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1.
Nonlocalized π-bond and Molecular Properties of Ozone Molecule;
臭氧分子的离域 π键与分子性质
2.
The chlorine atom is then free to react with an ozone molecule, taking one of the oxygen atoms to form chlorine monoxide.
然后,氯原子就可以自由地与臭氧分子反应,结合一个氧原子,形成一氧化氯。
3.
Scientists estimate that one chlorine atom can destroy as many as 100,000 ozone molecules.
科学家估计一个氯原子能破坏10万个左右的臭氧分子
4.
Design of Molecule of Catalytic Ozonation of Metals in Water Treatment;
水处理过程中的催化臭氧化催化剂的分子设计
5.
Study of the Influence on Ozone Oxidation on Molecular Distribution of Secondary Effluent and Membrane Resistance;
臭氧氧化对城市二级出水分子量分布及膜阻力构成的影响研究
6.
Low Molecular Weight Oxidation By-products Produced During Catalytic Ozonation with Ferric Hydroxide of NOM Fractions Isolated from Filtrated Water
FeOOH催化臭氧氧化滤后水中NOM的小分子副产物的生成
7.
ozone's horizontal distribution
臭氧的地平方向分布
8.
distribution (e.g. of ozone, precipitation)
例如臭氧,降水的分布
9.
catalytic ozone destruction cycle
臭氧的催化分解循环
10.
diurnal (ozone) profile
臭氧的白日分布曲线
11.
night-time ozone profile
夜间臭氧垂直方向的分布 不同高度的臭氧浓度
12.
The Research on the Power Diagnosetic of Ozone Producer Discharge and Dissociation of Residual Ozone Gas;
臭氧发生器放电功率诊断及剩余臭氧分解研究
13.
The clouds form surfaces where chemical reactions can take place that produce ozone-destroying molecules.
在这种云表面化学反应会产生一种破坏臭氧层的分子。
14.
In this sense the water molecules performs the same function as an added antiozonat.
在此意义上,水分子与加入的抗臭氧剂具有相同的功能。
15.
Ozone Induced Reactions Adopted for Making High Performance Polymers from Commodity Polymers;
基于臭氧化反应的通用高分子材料高性能化的研究
16.
Theoretical Study on the Hydrogen Bond between Phosphite Ozonide Complexes and Small Molecule Cluster;
亚磷酸盐臭氧化合物与小分子团簇氢键作用的理论研究
17.
Preparation and Molecular Design of Novelmetal Catalytic Ozonation Catalyst;
新型金属催化臭氧化催化剂的制备与分子设计研究
18.
Variation of Surface Ozone and Its Precursors in Beijing and the Effect of Meteorological Parameters;
北京市地面臭氧和前体物浓度变化规律及气象因子影响机制分析