大气微量气体
- 网络atmospheric trace gases
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大气微量气体人为扰动的气候效应
Climatic effects due to man-made perturbations of atmospheric trace gases
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在用CO激光监测大气微量气体或污染气体时,必须根据实际大气状况,进行必要的水汽订正。
When monitor trace gases of the atmosphere or pollution gases by means of CO laser , one must correct for water vapor attenuation according to the actual condition of the atmosphere .
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论大气微量气体增加的环境效应及地质记录研究
Discussion on environmental effects of increasing trace gases in the atmosphere and on studies of geological records
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结果表明,模拟低层大气微量气体的变化需要考虑边界层结构的影响。
In addition , the influence of the boundary layer on the distribution of trace gases is studied .
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准两年振荡对大气中微量气体分布的影响
Impact of the Quasi-Biennial Oscillation on the Distribution of the Trace Gases in the Stratosphere
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大气中微量气体的红外吸收
Infrared absorption by trace gases in atmosphere
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本文详细介绍了中分辨率红外光谱仪和利用该仪器测量的太阳红外吸收光谱反演大气CO等微量气体的原理和方法。
The description of the infrared grating spectrometer of moderate resolution is given , and the principle and the method of retrieving CO column amount from the measured solar infrared absorption spectra are also presented in detail .
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这一值与观测到的大气中各种微量气体值作一比较是有益的。
It is informative to contrast this with the observed values of various trace gases in the atmosphere .
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另外,气溶胶中的固态粒子能够吸附大气中的微量气体,液态粒子能溶解微量气体,它们在化学反应后生成新的物质微粒,会造成严重的大气污染事件。
Moreover , aerosol can cause serious atmospheric pollution by way of absorbing or dissolving trace gas of atmosphere .
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氧化亚氮、甲烷是大气中重要的微量气体,对全球变暖和大气化学有重要作用。
N2O and CH4 are important atmospheric trace gases , which play significant roles in the global warming and atmospheric chemistry .