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三氟碘甲烷作为高全球变暖潜能值气候污染物的前体:气候良性的CFI向强效温室气体的转化是否会显著增加与制冷剂相关的温室气体排放?

Trifluoroiodomethane as a Precursor to High Global Warming Potential Climate Pollutants: Could the Transformation of Climatically Benign CFI into Potent Greenhouse Gases Significantly Increase Refrigerant-Related Greenhouse Gas Emissions?

作者信息

Taddonio Kristen N, Dreyfus Gabrielle B, Andersen Stephen O, Ravishankara A R

机构信息

Institute for Governance & Sustainable Development, Washington, D.C. 20016, United States.

Department of Physics, Georgetown University, Washington, D.C. 20007, United States.

出版信息

Environ Sci Technol. 2023 Aug 15;57(32):11731-11737. doi: 10.1021/acs.est.3c01079. Epub 2023 Aug 3.

DOI:10.1021/acs.est.3c01079
PMID:37534912
Abstract

The transition away from the production and consumption of high global warming potential (GWP) hydrofluorocarbons (HFCs) under the 2016 Kigali Amendment to the Montreal Protocol on Substances that Deplete the Ozone Layer (Montreal Protocol) has prompted air conditioning, refrigeration, and heat pump equipment manufacturers to seek alternative refrigerants with lower direct climate impacts. Additional factors affecting alternative refrigerant choice include safety (i.e., flammability and toxicity), environmental, and thermodynamic constraints. At the same time, manufacturers are incentivized to seek refrigerants with higher energy efficiency, which saves on electricity costs and reduces indirect greenhouse gas emissions from electricity generation. The life cycle climate performance (LCCP) metric is commonly used to assess the combined direct and indirect climate impacts of refrigerant-use equipment. Here, we consider an additional impact on climate performance: the degradation of refrigerant in equipment, i.e., the direct climate impacts of high-GWP byproducts that can form as the result of adding trifluoroiodomethane (CFI) to refrigerant blends to reduce flammability. Such a production of high-GWP gases could change the acceptability of CFI-containing refrigerants. Further, it highlights the need to understand refrigerant degradation within equipment in calculations of the environmental acceptability of new cooling technology.

摘要

根据《关于消耗臭氧层物质的蒙特利尔议定书》(《蒙特利尔议定书》)2016年《基加利修正案》,逐步淘汰高全球升温潜能值(GWP)氢氟碳化物(HFCs)的生产和消费,促使空调、制冷和热泵设备制造商寻求对气候直接影响较小的替代制冷剂。影响替代制冷剂选择的其他因素包括安全性(即易燃性和毒性)、环境和热力学限制。与此同时,制造商受到激励去寻找能源效率更高的制冷剂,这既能节省电费,又能减少发电过程中的间接温室气体排放。生命周期气候性能(LCCP)指标通常用于评估制冷剂使用设备对气候的直接和间接综合影响。在此,我们考虑对气候性能的另一种影响:设备中制冷剂的降解,即向制冷剂混合物中添加三氟碘甲烷(CFI)以降低可燃性可能形成的高GWP副产品对气候的直接影响。这种高GWP气体的产生可能会改变含CFI制冷剂的可接受性。此外,这凸显了在计算新冷却技术的环境可接受性时,了解设备内制冷剂降解情况的必要性。

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Trifluoroiodomethane as a Precursor to High Global Warming Potential Climate Pollutants: Could the Transformation of Climatically Benign CFI into Potent Greenhouse Gases Significantly Increase Refrigerant-Related Greenhouse Gas Emissions?三氟碘甲烷作为高全球变暖潜能值气候污染物的前体:气候良性的CFI向强效温室气体的转化是否会显著增加与制冷剂相关的温室气体排放?
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