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자료유형
학술저널
저자정보
손지은 (한국원자력연구원) 조상희 (한국원자력연구원) 오용환 (한국원자력연구원) 김태훈 (한국원자력연구원) 이용재 (삼성전자)
저널정보
한국대기환경학회 한국대기환경학회지(국문) 한국대기환경학회지 제40권 제1호
발행연도
2024.2
수록면
59 - 68 (10page)
DOI
10.5572/KOSAE.2024.40.1.59

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이 논문의 연구 히스토리 (2)

초록· 키워드

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Electron beam flue gas treatment (EBFGT) has garnered attention as an effective method for the removal of nitrogen oxides (NO<SUB>x</SUB>), offering advantages in low energy consumption and high removal capacity. Numerous studies have explored the electron beam process for NO<SUB>x</SUB> treatment using aqueous additives, predominantly focusing on flue gases from coal-fired combustion, characterized by high NO<SUB>x</SUB> concentrations. Recently, the application of this technology has expanded to industries with lower NOx emissions, such as the steel, petrochemical, and semiconductor sectors, driven by stringent emission regulations. Typically, these industrial flue gases exhibit a unique characteristic of having lower oxygen content compared to atmospheric air, attributed to the combustion-based treatment processes. In this context, our study investigated the impact of oxygen concentration on NOx removal efficacy using the EBFGT approach, particularly under conditions of low NO<SUB>x</SUB> concentration. The electron beam process was established with a simultaneous injection of sodium hydroxide solution as an additive and 30, 60, and 100 ppm of NOx was treated. The oxygen concentration in background gas was varied from 21 to 10 vol.% to evaluate its effect on NO<SUB>x</SUB> removal. When the oxygen level in background gas was reduced from 21 to 10 vol.%, the removal efficiency of NO<SUB>x</SUB> was increased to 3.9%p on average under optimized operating parameters (e.g. absorbed dose and flow rate of the additive solution). This phenomenon implies that the oxidation of nitric oxide (NO) and nitrogen (N₂) to generate nitrogen dioxide (NO₂) seems to be suppressed under low-oxygen environment and thus improves NO₂ removal. While further research is necessary to enhance the system’s capacity and efficiency, these findings distinctly indicate the potential of the electron beam treatment system for NO<SUB>x</SUB> removal in industrial applications.

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Abstract
1. 서론
2. 실험방법
3. 결과 및 고찰
4. 결론
References

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