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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Introducing the bromide/alkalinity ratio for a follow-up discussion on "Precipitation of salts in freezing seawater and ozone depletion events: a status report", by Morin et al., published in Atmos. Chem. Phys., 8, 7317–7324, 2008
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Introducing the bromide/alkalinity ratio for a follow-up discussion on "Precipitation of salts in freezing seawater and ozone depletion events: a status report", by Morin et al., published in Atmos. Chem. Phys., 8, 7317–7324, 2008

机译:在Morin等人的情况下,介绍了关于“冻干海水和臭氧消耗事件的盐水沉淀的盐碱基比例”,在ATMOS中发表。化学。物理。,8,7317-7324,2008

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Sander et al. (2006) proposed that CaCO3 precipitation can be an important factor in triggering tropospheric ozone depletion events. Recently, Morin et al. (2008b) presented calculations with the FREZCHEM model and concluded that their results and interpretation cast doubt on the validity of this hypothesis. In this joint publication, we have re-analyzed the implications of the FREZCHEM results and show how they can be reconciled with the proposal of Sander et al. (2006). The chemical predictions of both approaches are consistent. Although an interpretation solely based on the alkalinity change in the brine does not support the conclusion of Sander et al. (2006), we show that the bromide/alkalinity ratio (which increases during the cooling of the brine) can be used as an indicator of the potential for triggering bromine explosions.
机译:Sander等人。 (2006)提出,CaCO3沉淀可以是触发对流层臭氧耗尽事件的重要因素。最近,Morin等人。 (2008B)通过Frezchem模型提出了计算,并得出结论,其结果和解释对该假设的有效性令人疑问。在这一联合出版物中,我们重新分析了Frezchem结果的影响,并展示了如何与Sander等人的提议进行调整。 (2006)。两种方法的化学预测是一致的。尽管仅基于盐水中的碱度变化的解释不支持Sander等人的结论。 (2006),我们表明溴化物/碱度比(在冷却过程中增加)可以用作触发溴爆炸的可能性的指示。

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