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In this comparability, just one,3-D emissions under HDPE had been decrease with drip application; 1,3-D emissions beneath VIF and CP emissions beneath both movies were higher with the drip utility. We measured the kinetics of ozonation reaction of 1,1-diphenylethylene (DPE) in artificial snow, produced by shock freezing of DPE aqueous solutions sprayed into liquid nitrogen. It was demonstrated that many of the reactant molecules are in direct (productive) contact with gaseous ozone, thus the technique produces snow with natural molecules largely ejected to the floor of snow grains. The kinetic data had been used to judge the snow particular floor area (∼70 cm g(-1)).
This number is a measure of the supply of the molecules on the floor for chemical response with gaseous species. The experimental results have been according to the Langmuir-Hinshelwood type response mechanism. DPE represents environmentally relevant compounds similar to alkenes which can react with atmospheric ozone, and are comparatively plentiful in pure snow.
Compared to a spread of literature values for shank injection, the usage of drip software seems to offer a benefit in reducing 1,3-D and CP emissions. However, essentially the most significant comparison is with our earlier data for simulated …