碳排放CO2温室效应机制

The mechanism of greenhouse effect of carbon emission CO2

  • 摘要: 基于两个化学反应①CO2 + H2O → H2CO3和②H2CO3 + 3H2O → H2CO3·3H2O,采用量子化学方法,优化获得反应物和产物分子结构,计算其红外振动光谱和化学反应的热力学数据,确定这些化合物对红外辐射的吸收与强度. 研究发现,反应①和②能自发发生反应,产生H2CO3和H2CO3·3H2O(三水碳酸);H2CO3具有较强的红外辐射吸收(重要的吸收频率1919.9 cm−1和强度426.7 km/mol等),H2CO3·3H2O具有很强的红外辐射吸收(重要的吸收频率3145.9 cm−1和强度1124.2 km/mol等). 因此,H2CO3和H2CO3·3H2O可以作为主要物质广谱强吸收近红外和中红外辐射能,放出热量促使大气温度升高产生温室效应. 此外,还研究通过碳酸盐的水化反应得到的离子化合物HCO3, CO32−,HCO3·3H2O,CO32−·3H2O的红外振动,结果表明这些物质也能强吸收红外辐射能转变成热能,增强温室效应. 因此,研究找到了CO2作为温室气体导致温室效应的直接科学证据和机制,由CO2与H2O反应转变成H2CO3和H2CO3·3H2O,从而产生大气温室效应. 根据地球体系和大气中碳循环与碳排放的重要性和敏感危害性,直接明确的科学依据和机制确证了大气云雾中CO2气体能导致温室效应,增强了控制碳排放和温室效应的急迫性.

     

    Abstract: Based on two chemical reactions ① CO2 + H2O → H2CO3 and ② H2CO3 + 3H2O → H2CO3·3H2O, we optimized and calculated the chemical reactions by quantum chemical method to determine their infrared vibration absorption spectra and intensities, studied and determined the selective absorption and intensity of infrared radiation by these compounds. It’s found that reactions ① and ② can react spontaneously to produce H2CO3 and H2CO3·3H2O (carbonic acid trihydrate). H2CO3 has strong absorption of infrared radiation (The important absorption frequency is 1919.9 cm−1 and its intensity is 426.7 km/mol etc.), and H2CO3·3H2O possesses very strong absorption of infrared radiation (The important absorption frequency is 3145.9 cm−1 and its intensity is 1124.2 km/mol etc.). Therefore, H2CO3 and H2CO3·3H2O can act as the main materials to strongly broad absorb near-infrared and mid-infrared light energy, and emit heat energy to raise the atmospheric temperature, resulting in greenhouse effect. In addition, the infrared radiation absorption spectroscopy of the ionic compounds HCO3, CO32−, HCO3·3H2O and CO32−·3H2O obtained through the hydration reactions of carbonate was also studied in this work. The results show that these ionic compounds also have strong absorption of infrared radiation, convert light energy into heat energy, and enhance the greenhouse effect. Therefore, this research work has found the direct scientific evidence that CO2 as greenhouse gas leads to greenhouse effect and the mechanism, which is transformed from CO2 and H2O to H2CO3 and H2CO3·3H2O, thus having strong infrared radiation absorption and causing atmospheric greenhouse effect. According to the importance and sensitive hazards of carbon cycle and carbon emissions in the atmosphere of earth system, this paper proves that CO2 gas in atmospheric clouds can lead to the greenhouse effect through direct and clear scientific evidence and mechanism, and enhances the urgency to control carbon emission and greenhouse effect.

     

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