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通过超声波原子化驱动的微雾进化和尘埃控制机制的多层次模拟和实验研究
Zhongan Jiang1, Mingli Si1, Fabin Zeng1,2
1School of Resources and Safety Engineering, University of Science and Technology Beijing, Beijing 100083, China.
ACS omega
|February 23, 2026
概括
超声波原子化有效地抑制了矿山中的煤灰. 尘埃捕获与表面湿的最佳条件各不相同,达到高达80%的效率.
科学领域:
- 采矿工程 采矿工程 采矿工程
- 环境科学 环境科学
- 气溶科学 气溶科学
背景情况:
- 煤尘污染在露天采矿中对健康和安全构成重大风险.
- 有效的防尘控制对于符合法规和工人福祉至关重要.
研究的目的:
- 为了研究超声波原子化产生的微滴的动力学.
- 为了阐明煤矿中超声波原子化的除尘机制.
- 为了优化操作参数,以有效控制灰尘.
主要方法:
- 超声波原子化原理的理论分析.
- 宏观喷雾实验用于研究气液流量和滴滴速度.
- 微观数值模拟以建模原子化动态.
- 相关性分析以确定压力和流量/速度之间的关系.
主要成果:
- 建立了基于气体和液体压力的气体液体流量比和滴滴速度的功率定律相关性.
- 确定不同防尘场景的最佳运行条件 (近场捕获与表面湿).
- 实现了高的除尘效率 (约. 80%的总尘埃,75%的可呼吸尘埃) 在现场应用中.
结论:
- 超声波原子化为采矿中的煤尘污染提供了可行的解决方案.
- 了解滴水动力学和优化压力参数是有效控制尘埃的关键.
- 这项研究为开发高效的低水度尘埃减轻技术提供了实际指导.
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