计算模型[J]. 中国电机工程学报, 2020, 40(10): 3214–3221 ZHAO Hong, HE Mengyi, YANG Jianguo, et al. Formation mechanism and quantification model of ammonium sulfate in SCR denitrification system[J]. Proceedings of the CSEE, 2020, 40(10): 3214–3221 [17] 姚燕, 马云龙, 杨晓宁, 等. 高砷煤SCR脱硝催化剂中毒失活研究[J]. 中国电力, 2020, 53(6): 191–196 YAO Yan, MA Yunlong, YANG Xiaoning, et al. Deactivation of honeycomb SCR catalysts in high-arsenic coal-fired power plant[J]. Electric Power, 2020, 53(6): 191–196 [18] 陈东景. 我国主要污染物排放强度的区域差异分析[J]. 生态环境, 2008, 17(1): 133–137 CHEN Dongjing. Analysis on the regional differences in main pollutants emission intensity in China[J]. Ecology and Environment, 2008, 17(1): 133–137 [19] 沈海萍, 刘寒梅, 范海燕, 等. 基于总量控制的火电行业主要污染物排放绩效标准研究[J]. 能源工程, 2018(6): 44–50 SHEN Haiping, LIU Hanmei, FAN Haiyan, et al. Research on generating performance standard of thermal power industry based on total amount control[J]. Energy Engineering, 2018(6): 44–50
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