马长李,刘聪,马瑞萍.某系统贮存环境中微量盐雾监测[J].装备环境工程,2017,14(10):78-81. MA Chang-li,LIU Cong,MA Rui-ping.Monitoring of Micro Salt Fog in Storage Environment of a System[J].Equipment Environmental Engineering,2017,14(10):78-81.
某系统贮存环境中微量盐雾监测
Monitoring of Micro Salt Fog in Storage Environment of a System
投稿时间:2017-08-30  修订日期:2017-10-15
DOI:10.7643/issn.1672-9242.2017.10.015
中文关键词:  盐雾浓度  沉积速率  监测方法
英文关键词:salt fog concentration  deposition rate  monitoring method
基金项目:
作者单位
马长李 海军研究院,北京 100161 
刘聪 西南技术工程研究所,重庆 400039 
马瑞萍 海军研究院,北京 100161 
AuthorInstitution
MA Chang-li Naval Academy, Beijing 100161, China 
LIU Cong Southwest Technology and Engineering Research Institute, Chongqing 400039, China 
MA Rui-ping Naval Academy, Beijing 100161, China 
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中文摘要:
      目的 对某系统贮存环境中微量盐雾进行系统监测,掌握其盐雾污染水平。方法 针对盐雾浓度和盐雾沉积速率两项指标,对目前的各种监测与分析方法进行总结和比较,根据某系统贮存环境特点制定监测方案并进行现场监测。结果 某系统贮存环境C区域盐雾量值高于A区域和B区域。结论 某系统贮存环境实测盐雾浓度较要求低1~2个数量级,盐雾污染属于最低的S0级。
英文摘要:
      Objective To monitor the micro salt fog in a system's storage environment and determine its salt fog pollution level. Methods According to the two indexes of salt fog concentration and salt fog deposition rate, the current monitoring and analysis methods were summarized and compared. According to the characteristics of a system's storage environment, monitoring plans were formulated and field monitoring was carried out. Results The salt fog value of area C in a system was higher than that in areas A and B. Conclusion The measured salt fog concentration in the storage environment of the system is 1-2 orders of magnitude lower than that required. The salt fog pollution is the lowest S0 level.
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