Mishra Ratan K, Weibel Martin, Müller Thomas, Heinz Hendrik, Flatt Robert J
Department of Civil, Environmental and Geomatic Engineering ETH Zurich, CH-8093 Zurich;, Email:
Sika Technology AG Tüffenwies 16, CH-8048 Zurich.
Chimia (Aarau). 2017 Aug 9;71(7):451-460. doi: 10.2533/chimia.2017.451.
We present our research findings related to new formulations of the organic additives (grinding aids) needed for the efficient grinding of inorganic solids. Even though the size reduction phenomena of the inorganic solid particles in a ball mill is purely a physical process, the addition of grinding aids in milling media introduces a complex physicochemical process. In addition to further gain in productivity, the organic additive helps to reduce the energy needed for grinding, which in the case of cement clinker has major environmental implications worldwide. This is primarily due to the tremendous amounts of cement produced and almost 30% of the associated electrical energy is consumed for grinding. In this paper, we examine the question of how to optimize these grinding aids linking molecular insight into their working mechanisms, and also how to design chemical additives of improved performance for industrial comminution.
我们展示了与高效研磨无机固体所需的有机添加剂(助磨剂)新配方相关的研究结果。尽管球磨机中无机固体颗粒的尺寸减小现象纯粹是一个物理过程,但在研磨介质中添加助磨剂会引入一个复杂的物理化学过程。除了进一步提高生产率外,有机添加剂有助于降低研磨所需的能量,这在水泥熟料的情况下对全球环境具有重大影响。这主要是由于水泥产量巨大,且近30%的相关电能用于研磨。在本文中,我们研究了如何通过深入了解其作用机制来优化这些助磨剂的问题,以及如何设计性能更优的化学添加剂用于工业粉碎。