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Quantifying the effect of polyacrylamide dosage, Na~+ and Ca~(2+) concentrations, and clay particle size on the flocculation of mature fine tailings with robust statistical methods

机译:用稳健的统计方法量化聚丙烯酰胺的用量,Na〜+和Ca〜(2+)的浓度以及粘土粒径对成熟细尾矿絮凝的影响

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Polymer-driven flocculation and dewatering of mature fine tailings (MFT) is critical to improve their consolidation. MFT flocculation and dewatering depends on the size of the suspended clay particles, and on the composition and properties of the liquid in which they are dispersed. The effect of water chemistry on the polymer-particle dynamics is nontrivial, particularly for non-spherical, polydisperse particles such as natural clays. In this study, we used a response surface methodology to systematically assess the impact of Na+and Ca2+concentration and anionic polyacrylamide dosage in the flocculation and dewatering of MFT. We observed a beneficial synergistic effect between Ca2+concentration and polyacrylamide dosage, although excess of Ca2+may reduce polyacrylamide activity. In addition, we investigated the impact of clay particle size on MFT flocculation. Polyacrylamide did not flocculate MFT fractions where the fine clay particles (<2 μm) represented most of the population. Good settling, however, was observed when fine silt particles (from 2 to 44 μm) were present, indicating that the presence and accumulation of larger/heavier particles on the polymer-induced flocs is crucial to form aggregates that readily settle under gravity. The insights gained from this study can contribute to more efficient use of flocculants, more effective use of cations, and better understanding of the impact of particles size in MFT flocculation.
机译:聚合物驱动的絮凝剂和成熟细尾矿(MFT)的脱水对于改善其固结至关重要。 MFT的絮凝和脱水取决于悬浮的粘土颗粒的大小,以及分散于其中的液体的组成和性质。水化学作用对聚合物颗粒动力学的影响是微不足道的,特别是对于非球形的多分散颗粒(例如天然粘土)而言。在这项研究中,我们使用响应表面方法系统地评估了Na +和Ca2 +浓度以及阴离子聚丙烯酰胺用量对MFT絮凝和脱水的影响。我们观察到了Ca2 +浓度和聚丙烯酰胺用量之间的有益协同作用,尽管过量的Ca2 +可能会降低聚丙烯酰胺的活性。此外,我们研究了粘土粒度对MFT絮凝的影响。聚丙烯酰胺不会絮凝MFT馏分,其中细粘土颗粒(<2μm)占了大多数。但是,当存在细粉尘颗粒(2-44μm)时,观察到良好的沉降,这表明在聚合物诱导的絮凝物中较大/较重颗粒的存在和积累对于形成易于在重力作用下沉降的聚集体至关重要。从这项研究中获得的见解可以有助于更有效地使用絮凝剂,更有效地使用阳离子,以及更好地理解颗粒尺寸对MFT絮凝的影响。

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