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1.
Analysis of the Characteristics of Surface Ozone and Carbon Dioxide in Clean Area over Qinghai-Xizang Plateau;
青藏高原清洁地区近地面层臭氧/二氧化碳特征分析
2.
in the upper troposphere, ozone is created much more efficiently and is destroyed less easily than at ground level.
在上对流层中,与地面附近相比,臭氧能更有效地生成,而且更难分解。
3.
an area of the ozone layer (near the poles) that is seasonally depleted of ozone.
季节性地消耗臭氧的臭氧层(两极附近)的一个区域。
4.
The Impact of Increasing Surface Ozone Concentration on Grain Quality of Rice (Oryza Sativa L.)
近地层臭氧浓度升高对稻米品质的影响
5.
Effects of increasing surface ozone concentration on spikelet formation of hybrid rice cultivars
近地层臭氧浓度升高对杂交稻颖花形成的影响
6.
ozone layer
臭氧层(距地球表面20-40英里, 为同温层的外缘)
7.
Observational Study on the Characteristics of Ozone over the Surface of Semi-Arid Region;
半干旱地区近地面臭氧特性的观测研究
8.
Study on the Variations of Surface Ozone Concentrations at Lin an and Its Impact Factors;
临安近地面臭氧变化特征及影响因素研究
9.
At ground level, NO2 reacting with VOC, is responsible of surface ozone episodes;
在地面附近,氧化氮和VOC有助于地面臭氧幕的形成。
10.
Chaotic Prediction Model of Ground-level Ozone Time Series in Shanghai;
上海市近地层臭氧浓度时间序列混沌预报模式研究
11.
Effect of Increasing Surface Ozone Concentration on Yield and Dry Matter Production and Allocation of Rice (Oryza Sativa L.)
近地层臭氧浓度升高对水稻产量和物质生产与分配的影响
12.
Impact of Ground-level Ozone Enrichment on Root Growth and Nutrient Absorption of Rice
近地层臭氧浓度升高对水稻根系生长和养分吸收的影响
13.
Photosynthetic physio-response of urban Quercus mongolica leaves to surface elevated ozone concentration
城市蒙古栎对近地层臭氧浓度升高的光合生理响应
14.
Ozone Budget in the Lower and Middle Troposphere over North China
我国北方地区对流层中下层臭氧收支
15.
Bel's face was red. ' The AOL! '
贝尔的睑涨红了:“人工臭氧层。地球司令知道人工臭氧层的事。”
16.
Numerical Simulation Study on the Impacts of Changes of Tropspheric O_3 and CO_2 Concentrations on Crops;
近地层臭氧和二氧化碳浓度变化对冬小麦影响的数值模拟初步研究
17.
The Characteristics Study of Surface Ozone and Carbon Monoxide Concentration at Waliguan in Qinghai;
瓦里关地面臭氧与一氧化碳浓度变化特征研究
18.
Ban chlorofluorocarbons! These compounds are destroying the ozonosphere and permitting more UVB to reach the earth's surface.
禁止使用碳氟化合物.这种化合物正在破坏臭氧层而允许更多的UVB到达地球的表面。