过程参数对HNOy=2,3和NOy-形成在等离子处理水中的影响
Jin Hee Bae1, Seong-Cheol Huh1, Negar Rahdar1
1Department of Nuclear and Quantum Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-Ro, Yuseong-Gu, Daejeon 34141, Republic of Korea.
ACS omega
|December 22, 2025
概括
水力动力学和温度显著影响等离子体处理水的组成. 较高的动有利于酸盐,而适度的速度和较低的温度促进酸盐的形成,指导高效的生产.
科学领域:
- 等离子体化学
- 处理水处理水处理水处理
- 固定的方法是固定.
背景情况:
- 塑处理水 (PTW) 的生产涉及复杂的化学反应.
- 了解影响PTW组成的因素对于目标应用至关重要.
研究的目的:
- 研究水力动力学和温度对PTW中和酸形成的影响.
- 关联气相物种动态与演变的水性物种.
主要方法:
- 使用表面介电屏障放电 (sDBD) 反应器.
- 多种速度 (200-1000rpm) 和水温 (20-80°C).
- 采用同步双光学吸收光谱技术实时追踪物种.
主要成果:
- 酸盐产量随着动而增加,主导在每分钟800转以上.
- 亚酸盐池 (NO2- + HNO2) 在每分钟600转时达到峰值,由于挥发,在更高的速度下降.
- 升高的温度抑制了NO和NO2,有利于酸盐,并扩大了富含臭氧的制度.
结论:
- 水力动力学和温度是控制PTW组成的关键参数.
- 这些发现为优化PTW生产以满足特定应用的需求提供了指导方针.
- 在等离子体驱动的固定中揭示了温度依赖的动力学和质量转移限制.
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