[1] GATH J, MAURER H, WAGNER H. Conventional resin cation exchangers versus EDI for CACE measurements-an ion chromatography study[J]. Power Plant Chemistry, 2016, 18(5):1-9. [2] 王益民. 全球能源互联网理念及前景展望[J]. 中国电力, 2016, 49(3):1-5, 11 WANG Yimin. Concept and prospect of global energy interconnection[J]. Electric Power, 2016, 49(3):1-5, 11 [3] 柯于进. 中国电厂相关化学问题研讨[C]//第四届PPCHEM电厂化学高峰论坛. 北京:2017. [4] 曹杰玉, 刘玮, 宋敬霞. 提高水汽系统化学监督与在线化学仪表可靠性的研究[J]. 中国电力, 2008, 41(3):62-64 CAO Jieyu, LIU Wei, SONG Jingxia. Research on the reliability improvement of chemical supervision and on-line chemical monitoring instrument for steam water system in power plant[J]. Electric Power, 2008, 41(3):62-64 [5] 曹杰玉, 宋敬霞. 火电厂水汽化学监督的技术关键及其对节能降耗的影响[J]. 中国电力, 2011, 44(7):61-65 CAO Jieyu, SONG Jingxia. Key technology of water and steam chemical supervision and its impact on energy-saving and consumption-reducing in thermal power plant[J]. Electric Power, 2011, 44(7):61-65 [6] 武哲, 张庆阳, 纪盛超, 等. 辽宁及蒙东地区电厂在线化学仪表管理现状及解决对策[J]. 东北电力技术, 2014, 35(11):34-37, 40 WU Zhe, ZHANG Qingyang, JI Shengchao, et al. Online chemistry instrumentation management and countermeasure of power plants in Liaoning and Inner Mongolia[J]. Northeast Electric Power Technology, 2014, 35(11):34-37, 40 [7] 车小云. 安徽省在线化学仪表运行状况调查与研究[J]. 安徽水利水电职业技术学院学报, 2012, 12(4):78-80 CHE Xiaoyun. The investigation and study about online chemical instrument operation condition of Anhui province[J]. Journal of Anhui Technical College of Water Resources and Hydroelectric Power, 2012, 12(4):78-80 [8] 横世权, 李良, 王飞. 火电厂在线化学仪表运行现状分析及维护建议[J]. 发电与空调, 2017, 38(4):43-46, 55 HENG Shiquan, LI Liang, WANG Fei. Operation status analysis and maintenance suggestion of on-line chemical instrument in thermal power plant[J]. Refrigeration Air Conditioning & Electric Power Machinery, 2017, 38(4):43-46, 55 [9] 国家能源局. 发电厂在线化学仪表检验规程:DL/T 677-2009[S]. 2009. [10] 曹杰玉. 火力发电机组水汽系统氢电导率的测定[J]. 热力发电, 2003, 32(11):84-87 CAO Jieyu. Measurement of hydrogen conductivity in water-steam system of thermal power-generating units[J]. Thermal Power Generation, 2003, 32(11):84-87 [11] 李志成, 王应高. 在线氢电导率离子交换柱附加误差研究[J]. 热力发电, 2011, 40(3):20-23 LI Zhicheng, WANG Yinggao. Study on additional error of ion exchange column by using on-line hydrogen conductivity meter[J]. Thermal Power Generation, 2011, 40(3):20-23 [12] 刘静. 电厂在线化学仪表测量准确性现状及提高途径[J]. 科技创新与应用, 2016(34):164 LIU Jing. Power plant on-line chemical instrument measuring accuracy status and improvement[J]. Technology Innovation, 2016(34):164 [13] 王二福. 电厂化学仪表技术问答[M]. 北京:中国电力出版社, 1999. [14] 潘珺, 宋敬霞, 刘继峰, 等. 发电厂在线钠表测量误差来源分析[J]. 自动化仪表, 2013, 34(11):56-58 PAN Jun, SONG Jingxia, LIU Jifeng, et al. Analysis on the sources of measurement error of online sodium meter in power plant[J]. Process Automation Instrumentation, 2013, 34(11):56-58 [15] 潘珺. 离子色谱法测量发电厂水汽系统蒸汽钠离子的不确定度评定[J]. 中国电力, 2015, 48(11):34-38 PAN Jun. Uncertainty evaluation of ion chromatography in trace sodium ion measurement of power plant water & steam system[J]. Electric Power, 2015, 48(11):34-38 [16] 国家能源局. 化学监督导则:DL/T 246-2015[S]. 2015. [17] ASTM. Standard test method for on-line determination of anions and carbon dioxide in high purity water by cation exchange and degassed cation conductivity:D4519-94[S]. 2005. [18] ASTM. Standard practice for on-line determination of cation conductivity in high purity water:D6504-07[S]. 2016. [19] 余建飞. 某发电有限公司#1机101A修化学监督检查分析报告(编号2018-42)[R]. 武汉:武汉方源东力电力技术中心, 2018. [20] 安徽新力电业科技咨询有限责任公司. 化学分析报告(第2015051号)[R]. 2015. |