[1] |
吴来贵, 牟志才. 火电厂废水零排放技术研究与应用 [C]//中国动力工程学会. 贯彻“十二五”环保规划, 创新火电环保技术与装备研讨会论文集, 张家界, 2011-09-06. 上海: 中国动力工程学会, 2011: 150-160.
WU L G, MOU Z C. Research and application of zero discharge technology for thermal power plant wastewater [C]//Chinese Society of Power Engineering. Discussion on the Seminar on Implementing the 12th Five Year Plan for Environmental Protection and Innovating Thermal Power Environmental Protection Technology and Equipment, Zhangjiajie, 2011-09-06. Shanghai: China Power Engineering Society, 2011: 150-160. |
[2] |
牛耀岚, 胡伟, 朱辉, 等. 燃煤电厂脱硫废水处理方法及零排放技术进展 [J]. 长江大学学报(自科版), 2019, 16(10): 72-78. DOI: 10.3969/j.issn.1673-1409.2019.10.014.
NIU Y L, HU W, ZHU H, et al. Advances in desulfurization wastewater treatment methods and zero discharge technology in coal-fired power plants [J]. Journal of Yangtze university (natural science edition), 2019, 16(10): 72-78. DOI: 10.3969/j.issn.1673-1409.2019.10.014. |
[3] |
马晓辉. 发电机组湿法脱硫废水处理系统的优化改造 [J]. 科技创新与应用, 2017(19): 54, 57.
MA X H. Optimization and reconstruction of wet desulfuration wastewater treatment system for generating units [J]. Technology innovation and application, 2017(19): 54, 57. |
[4] |
陈程, 陈鑫, 徐凤, 等. 燃煤机组脱硫废水零排放物料-能-水耦合机制及优化 [J]. 化工学报, 2021, 72(11): 5800-5809. DOI: 10.11949/0438-1157.20210694.
CHEN C, CHEN X, XU F, et al. Matter-energy-water coupling mechanism and optimization for zero discharge of desulfurization wastewater from coal-fired units [J]. CIESC journal, 2021, 72(11): 5800-5809. DOI: 10.11949/0438-1157.20210694. |
[5] |
蔡继东, 万忠诚, 张庭怿. 燃煤电厂脱硫废水零排放工程的设计与应用 [J]. 广东电力, 2018, 31(5): 28-34. DOI: 10.3969/j.issn.1007-290X.2018.005.005.
CAI J D, WAN Z C, ZHANG T Y. Design and application of desulfurization wastewater zero discharging project of coal-fired power plant [J]. Guangdong electric power, 2018, 31(5): 28-34. DOI: 10.3969/j.issn.1007-290X.2018.005.005. |
[6] |
刘宁. 燃煤电厂脱硫废水零排放技术 [J]. 能源与节能, 2015(12): 89-91. DOI: 10.3969/j.issn.2095-0802.2015.12.044.
LIU N. On the technology for "zero-emissions" of desulphurization waste water in coal-fired power plant [J]. Energy and conservation, 2015(12): 89-91. DOI: 10.3969/j.issn.2095-0802.2015.12.044. |
[7] |
SHAW W A. Fundamentals of zero liquid discharge system design [J]. Power, 2011, 155(10): 56-58, 60, 62-63. |
[8] |
陆锁强. 湿法脱硫废水处理系统与工艺优化研究 [J]. 化工管理, 2016(29): 251, 253. DOI: 10.3969/j.issn.1008-4800.2016.29.203.
LU S Q. Study on wet desulfurization wastewater treatment system and process optimization [J]. Chemical management, 2016(29): 251, 253. DOI: 10.3969/j.issn.1008-4800.2016.29.203. |
[9] |
谢志文, 冯永新, 赵宁, 等. 电厂脱硫废水零排放技术对比分析 [J]. 科技创新与应用, 2021(9): 177-179.
XIE Z W, FENG Y X, ZHAO N, et al. Comparative analysis on zero discharge technology of desulfurization wastewater in power plant [J]. Technology innovation and application, 2021(9): 177-179. |
[10] |
袁国全, 张江涛, 潘振波, 等. 脱硫废水预处理系统软化设备的调试和分析 [J]. 热力发电, 2011, 40(2): 76-78. DOI: 10.3969/j.issn.1002-3364.2011.02.076.
