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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Upper airway irritation of terpene/ozone oxidation products (TOPS). Dependence on reaction time, relative humidity and initial ozone concentration.
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Upper airway irritation of terpene/ozone oxidation products (TOPS). Dependence on reaction time, relative humidity and initial ozone concentration.

机译:上呼吸道对萜烯/臭氧氧化产物(TOPS)的刺激。取决于反应时间,相对湿度和初始臭氧浓度。

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摘要

Recently, we reported the formation of unidentified strong upper airway irritants in reaction mixtures of terpenes and ozone. The identified products included aldehydes, ketones and carboxylic acids. Here we report the effects of variation of reaction time, relative humidity and initial ozone concentration on irritant formation in a flow reaction system using R-(+)-limonene and isoprene. Upper airway irritation was measured in mice as reduction of the respiratory rate. For both substances maximum irritation was observed for low humidity (<2% RH)/short time (16-30 s) reaction mixtures, and both moderate humidity ( approximately 32% RH) and longer reaction times (60-90 s) resulted in significantly less irritation. These results suggest that some unidentified intermediates react with water vapor to give less irritating products. Irritation measured at four ozone concentrations (0.5, 1, 2 and 3.5 ppm) using low humidity/short time reaction conditions for limonene (50 ppm) and isoprene (500 ppm) revealed that at 0.5 ppm, irritation was at the same level as that for the pure terpenes, indicating that at 0.5 ppm ozone the combined irritant effect was near the no effect level for the product mixture.
机译:最近,我们报道了萜烯和臭氧的反应混合物中形成了未知的强烈的上呼吸道刺激物。鉴定出的产品包括醛,酮和羧酸。在这里,我们报告了使用R-(+)-柠檬烯和异戊二烯的流动反应系统中反应时间,相对湿度和初始臭氧浓度变化对刺激物形成的影响。在小鼠中测量上呼吸道刺激,以降低呼吸频率。对于这两种物质,在低湿度(<2%RH)/短时间(16-30 s)的反应混合物中均观察到最大刺激性,中等湿度(约32%RH)和较长的反应时间(60-90 s)均导致刺激性明显降低。这些结果表明,一些未鉴定的中间体与水蒸气反应,产生较少的刺激性产物。使用低湿度/短时间反应条件对柠檬烯(50 ppm)和异戊二烯(500 ppm)在四个臭氧浓度(0.5、1、2和3.5 ppm)下测量的刺激性表明,在0.5 ppm时,刺激性与对于纯萜烯而言,表明在0.5 ppm臭氧下,组合刺激作用接近于产物混合物的无作用水平。

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