Climatic consequences of the process of saturation of radiation absorption in gases

IF 2.2 Q2 ENGINEERING, MULTIDISCIPLINARY Applications in engineering science Pub Date : 2023-12-12 DOI:10.1016/j.apples.2023.100170
Jan Kubicki, Krzysztof Kopczyński, Jarosław Młyńczak
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Abstract

This article provides a brief review of research on the impact of anthropogenic increase in atmospheric CO2 concentration on Earth's climate. A simplified analysis of resonant radiation absorption in gases is conducted. Building upon the material from the cited articles, theoretical and empirical relationships between radiation absorption and the mass of the absorbing material are presented. The concept of saturation mass is introduced. Special attention is given to the phenomenon of thermal radiation absorption saturation in carbon dioxide. By comparing the saturation mass of CO2 with the quantity of this gas in Earth's atmosphere, and analyzing the results of experiments and measurements, the need for continued and improved experimental work is suggested to ascertain whether additionally emitted carbon dioxide into the atmosphere is indeed a greenhouse gas.

Significance statement

• The impact of anthropogenic increase in atmospheric CO2 concentration on Earth's climate is analysed. • The concept of saturation mass is introduced. • By comparing the saturation mass of CO2 with the quantity of this gas in Earth's atmosphere, and analyzing the results of experiments and measurements, the need for continued and improved experimental work is suggested to ascertain whether additionally emitted carbon dioxide into the atmosphere is indeed a greenhouse gas.

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气体吸收辐射饱和过程对气候的影响
本文简要回顾了大气中二氧化碳浓度人为增加对地球气候影响的研究。文章对气体的共振辐射吸收进行了简化分析。在引用文章材料的基础上,介绍了辐射吸收与吸收材料质量之间的理论和经验关系。介绍了饱和质量的概念。特别关注了二氧化碳的热辐射吸收饱和现象。通过比较二氧化碳的饱和质量和地球大气中这种气体的数量,并分析实验和测量结果,提出需要继续改进实验工作,以确定额外排放到大气中的二氧化碳是否确实是一种温室气体。- 引入了饱和质量的概念。- 通过比较二氧化碳的饱和质量和这种气体在地球大气中的数量,并分析实验和测量结果,提出需要继续改进实验工作,以确定额外排放到大气中的二氧化碳是否确实是一种温室气体。
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来源期刊
Applications in engineering science
Applications in engineering science Mechanical Engineering
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
68 days
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