H2O 对 1,1-二氟乙烷(R152a)宏观火焰行为和燃烧反应机理的影响

IF 3.5 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Xueyan Wang , Hua Tian , Gequn Shu , Zhao Yang
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引用次数: 0

摘要

1,1-二氟乙烷(R152a)是最有前景的低全球升温潜能值制冷剂之一,但一旦泄漏可能引发火灾和爆炸。了解不同相对湿度条件下的火焰传播过程和燃烧机理对于安全使用易燃制冷剂至关重要。在这项研究中,高速摄像机记录了 R152a 在易燃极限附近燃烧的火焰传播过程。结合宏观实验现象,我们利用可靠的反应力场分子动力学模拟揭示了 H2O 对 R152a 燃烧微观机理的影响。从原子论的角度揭示了 H2O 对 R152a 氧化的促进作用。首次分析了不同环境下氧化中间产物和产物的差异。H2O/O2 环境对 R152a 分解的促进作用最强,其次是 O2 和热解环境。O2/H2O 环境降低了 R152a 的表观活化能,显著提高了 R152a 的消耗速率,并丰富了物种数量。O2 与 H2O 或 H 反应生成 OH,从而加速反应过程。H2O 可为反应提供更多的 OH 活性片段。此外,它还能促进 HF 和 H2 的形成,即 H2O + F→HF + OH、H2O + H→H2 + HO。这项研究旨在为易燃制冷剂的安全应用和灾难预防提供指导理论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of H2O on macroscopic flame behaviors and combustion reaction mechanism of 1,1-difluoroethane (R152a)

1,1-difluoroethane (R152a) is one of the most prospective low GWP refrigerants but may trigger fires and explosions once it leaks. Understanding the flame propagation process and combustion mechanisms at different relative humidity conditions is essential to use flammable refrigerants safely. In this study, a high-speed camera has recorded the flame propagation of R152a combustion near the flammability limit. Combining with macroscopic experimental phenomena, we revealed the effect of H2O on the microscopic mechanism of R152a combustion by using reactive force field molecular dynamics simulations with a reliable force field. The promotion effects of H2O on the oxidation of R152a were revealed from an atomistic perspective. The differences of oxidation intermediates and products in different environments were analyzed for the first time. The H2O/O2 environment was the most potent promoter of R152a decomposition, followed by the O2 and the pyrolysis environment. The O2/H2O environment reduced the apparent activation energy of R152a, significantly enhanced the consumption rate of R152a, and enriched the number of species. O2 reacts with H2O or H to form OH to accelerate the reaction process. The H2O could provide more OH active fragments for the reaction. Moreover, it promotes the formation of HF and H2, H2O + F→HF + OH, H2O + H→H2 + HO. This study aims to provide a guiding theory for the safe application and disaster prevention of flammable refrigerants.

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来源期刊
CiteScore
7.30
自引率
12.80%
发文量
363
审稿时长
3.7 months
期刊介绍: The International Journal of Refrigeration is published for the International Institute of Refrigeration (IIR) by Elsevier. It is essential reading for all those wishing to keep abreast of research and industrial news in refrigeration, air conditioning and associated fields. This is particularly important in these times of rapid introduction of alternative refrigerants and the emergence of new technology. The journal has published special issues on alternative refrigerants and novel topics in the field of boiling, condensation, heat pumps, food refrigeration, carbon dioxide, ammonia, hydrocarbons, magnetic refrigeration at room temperature, sorptive cooling, phase change materials and slurries, ejector technology, compressors, and solar cooling. As well as original research papers the International Journal of Refrigeration also includes review articles, papers presented at IIR conferences, short reports and letters describing preliminary results and experimental details, and letters to the Editor on recent areas of discussion and controversy. Other features include forthcoming events, conference reports and book reviews. Papers are published in either English or French with the IIR news section in both languages.
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