Reply to the ‘Comment on “Assessing the atmospheric fate of trifluoroacetaldehyde (CF3CHO) and its potential as a new source of fluoroform (HFC-23) using the AtChem2 box model”’ by O. J. Nielsen, M. P. Sulbaek Andersen and J. Franklin, Environ. Sci.: Atmos., 2025, 5, DOI: 10.1039/D4EA00123K

IF 2.8 Q3 ENVIRONMENTAL SCIENCES
Maria Paula Pérez-Peña, Jenny A. Fisher, Christopher S. Hansen and Scott H. Kable
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引用次数: 0

Abstract

In Pérez-Peña et al. (DOI: https://doi.org/10.1039/d3ea00120b), we used a suite of box model simulations to determine how trifluoroacetaldehyde (CF3CHO) produced from HFO-1234ze is lost in the atmosphere and how much fluoroform (CHF3 or HFC-23) could potentially be produced as a result. For the first time in any modelling study, our simulations included both a minor CF3CHO photolytic loss channel leading to CHF3 production and physical removal of CF3CHO via wet and dry deposition. In their comment, Sulbaek Andersen, Nielsen, and Franklin query the assumptions used to simulate these processes. Here, we show that the importance of the photolytic loss pathway remains a matter of community debate and that our results are relatively insensitive to assumptions underlying simulation of deposition. We reiterate the need for measurements of CF3CHO physical properties to reduce the uncertainties in these processes and pave the way for more sophisticated models.

在 Pérez-Peña 等人(DOI: https://doi.org/10.1039/d3ea00120b)的研究中,我们使用了一套箱式模型模拟来确定 HFO-1234ze 产生的三氟乙醛(CF3CHO)在大气中的损失情况,以及由此可能产生的氟甲烷(CHF3 或 HFC-23)的数量。在所有建模研究中,我们的模拟首次同时包括了导致 CHF3 生成的少量 CF3CHO 光解损失通道,以及通过干湿沉积对 CF3CHO 的物理清除。Sulbaek Andersen、Nielsen 和 Franklin 在他们的评论中对模拟这些过程所使用的假设提出了质疑。在这里,我们证明了光解损失途径的重要性仍然是一个值得讨论的问题,而且我们的结果对模拟沉积的假设相对不敏感。我们重申需要测量 CF3CHO 的物理特性,以减少这些过程中的不确定性,并为建立更复杂的模型铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.90
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