YUAN G Q, ZHANG J T, PAN Z B, et al. Commission debugging and analysis of the softening equipment in wastewater pretreatment system of FGD [J]. Thermal power generation, 2011, 40(2): 76-78. DOI: 10.3969/j.issn.1002-3364.2011.02.076. |
[11] |
刘建中, 袁国全, 毛珩. 河源电厂脱硫废水预处理系统工程实例 [C]//中国电机工程学会. 2009年火电厂环境保护综合治理技术研讨会论文集, 洛阳, 2009-10-22. 北京: 中国电机工程学会, 2009: 191-192.
LIU J Z, YUAN G Q, MAO H. An example of desulfurization wastewater pretreatment system in Heyuan power plant [C]//Chinese Society for Electrical Engineering. 2009 Technical Seminar on Comprehensive Treatment of Thermal Power Plant Environmental Protection, Luoyang, 2009-10-22. Beijing: China Society of Electrical Engineering, 2009: 191-192. |
[12] |
陈守超. 电厂脱硫废水曝气装置设计优化 [J]. 科技与创新, 2015(8): 120-121. DOI: 10.15913/j.cnki.kjycx.2015.08.120.
CHEN S C. Power plant desulfurization wastewater aeration device design optimization [J]. Science and technology & innovation, 2015(8): 120-121. DOI: 10.15913/j.cnki.kjycx.2015.08.120. |
[13] |
许玥, 刘惠康. 基于COD在线软测量的曝气最优控制 [J]. 工业安全与环保, 2018, 44(11): 76-79. DOI: 10.3969/j.issn.1001-425X.2018.11.020.
XU Y, LIU H K. The aeration optimal cost control based on COD online soft sensor [J]. Industrial safety and environmental protection, 2018, 44(11): 76-79. DOI: 10.3969/j.issn.1001-425X.2018.11.020. |
[14] |
聂鹏飞. 600 MW机组湿法脱硫废水处理系统的优化改造 [J]. 热力发电, 2011, 40(10): 62-65, 69. DOI: 10.3969/j.issn.1002-3364.2011.10.062.
NIE P F. Optimized retrofit of wastewater treatment system in wet desulphurization of 600 MW unit [J]. Thermal power generation, 2011, 40(10): 62-65, 69. DOI: 10.3969/j.issn.1002-3364.2011.10.062. |
[15] |
张文娟, 姜安平, 姜楠, 等. 工业污水处理厂鼓风机和水泵的应用与发展趋势 [J]. 通用机械, 2016(4): 20-22, 28. DOI: 10.3969/j.issn.1671-7139.2016.04.003.
ZHANG W J, JIANG A P, JIANG N, et al. Application and development trend of blowers and pumps in industrial sewage treatment plants [J]. General machinery, 2016(4): 20-22, 28. DOI: 10.3969/j.issn.1671-7139.2016.04.003. |
[16] |
阎晓磊, 张晓英, 杜艳玲. 湿法脱硫废水含固量高原因分析及解决措施 [J]. 山西电力, 2012(2): 39-41. DOI: 10.3969/j.issn.1671-0320.2012.02.013.
YAN X L, ZHANG X Y, DU Y L. Causal analysis and solution measures of high solid content of wastewater in limestone-gypsum wet desulfurization system [J]. Shanxi electric power, 2012(2): 39-41. DOI: 10.3969/j.issn.1671-0320.2012.02.013. |
[17] |
王民军, 徐兴旺, 辛世伟, 等. 脱硫废水固含量偏高原因分析与解决方案 [J]. 广东化工, 2021, 48(20): 178-180, 194. DOI: 10.3969/j.issn.1007-1865.2021.20.067.
WANG M J, XU X W, XIN S W, et al. Reason analysis and solutions for high solid content in desulfurization wastewater [J]. Guangdong chemical industry, 2021, 48(20): 178-180, 194. DOI: 10.3969/j.issn.1007-1865.2021.20.067. |
[18] |
方伟强. 简析污水处理厂曝气风机选择使用 [J]. 中国设备工程, 2019(10): 219-220. DOI: 10.3969/j.issn.1671-0711.2019.10.139.
FANG W Q. Brief analysis on selection and application of aeration fan in sewage treatment plant [J]. China plant engineering, 2019(10): 219-220. DOI: 10.3969/j.issn.1671-0711.2019.10.139. |
[19] |
母瑞林, 唐也平, 姜国栋. 污水处理用曝气鼓风机的发展趋势 [J]. 风机技术, 2002(4): 47-50. DOI: 10.3969/j.issn.1006-8155.2002.04.014.
MU R L, TANG Y P, JIANG G D. Trend to development of aeration blower for sewage treatment [J]. Compressor, blower & fan technology, 2002(4): 47-50. DOI: 10.3969/j.issn.1006-8155.2002.04.014. |