硫酸钠混合物对皂土悬浮液理化性质的影响

O. S. Zubkova, M. A. Toropchina
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引用次数: 0

摘要

本文论述了粘土矿泥在金刚石矿富集中的利用问题。目前认为,通过化学处理对皂土污泥进行浓缩是澄清水量的最有效方法,该水量足以维持企业的循环用水供应,从而减少引入该工艺的额外水量。提出了一种新型混凝剂——硫酸钠混凝剂,用于沉淀铝生产副产皂石污泥。使用硫酸钠混合物将减少钻石采矿厂选矿厂和氧化铝生产的废物量。讨论了皂土污泥颗粒与所提试剂相互作用的机理问题。研究的目的是发现粘土泥颗粒与硫酸钠混合物相互作用的物理和化学规律。测定了所用原料的化学和矿物组成、粘土颗粒的表面电荷、实验样品的粒度组成及其电动势。研究结果表明,粘土浆料的矿物组成包括皂石、高岭土、蛇纹石、白脱石、白云石等矿物。粘土颗粒的表面电荷是负的。钠-硫酸盐混合物的化学成分以氧化物的形式表示:Na2O, SO3, CO2, Al2O3。揭示了矿浆中引入的矿物添加剂的质量对电动势的依赖性。注意到,尽管添加剂浓度增加,ζ电位的绝对值仍保持在30 mV以上,但当硫酸钠混合物浓度为14.4 g/l时,粘土颗粒发生混凝,体系失去沉降稳定性。
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Influence of soda-sulfate mixture on physicochemical properties of saponite suspension
This article deals with the problem of clayey sludge utilization of diamondiferous ore enrichment. Thickening of saponite sludge by means of chemical treatment is currently considered as the most effective way to clarify the volume of water sufficient to maintain the recycling water supply of the enterprise and, as a consequence, to reduce the volume of additional water introduced into the process. The authors propose a new coagulant for settling saponite sludge - sodium sulfate mixture, which is a by-product of aluminum production. The use of sodosulfate mixture will reduce the amount of waste for both the diamond mining plant's concentrator and the alumina production. The question of the mechanism of interaction of saponite sludge particles with the proposed reagent is considered. The aim of the research is to find physical and chemical regularities of interaction of clayey slime particles with sodosulfate mixture. Chemical and mineral composition of used raw materials, surface charge of clay particles, granulometric composition of experimental samples and their electrokinetic potential were determined in the work. The results of the studies showed that the mineral composition of the clay slurry includes the following minerals: saponite, kaolin, serpentine, beidelite, dolomite. The surface charge of clay particles is negative. The chemical composition of the soda-sulfate mixture is represented in the form of oxides: Na2O, SO3, CO2, Al2O3. The dependence of the electrokinetic potential on the mass of the mineral additive introduced into the slurry was revealed. It was noted that the absolute value of ζ-potential remains above 30 mV despite increasing the concentration of the additive, but coagulation of clay particles occurs and the system in question loses sedimentation stability at a concentration of sodium sulfate mixture of 14.4 g/l.
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