颗粒大小和疏水性对泡-颗粒碰撞在泥-泡相位界面上的脱离效应
Yiqing Zhang1,2, Shihao Ding1,2, Weihan Si1
1State Key Laboratory of Coking Coal Resources Green Exploitation, China University of Mining and Technology, Xuzhou 221116, China.
ACS omega
|February 5, 2024
概括
粒子疏水性通过增加总体稳定性来降低气泡粒子脱落的概率. 细颗粒通过滑动脱离,而粗颗粒由于碰撞时的泡振荡而脱离.
科学领域:
- * 表面科学和界面现象
- * 体和接口科学
- * 化学工程 化学工程
背景情况:
- *泡颗粒脱离在泥泡接口中至关重要,但显微机制仍然不清楚.
- * 现有的脱离理论主要针对泥和泡阶段,使得泥-泡接口的研究不足.
- * 气泡粒子聚合物的碰撞分离机制是正在进行的辩论的主题.
研究的目的:
- * 调查粒子大小和疏水性对气泡-粒子碰撞脱离的影响.
- * 阐明了在泥-泡界面控制颗粒脱离的微观机制.
- * 为了解现实应用中的脱离行为提供理论基础.
主要方法:
- *使用张力计测量脱离力.
- *高速动态摄像机记录碰撞脱离概率和行为.
- *对粒子/气泡轨迹,速度和气泡预测面积的MATLAB分析.
主要成果:
- *增加颗粒的疏水性通过提高泡颗粒聚合物的稳定性来降低脱落概率.
- *细颗粒通过相对于泡表面的滑动运动脱离.
- *粗粒子脱离主要是由于粒子引力诱导的泡振荡.
结论:
- * 颗粒的疏水性和大小显著影响气泡-颗粒碰撞脱离机制.
- * 结果澄清了不同颗粒大小的分离路径.
- * 该研究提供了优化泥-泡接口脱落过程的理论见解.
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