In the electric field, and thee-hole separation, were moved to different locations on the surface of particles, and the solution is similar to the component for oxidation and reduction.
在电场作用下,电子与空穴分离,分别迁移到粒子表面的不同位置,与溶液中相似的组分进行氧化和还原反应。
The results indicate that impacts of atmospheric particles on photochemistry and oxidation ability of atmosphere are responsible for the reduction of the observed surface ozone concentration.
研究表明,颗粒物对光化学过程的抑制造成了大气氧化能力的降低,是近地面臭氧浓度减少的可能原因。
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