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Growth in stratospheric chlorine from short‐lived chemicals not controlled by the Montreal Protocol

机译:不受蒙特利尔议定书控制的短寿命化学品在平流层氯中的增长

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摘要

We have developed a chemical mechanism describing the tropospheric degradation of chlorine containing very short‐lived substances (VSLS). The scheme was included in a global atmospheric model and used to quantify the stratospheric injection of chlorine from anthropogenic VSLS ( ClyVSLS) between 2005 and 2013. By constraining the model with surface measurements of chloroform (CHCl3), dichloromethane (CH2Cl2), tetrachloroethene (C2Cl4), trichloroethene (C2HCl3), and 1,2‐dichloroethane (CH2ClCH2Cl), we infer a 2013 ClyVSLS mixing ratio of 123 parts per trillion (ppt). Stratospheric injection of source gases dominates this supply, accounting for ∼83% of the total. The remainder comes from VSLS‐derived organic products, phosgene (COCl2, 7%) and formyl chloride (CHClO, 2%), and also hydrogen chloride (HCl, 8%). Stratospheric ClyVSLS increased by ∼52% between 2005 and 2013, with a mean growth rate of 3.7 ppt Cl/yr. This increase is due to recent and ongoing growth in anthropogenic CH2Cl2—the most abundant chlorinated VSLS not controlled by the Montreal Protocol.
机译:我们已经开发出一种化学机制,描述了含有极短寿命物质(VSLS)的对流层氯的降解。该方案已包含在全球大气模型中,用于量化人为VSLS在平流层注入的氯( Cl y VSLS )。通过用氯仿(CHCl3),二氯甲烷(CH2Cl2),四氯乙烯(C2Cl4),三氯乙烯(C2HCl3)的表面测量值来约束该模型,和1,2-二氯乙烷(CH2ClCH2Cl),我们推断出2013年 Cl y VSLS 混合比例为123份/万亿(ppt)。平流层源气注入占主导地位,约占总量的83%。其余部分来自VSLS衍生的有机产品,光气(COCl2,7%)和甲酰氯(CHClO,2%)以及氯化氢(HCl,8%)。平流层 Cl < / mtext> y VSLS 增加了约52%在2005年至2013年期间,年平均增长率为3.7ppt Cl。这种增加归因于人为的CH2Cl2的最新和持续增长,CH2Cl2是不受《蒙特利尔议定书》控制的最丰富的氯化VSLS。

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