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气泡的基本特性及其对浮选过程的影响。

Fundamental characteristics of bubbles and ramifications for the flotation process.

作者信息

Dockko S, Han M Y

机构信息

Dankook University, Chunan city, Chungnam, Korea.

出版信息

Water Sci Technol. 2004;50(12):207-14.

Abstract

Flotation processes involve the use of very small bubbles (micro-bubbles) to separate particles from water. The process has become a good alternative to sedimentation, especially where the particles are small or of low density. Although the flotation process commences with a collision between particles and bubbles, most research has been focused only on the characteristics of the particles. In this paper, recent theoretical and experimental research on the characteristics of bubbles is summarized. The effect on the collision efficiency of the size and charge of bubbles is calculated through trajectory analysis. The size and charge of bubbles are measured under different conditions and the ramifications of the results are discussed. The results may lead to a better understanding and optimization of the existing process. In particular, we discuss an idea that a new advanced flotation process might be possible by the modification of the characteristics of the bubble alone or of both bubble and particle.

摘要

浮选过程涉及使用非常小的气泡(微气泡)从水中分离颗粒。该过程已成为沉淀的良好替代方法,特别是在颗粒小或密度低的情况下。尽管浮选过程始于颗粒与气泡之间的碰撞,但大多数研究仅集中在颗粒的特性上。本文总结了近期关于气泡特性的理论和实验研究。通过轨迹分析计算气泡尺寸和电荷对碰撞效率的影响。在不同条件下测量气泡的尺寸和电荷,并讨论结果的影响。这些结果可能有助于更好地理解和优化现有过程。特别是,我们讨论了一种观点,即仅通过改变气泡特性或同时改变气泡和颗粒的特性,可能实现一种新的先进浮选过程。

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