期刊文献+

防霾大数据与新型教室除霾器试点 被引量:2

Haze big data and new classroom haze collector
下载PDF
导出
摘要 文中设计一种新型的“负离子雾霾收集器”,该设备充分利用电子流动裹着雾霾颗粒除霾,纯物理过程,非常安全,该设备不需要风机,所以噪音特别小。将该设备试点运行在西安电子科技大学附属小学的3个教室里,连续采集2017年10月—2018年1月共计4个月的教室空气质量数据,对每天的空气数据进行分析。后期通过大量除霾模块的部署,产生实时以及历史雾霾大数据,并期望找出空气雾霾与季节时间的潜在规律。 A new haze collector generating negative ion was designed.The device can collect the haze by wrapping with particulate matters(PM)while electron flowing,its collecting process is pure physical process and safe.The device does not require a fan,so the noise is particularly low.The device was installed in three classrooms at Xidian University Affiliated Elementary School.The air quality data of classrooms was continuously acquired from October 2017 to January 2018.On the basis of the acquired data,the air data of everyday is analyzed.With the real-time and historical haze big data collected by a large number of PM collectors,it is expected to find out the potential relationship between air haze and season.
作者 刘波 黄旭楠 郝嘉雪 徐文华 张宏亮 王国华 苗启广 郑晓静 贾广 LIU Bo;HUANG Xunan;HAO Jiaxue;XU Wenhua;ZHANG Hongliang;WANG Guohua;MIAO Qiguang;ZHENG Xiaojing;JIA Guang(School of Computer Science and Technology,Xidian University,Xi'an 710071,China;College of Medical Information Engineering,Guangdong Pharmaceutical University,Guangzhou 510006,China;School of Civil Engineering and Mechanics,Lanzhou University,Lanzhou 730000,China;School of Mechanical?Electronic Engineering,Xidian University,Xi'an 710071,China)
出处 《现代电子技术》 北大核心 2019年第11期144-148,共5页 Modern Electronics Technique
关键词 雾霾 空气监测 除霾器 大数据 大气治理 室内空气净化 haze air monitoring haze collector big data atmospheric governance indoor air purification
  • 相关文献

参考文献2

二级参考文献16

  • 1石志平,王文生.相对湿度变化对臭氧分解速率的影响[J].保鲜与加工,2004,4(6):24-25. 被引量:8
  • 2XU Yongfu,JIA Long,GE Maofa,DU Lin,WANG Gengchen,WANG Dianxun.A kinetic study of the reaction of ozone with ethylene in a smog chamber under atmospheric conditions[J].Chinese Science Bulletin,2006,51(23):2839-2843. 被引量:16
  • 3[1]Sease W S, Rice R G, Pichet P, el at. Ozone mass transfer and contact systems [D]. In Proceedings of the Second International Symposium on Ozone Technology, Vienna, VA:International Ozone Association,1976, 1-14.
  • 4[2]Kim J G. Ozone as an antimicrobial agentin minimally processed foods [D] Columbus ,Ohio: Ohio State University , 1998,50-199.
  • 5[3]Rosenthal H. Selected bibliography on ozone, its biological effects and technical applications[M].Nanaima, BC: Fisheries and Marine Service, Pacific Biological Station, 1974.
  • 6Fiedler N.Health effects of a volatile organic mixture with and without ozone[C]// Proceedings of Indoor Air.Monterey,California,2002:596-601.
  • 7Thomas Wainman.Ozone and limonene in indoor air:A source of submicron particle exposure.[J].Environmental Health Perspectives,2000,108:1140-1145.
  • 8Christpffersen T S.Cis-Pinic Acid:A possible precursor for organic aerosol formation from ozonolysis of α-pinene[J].Atmospheric Environment,1998,32:1657-1661.
  • 9Grosjean D,Williams Ⅱ E L,Seinfeld J H.Atmospheric oxidation of selected terpenes and related carbonyls:Gasphase carbonyl products[J].Environmental Science and Technology,1992,26:1526-1533.
  • 10Kunio Kawamoto,Kengo Ishimaru,Yuji Imamura.Reactivity of wood charcoal with ozone[J].The Japan Wood Research Society,2005,51:66-72.

共引文献16

同被引文献4

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部