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水泥生产氮氧化物排放控制技术概况 被引量:2
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作者 王雷 郭珍妮 +5 位作者 张国茂 夏凌风 李响 邱林 蒙景怡 张翼 《中国水泥》 CAS 2020年第9期79-83,共5页
我国是水泥生产和消费大国,除电力和运输外水泥行业已经成为我国氮氧化物排放第三大来源,氮氧化物的排放已成为我国雾霾天气的重要成因之一。随着氮氧化物控制技术的不断提升,我国氮氧化物排放标准也日益严格,水泥生产对氮氧化物控制技... 我国是水泥生产和消费大国,除电力和运输外水泥行业已经成为我国氮氧化物排放第三大来源,氮氧化物的排放已成为我国雾霾天气的重要成因之一。随着氮氧化物控制技术的不断提升,我国氮氧化物排放标准也日益严格,水泥生产对氮氧化物控制技术的需求也不断提高。该文梳理总结了水泥生产中氮氧化物生成的基本机理,从原料处理、过程控制和烟气处理三个方向阐述了各种脱硝技术的原理、局限性和应用场景。考虑到我国水泥生产氮氧化物减排标准不断提高,对超低氮氧化物排放控制技术的需求也与日俱增,该文也总结了可实现氮氧化物超低排放的控排新技术的发展现状。 展开更多
关键词 水泥生产 氮氧化物排放控制 NOx SCR SNCR
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船舶废气清洗系统使用中常见问题及对策
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作者 张亚朋 倪训鹏 +1 位作者 张剑 徐舜吉 《水运管理》 2020年第2期39-40,43,共3页
为使船舶废气排放符合国际公约和各国法律法规的要求,介绍国际公约对船舶废气排放控制要求及船舶废气清洗系统(EGCS)的工作原理和基本构成,分析地方性法规对船舶EGCS使用的影响,介绍EGCS故障处理办法、排气背压对NO_x排放的影响及EGCS... 为使船舶废气排放符合国际公约和各国法律法规的要求,介绍国际公约对船舶废气排放控制要求及船舶废气清洗系统(EGCS)的工作原理和基本构成,分析地方性法规对船舶EGCS使用的影响,介绍EGCS故障处理办法、排气背压对NO_x排放的影响及EGCS数据监测的重要性,阐述船员熟悉EGCS原理和EGCS监测数据的意义及如何结合国际公约及各地对船舶废气排放控制的要求来正确使用EGCS,船舶企业应重视对船员的相关培训并将有关SO_x排放控制要求的变化及时通知船员,帮助船员正确使用EGCS,使船舶满足SO_x排放控制的相关要求。 展开更多
关键词 废气清洗(EGC) 氧化物(SO_x)排放控制 氮氧化物(NO_x)排放控制
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Field experiments on greenhouse gas emissions and nitrogen and phosphorus losses from rice paddy with efficient irrigation and drainage management 被引量:15
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作者 PENG ShiZhang1,2,YANG ShiHong1,2,XU JunZeng1,2 & GAO HuanZhi1,2 1State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering,Hohai University,Nanjing 210098,China 2College of Water Conservancy and Hydropower Engineering,Hohai University,Nanjing 210098,China 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第6期1581-1587,共7页
Greenhouse gas emissions,nitrogen and phosphorous losses through ammonia volatilization,leaching and surface drainage from rice paddy under efficient irrigation and drainage were analyzed based on field experimental d... Greenhouse gas emissions,nitrogen and phosphorous losses through ammonia volatilization,leaching and surface drainage from rice paddy under efficient irrigation and drainage were analyzed based on field experimental data in order to reveal the eco-environmental impacts of efficient irrigation and drainage on rice paddy.The results showed that total methane emission from rice paddy under the controlled irrigation was reduced by more than 80% and total nitrous oxide emission increased by 15.9% compared with flooding irrigation.Seasonal comprehensive global warming potentials(GWP) of methane and nitrous oxide were 62.23 gCO2 m-2 for rice paddy under the controlled irrigation,reduced by 68.0% compared with flooding irrigation.Due to large reduction in seepage and surface drainages,nitrogen and phosphorous losses through leaching were reduced by 40.1% and 54.8%,nitrogen and phosphorous losses through surface drainage were reduced by 53.9% and 51.6% from rice paddy under efficient irrigation and drainage compared with traditional irrigation and drainage.Nitrogen loss through ammonia volatilization was reduced by 14.0%.Efficient irrigation and drainage management is helpful to mitigate greenhouse gases emission,nitrogen and phosphorus losses and their pollution on groundwater and surface water. 展开更多
关键词 efficient irrigation and drainage nitrogen and phosphorus greenhouse gas ammonia volatilization paddy field
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