Leibniz Institute for Tropospheric Research, TROPOS, 04318 Leipzig, Germany.
Phys Chem Chem Phys. 2015 May 7;17(17):11658-69. doi: 10.1039/c4cp05542j.
The rate coefficients of the reaction of ozone with the four atmospherically relevant sesquiterpenes β-caryophyllene, α-humulene, α-cedrene and isolongifolene were investigated at 295 ± 2 K and atmospheric pressure by at least two independent experimental investigations for each reaction. Relative rate experiments were carried out in a flow tube using two different experimental approaches with GC-MS detection (RR 1) and PTR-MS analysis (RR 2) as the analytical techniques. Absolute rate coefficients were determined in a stopped-flow experiment following the ozone depletion by means of UV spectroscopy. The average rate coefficients from the combined investigations representing the mean values of the different experimental methods are (unit: cm(3) molecule(-1) s(-1)): k(O3+β-caryophyllene) = (1.1 ± 0.3) × 10(-14) (methods: RR 1, RR 2, absolute), k(O3+α-humulene) = (1.2 ± 0.3) × 10(-14) (RR 1, RR 2), k(O3+α-cedrene) = (1.7 ± 0.5) × 10(-16) (RR 2, absolute) and k(O3+isolongifolene) = (1.1 ± 0.5) × 10(-17) (RR 2, absolute). The high ozonolysis rate coefficients for β-caryophyllene and α-humulene agree well with the results by Shu and Atkinson (Int. J. Chem. Kinet., 1994, 26) and lead to short atmospheric lifetimes of about two minutes with respect to the ozone reaction. The relatively small rate coefficients for α-cedrene and isolongifolene differ from the available literature values by a factor of about 2.5-6. Possible reasons for the deviations are discussed. Finally, calibrated sesquiterpene FT-IR spectra were recorded for the first time.
臭氧与四种大气相关的半萜烯 - β-石竹烯、α-葎草烯、α-雪松烯和异长叶烯的反应速率系数在 295 ± 2 K 和大气压力下通过至少两种独立的实验研究进行了研究。相对速率实验在流管中进行,使用两种不同的实验方法,分别使用 GC-MS 检测(RR1)和 PTR-MS 分析(RR2)作为分析技术。通过 UV 光谱法在停止流动实验中测定了臭氧消耗后的绝对速率系数。代表不同实验方法平均值的综合研究的平均速率系数(单位:cm(3)分子(-1) s(-1))为:k(O3+β-石竹烯)=(1.1 ± 0.3)×10(-14)(方法:RR1、RR2、绝对),k(O3+α-葎草烯)=(1.2 ± 0.3)×10(-14)(RR1、RR2),k(O3+α-雪松烯)=(1.7 ± 0.5)×10(-16)(RR2、绝对)和 k(O3+异长叶烯)=(1.1 ± 0.5)×10(-17)(RR2、绝对)。β-石竹烯和 α-葎草烯的高臭氧分解速率系数与 Shu 和 Atkinson(Int. J. Chem. Kinet.,1994,26)的结果吻合良好,导致它们与臭氧反应的大气寿命约为两分钟。α-雪松烯和异长叶烯的相对较小的速率系数与可用文献值相差约 2.5-6 倍。讨论了偏差的可能原因。最后,首次记录了校准的半萜烯 FT-IR 光谱。