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空气顶压逆流再生阳离子交换器还原故障分析及应对措施
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作者 马连凤 吴玉娟 许磊 《化工管理》 2016年第15期107-107,共1页
根据一次空气顶压逆流再生阳离子交换器还原过程中出现的射水器无流量的现象,阐述了空气顶压逆流再生还原操作的过程,分析了出现故障的可能原因,提出了相应的处理措施,以期优化阳离子交换器还原的效果,提高其运行效率。
关键词 空气顶压逆流再生 故障分析 应对措施
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我国水处理技术处于国际领先水平
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《水利水电技术》 CSCD 北大核心 2004年第9期36-36,共1页
关键词 中国 水处理 高流速双室床 悬浮物 空气顶压
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Stratospheric entry point for upper-tropospheric air within the Asian summer monsoon anticyclone 被引量:3
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作者 FAN QiuJun BIAN JianChun Laura L.PAN 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第9期1685-1693,共9页
The Asian summer monsoon(ASM) anticyclone isolates upper-tropospheric air within the interior of the anticyclone from the outside. Forward trajectory simulations in previous studies have shown that much of the air wit... The Asian summer monsoon(ASM) anticyclone isolates upper-tropospheric air within the interior of the anticyclone from the outside. Forward trajectory simulations in previous studies have shown that much of the air within the ASM anticyclone can be trapped for up to two or three weeks, not only laterally but also vertically. Here, we investigate the locations of exit points for upper-tropospheric air trapped within the ASM anticyclone, especially the preferred tropopause-crossing locations, using a 3-dimensional trajectory model. Forward trajectory calculations show two-thirds of the air crosses the tropopause at the southern part of the anticyclone via upward diabatic transport. Furthermore, some air crosses at northern and eastern parts via isentropic shedding, but air crosses rarely through the center of the anticyclone. However, calculations also show that many stratospheric parcels within the anticyclone are traceable from the upper-tropospheric anticyclone. This implies they cannot break through the tropopause directly overhead but instead enter the stratosphere via other entry points. 展开更多
关键词 Asian summer monsoon anticyclone Tropopause Stratosphere-troposphere exchange Trajectory simulation
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