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大气条件下三氯乙醛的光解作用。

Photolysis of chloral under atmospheric conditions.

作者信息

Wenger John C, Le Calvé Stéphane, Sidebottom Howard W, Wirtz Klaus, Reviejo Montserrat Martín, Franklin James A

机构信息

Department of Chemistry and Environmental Research Institute, University College Cork, Cork, Ireland.

出版信息

Environ Sci Technol. 2004 Feb 1;38(3):831-7. doi: 10.1021/es0300719.

Abstract

The photolysis of chloral under atmospheric conditions was studied at the large outdoor European Photoreactor (EUPHORE) in Valencia, Spain. The photodissociation rate coefficient, J(chloral), was measured directly under different sunlight conditions during April 1999. Values in the range of J(chloral) = (4.61-6.11) x 10(-5) s(-1) were obtained, yielding an average value of J(chloral)/J(NO2) = (6.15 +/- 0.62) x 10(-3). This corresponds to a photolysis lifetime of 4.5-6 h under conditions appropriate to the solar flux during summer months and confirms that atmospheric photolysis is the major degradation pathway for chloral. The overall quantum efficiency of photolysis under atmospheric conditions was determined to be 1.00 +/- 0.05. The atmospheric photolysis of chloral produced phosgene, CO, and Cl atoms with molar yields of 0.83 +/- 0.04, 1.01 +/- 0.05, and 1.18 +/- 0.06, respectively. The product yield data are consistent with a mechanism in which the primary photolysis channel produces a Cl atom and a CCl2CHO radical. The latter species is converted to the oxy radical OCCl2CHO,which decomposes by both C-C and C-Cl bond fission. A chemical mechanism for the photolysis of chloral by sunlight is proposed, and the atmospheric implications are discussed.

摘要

在西班牙巴伦西亚的大型户外欧洲光化学反应器(EUPHORE)中,研究了大气条件下三氯乙醛的光解作用。1999年4月,在不同的阳光条件下直接测量了光解离速率系数J(三氯乙醛)。得到的J(三氯乙醛)值范围为(4.61 - 6.11)×10⁻⁵ s⁻¹,J(三氯乙醛)/J(二氧化氮)的平均值为(6.15 ± 0.62)×10⁻³。这对应于夏季月份适合太阳通量条件下4.5 - 6小时的光解寿命,并证实大气光解是三氯乙醛的主要降解途径。确定大气条件下光解的总量子效率为1.00 ± 0.05。大气中三氯乙醛的光解产生了光气、一氧化碳和氯原子,摩尔产率分别为0.83 ± 0.04、1.01 ± 0.05和1.18 ± 0.06。产物产率数据与一种机制一致,即初级光解通道产生一个氯原子和一个CCl₂CHO自由基。后一种物质转化为氧自由基OCCl₂CHO,它通过C - C和C - Cl键的断裂而分解。提出了阳光对三氯乙醛光解的化学机制,并讨论了其对大气的影响。

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