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1.
STUDY ON THE REACTION AND MASS TRANSFER OF OZONE WITH OLEFINE;
烯烃臭氧化反应及其传质过程的研究
2.
Study on Ozonization of Mixed Fatty Acid Methyl Esters in Malania Oleifera Oil;
蒜头果油中混合脂肪酸甲酯臭氧化反应的研究
3.
Study of the Ozonation Mechanism in Aqueous and the Application in Chemical Oxygen Demand Determining;
液相臭氧化反应机理研究及在化学耗氧量测定中的应用
4.
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
5.
Once in the upper atmosphere, CFC's react with ozone to destroy it.
氯氟化碳一旦进人上层大气,就会与臭氧发生反应,从而破坏臭氧层。
6.
Study of Biorefractory of Ozonation in a Membrane Reactor;
膜反应器中难降解有机污染物的臭氧化研究
7.
Treatment of Coke-plant Wastewater by Advanced Oxidation Processes Combined with MBR
臭氧高级氧化技术(AOPs)联合膜—生物反应器(MBR)处理焦化废水的研究
8.
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。
9.
In 1985, British scientists confirmed that chemical reactions had begun to damage the ozone layer above Antarctica.
1985年,英国科学家确认,化学反应已开始损害南极上空的臭氧层。
10.
Study of Effects of Chemical Reactions Initiated by Ozone on Indoor Air Quality;
臭氧引发的化学反应对室内空气品质影响的研究
11.
Theory Study on Mechanism of O_3-initiated Atmospheric Photooxidation of Terpenes;
臭氧引发的萜烯化合物大气反应机理的理论研究
12.
A new process concept of in-situ ozonation for sludge reduction in membrane bioreactor(MBR)
膜生物反应器臭氧化同步污泥减量新工艺的研究
13.
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。
14.
Laboratory, Pilot and Full Scale Investigations of Catalytic Ozonation for Upgrading Drinking Water Quality;
臭氧催化氧化除污染特性及其生产应用研究
15.
Application of Ozonation Reaction in Agricultural Products Chemical Processing Technology
臭氧氧化技术在农产品化学加工中的应用
16.
To convert(oxygen)to ozone.
使臭氧化把(氧气)变成臭氧
17.
Ozone is formed in the reaction, and a nitro derivative of the olefin.
在反应中形成臭氧及烯烃的硝基衍生物。
18.
Research on the Excess Sludge Reduction by the Coordination of Ultrasonic/Ozonation Pretreatment and Membrane Reactor
超声/臭氧—膜生物反应器协同剩余污泥减量研究