助磨剂EDTA在超细石膏粉体制备过程中的作用机制

Study on the Effect Mechanism of EDTA on the Preparation of Ultrafine Gypsum Powder

  • 摘要: 为阐明EDTA在生石膏超细磨过程中的作用机理,采用黏度、XRD、XPS和红外光谱等方法表征生石膏料浆及超细磨产品。结果表明,在排矿口宽度为12 mm、料浆浓度为20%和超细磨时间为15 min的条件下,质量分数0.40%的EDTA可有效强化生石膏晶格应变效应和晶粒细化效应,减小生石膏的结晶度和粒度,使其d50由42.43 μm减小为16.69 μm。EDTA与生石膏表面的Ca2+生成Ca(COO)2,并覆盖其表面的羟基化活性点Ca2+导致ζ电位负向增大,进而减少了生石膏表面的吸附水相对含量及颗粒间的黏结力。上述作用既增强了生石膏颗粒间的排斥作用能使其形成稳定的分散体系,还可使生石膏料浆的浊度增大27.78%,而黏度减小18.16%,最终提高了生石膏的超细磨矿效果。

     

    Abstract: To clarify the mechanism of EDTA in the procession of ultrafine grinding of gypsum, viscosity, XRD, XPS and infrared spectroscopy were used to characterize the gypsum slurry and its ultrafine grinding products. The results showed that EDTA with a dosage of 0.40% could effectively strengthen the strain effect and grain refinement effect in the gypsum lattice and reduced the crystallinity and particle size of the gypsum, then reduced its d50 from 42.43 μm to 16.69 μm under the conditions of a discharge port width of 12 mm, a slurry concentration of 20% and an ultra-fine grinding time of 15 minutes. Ca(COO)2, generated by EDTA and Ca2+ of gypsum surface, covered hydroxylated active point Ca2+ which causes a negative increase in zeta potential, thereby reduced the relative content of adsorption water on the surface of the gypsum and the bonded force between the gypsum particles. The mentioned effects not only enhanced the repulsion between the gypsum particles to form a stable dispersion system, but also increased the turbidity of the gypsum slurry by 27.78% and decreased the viscosity by 18.16%, so improved the ultrafine grinding effect of EDTA on the gypsum finally.

     

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