FLOCCULATION OF FINE APATITE AIMED AT REDUCING ENVIRONMENTAL WATER USE PROBLEMS IN MINERAL PROCESSING PLANTS

A. Artemev
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Abstract

"Water treatment technologies involving pre-treated industrial effluents without transporting them to the tailing dump are of interest primarily from an environmental point of view, as they reduce the environmental burden. The paper studies the possibility of purification of process waters from apatite concentrate production from suspended particles and water-soluble impurities using polyacrylamide flocculants. By studying the processes of adsorption of H+ and OH- ions from aqueous solutions, the acid-base properties of the surface of the solid phase of the most polluted technological product - the drain of the apatite concentrate thickener - the mineral composition of which is 90% apatite have been studied. The influence of the reagents present in the processing technology on the quantitative ratio of acid-base centres on the apatite surface has been evaluated. It has been shown that the interaction of these reagents with the mineral creates prerequisites for a greater efficiency of the anionic flocculant. The electro-surface properties of apatite treated with various reagents were studied using the laser Doppler electrophoresis method. The mechanism of fixation of ions present in the dispersion medium on the surface of apatite was studied by infrared spectroscopy. In order to determine the conditions under which various flocculants are in the most ionized state, studies were conducted on the change in the viscosity of the polyelectrolyte solution at different pH values. The position of the isoionic point for samples of cationic and anionic flocculants in the presence of reagents used in the apatite flotation and dehydration of apatite concentrate was studied. A research has been carried out on ""model"" and real suspensions in circulating water for a number of cationic, anionic and nonionic flocculants. The kinetic and concentration dependences of the flocculating capacity of the studied reagents were determined, which confirmed the high efficiency of the anionic type reagents"
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微细磷灰石絮凝处理减少选矿厂环境用水问题
“水处理技术涉及预先处理的工业废水,而不将其输送到尾矿堆,这主要是从环境的角度来看,因为它们减少了环境负担,因此引起了人们的兴趣。”本文研究了用聚丙烯酰胺絮凝剂净化磷灰石精矿生产过程中悬浮颗粒和水溶性杂质的可能性。通过对水溶液中H+和OH-离子的吸附过程的研究,对含磷灰石90%的磷灰石精矿浓缩机排液这一污染最严重的工艺产品固相表面的酸碱性质进行了研究。评价了处理工艺中存在的试剂对磷灰石表面酸碱中心定量比的影响。研究表明,这些试剂与矿物的相互作用为提高阴离子絮凝剂的效率创造了先决条件。采用激光多普勒电泳法研究了不同试剂处理后磷灰石的电表面性质。采用红外光谱法研究了分散介质中离子在磷灰石表面的固定机理。为了确定各种絮凝剂处于最电离状态的条件,研究了不同pH值下聚电解质溶液粘度的变化。研究了阳离子絮凝剂和阴离子絮凝剂样品在磷灰石浮选和磷灰石精矿脱水所用药剂存在时的等离子点位置。对多种阳离子型、阴离子型和非离子型絮凝剂在循环水中的“模型”悬浮液和真实悬浮液进行了研究。测定了所研究试剂絮凝能力的动力学和浓度依赖性,证实了阴离子型试剂的高效絮凝效果。
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