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复合型挥发性氨在蒸汽冷凝水回收中的应用及经济效益
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作者 冯培轩 黄东 《中国特种设备安全》 2009年第4期64-66,共3页
CO2在蒸汽冷凝过程中对金属管道产生腐蚀,造成管网穿孔;冷凝水含铁量超标,不能回锅炉使用。我们把皮膜胺和挥发性氨加入蒸汽分汽缸中,对蒸汽进行处理,使管网不再产生CO2腐蚀,同时对锅炉给水进行深度除氧,冷凝水得以回收。
关键词 蒸汽冷凝水 皮膜胺和挥发性 深度除氧剂 经济回收
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Ammonia Volatilization and Denitrilfication Losses from an Irrigated Maize-Wheat Rotation Field in the North China Plain 被引量:29
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作者 ZHANGYu-Ming CHENDe-Li +3 位作者 ZHANGJia-Bao R.EDIS HUChun-Sheng ZHUAn-Ning 《Pedosphere》 SCIE CAS CSCD 2004年第4期533-540,共8页
Ammonia (NH3) volatilization, denitrification loss, and nitrous oxide (N2O) emission were investigated from an irrigated wheat-maize rotation field on the North China Plain, and the magnitude of gaseous N loss from de... Ammonia (NH3) volatilization, denitrification loss, and nitrous oxide (N2O) emission were investigated from an irrigated wheat-maize rotation field on the North China Plain, and the magnitude of gaseous N loss from denitrification and NH3 volatilization was assessed. The micrometeorological gradient diffusion method in conjunction with a Bowen Ratio system was utilized to measure actual NH3 fluxes over a large area, while the acetylene inhibition technique (intact soil cores) was employed for measurement of denitrification losses and N2O emissions. Ammonia volatilization loss was 26.62% of the applied fertilizer nitrogen (N) under maize, while 0.90% and 15.55% were lost from the wheat field at sowing and topdressing, respectively. The differences in NH3 volatilization between different measurement events may be due to differences between the fertilization methods, and to differences in climatic conditions such as soil temperature.Denitrification losses in the fertilized plots were 0.67%-2.87% and 0.31%-0.49% of the applied fertilizer N under maize and wheat after subtracting those of the controls, respectively. Nitrous oxide emissions in the fertilized plots were approximately 0.08%-0.41% and 0.26%-0.34% of the applied fertilizer N over the maize and wheat seasons after subtracting those of the controls, correspondingly. The fertilizer N losses due to NH3 volatilization were markedly higher than those through denitrification and nitrous oxide emissions. These results indicated that NH3 volatilization was an important N transformation in the crop-soil system and was likely to be the major cause of low efficiencies with N fertilizer in the study area. Denitrification was not a very important pathway of N fertilizer loss, but did result in important evolution of the greenhouse gas N2O and the effect of N2O emitted from agricultural fields on environment should not be overlooked. 展开更多
关键词 氨挥发性 脱氮作用 气态氮流失 二氧化氮 发性
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浅谈室内环境污染的预防控制
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作者 李健文 《科技资讯》 2006年第24期88-88,共1页
本文分析了室内环境质量控制存在的问题,提出了加强控制的措施。
关键词 室内环境 甲醛 挥发性有机化合物
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