首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Heterogeneous Reaction of NO_2: Characterization of Gas-Phase and Adsorbed Products from the Reaction, 2NO_2(g) + H_2O(a) -> HONO(g) + HNO_3(a) on Hydrated Silica Particles
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Heterogeneous Reaction of NO_2: Characterization of Gas-Phase and Adsorbed Products from the Reaction, 2NO_2(g) + H_2O(a) -> HONO(g) + HNO_3(a) on Hydrated Silica Particles

机译:NO_2的异相反应:水合二氧化硅颗粒上气相和吸附反应产物2NO_2(g)+ H_2O(a)-> HONO(g)+ HNO_3(a)的表征

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This study provides the first in-situ characterization of the products in the heterogeneous reaction 2NO_2(g) + H_2O(a) -> HONO(g) + HNO_3(a). Transmission FT-IR spectroscopy and UV-vis spectroscopy were used to probe the heterogeneous chemistry of gas-phase nitrogen dioxide on hydrated SiO_2 particles. At 298 K, gaseous nitrogen dioxide reacts with adsorbed water on the surface of SiO_2 particles to form adsorbed nitric acid and gas-phase nitrous acid. FT-IR spectroscopy of the hydrated SiO_2 surface following reaction with NO_2 provides definitive identification of the adsorbed nitric acid product. The reaction does not occur when gas-phase nitrogen dioxide is reacted on dehydrated silica particles. The gas-phase product nitrous acid was detected with both FT-IR and UV-vis spectroscopy. Although homogeneous and heterogeneous reactions can contribute to the observed HONO signal, flow cell measurements can be used to distinguish between heterogeneous and homogeneous reaction pathways leading to HONO production.
机译:这项研究提供了异质反应2NO_2(g)+ H_2O(a)-> HONO(g)+ HNO_3(a)中产物的第一个原位表征。利用透射式红外光谱和紫外可见光谱研究了水合SiO_2颗粒上气相二氧化氮的非均相化学性质。在298 K时,气态二氧化氮与SiO_2颗粒表面的吸附水反应形成吸附的硝酸和气相亚硝酸。与NO_2反应后,水合SiO_2表面的FT-IR光谱提供了所吸附硝酸产物的确定标识。当气相二氧化氮与脱水二氧化硅颗粒反应时,该反应不会发生。气相产物亚硝酸通过FT-IR和UV-vis光谱法检测。尽管均相和异相反应可导致观察到的HONO信号,但流通池测量可用于区分导致HONO产生的异相和均相反应途径。

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