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CO2 conversion in a dielectric barrier discharge plasma: N-2 in the mix as a helping hand or problematic impurity?

机译:介质阻挡放电等离子体中的CO2转化:混合物中的N-2是帮助之手还是有问题的杂质?

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摘要

Carbon dioxide conversion and utilization has gained significant interest over the years. A novel gas conversion technique with great potential in this area is plasma technology. A lot of research has already been performed, but mostly on pure gases. In reality, N-2 will always be an important impurity in effluent gases. Therefore, we performed an extensive combined experimental and computational study on the effect of N-2 in the range of 1-98% on CO2 splitting in dielectric barrier discharge (DBD) plasma. The presence of up to 50% N-2 in the mixture barely influences the effective (or overall) CO2 conversion and energy efficiency, because the N-2 metastable molecules enhance the absolute CO2 conversion, and this compensates for the lower CO2 fraction in the mixture. Higher N-2 fractions, however, cause a drop in the CO2 conversion and energy efficiency. Moreover, in the entire CO2/N-2 mixing ratio, several harmful compounds, i.e., N2O and NOx compounds, are produced in the range of several 100 ppm. The reaction pathways for the formation of these compounds are explained based on a kinetic analysis, which allows proposing solutions on how to prevent the formation of these harmful compounds.
机译:多年来,二氧化碳的转化和利用引起了人们极大的兴趣。等离子技术是在这一领域具有巨大潜力的新型气体转化技术。已经进行了许多研究,但主要是对纯气体的研究。实际上,N-2始终是废气中的重要杂质。因此,我们对介电势垒放电(DBD)等离子体中N-2在1-98%范围内对CO2分裂的影响进行了广泛的实验和计算研究。混合物中高达50%的N-2的存在几乎不影响有效(或整体)CO2转化和能源效率,因为N-2亚稳定分子可提高绝对CO2转化率,并补偿了较低的CO2分数。混合物。但是,较高的N-2馏分会导致CO2转化率和能源效率下降。而且,在整个CO2 / N-2混合比中,产生几种有害化合物,即N2O和NOx化合物,其范围为几百ppm。基于动力学分析来解释形成这些化合物的反应途径,这可以提出关于如何防止这些有害化合物形成的解决方案。

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  • 来源
    《Energy & environmental science》 |2016年第3期|999-1011|共13页
  • 作者单位

    Univ Antwerp, Dept Chem, Res Grp PLASMANT, Univ Pl 1, BE-2610 Antwerp, Belgium;

    Univ Antwerp, Dept Chem, Res Grp PLASMANT, Univ Pl 1, BE-2610 Antwerp, Belgium;

    Univ Antwerp, Dept Biosci Engn, Res Grp DuEL, BE-2610 Antwerp, Belgium;

    Univ Antwerp, Dept Biosci Engn, Res Grp DuEL, BE-2610 Antwerp, Belgium;

    Univ Antwerp, Dept Chem, Res Grp PLASMANT, Univ Pl 1, BE-2610 Antwerp, Belgium;

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