Yepsen Rodrigo, Gutiérrez Leopoldo, Toledo Pedro G
Department of Metallurgical Engineering, Universidad de Concepción, Concepción 4030000, Chile.
Department of Chemical Engineering and Laboratory of Surface Analysis (ASIF), Universidad de Concepción, Concepción 4030000, Chile.
Polymers (Basel). 2022 May 20;14(10):2085. doi: 10.3390/polym14102085.
Dispersants under certain conditions favor the flotation of molybdenite in seawater; however, it is not clear if the entrainment of residues to the thickening stage can compromise the quality of the clarified water. In this work, the impact of small concentrations of sodium hexametaphosphate (SHMP) on the flocculation and sedimentation of synthetic tailings containing kaolinite, muscovite, and quartz in seawater is evaluated. The flocculant polymer is a high-molecular-weight polyacrylamide, and the pH is alkaline. The results are auspicious for mineral processing. On the one hand, the impact of SHMP is not entirely negative and can be lessened by limiting entrainment, which is good for copper and molybdenum ore processing. On the other hand, if the small increase in turbidity generated by the SHMP is tolerated, it is possible to expect improved settling speeds. Without SHMP, large but light agglomerates are formed. With SHMP, smaller but denser aggregates are formed, settling faster, and minute aggregates increase turbidity. The underlying mechanism derives from the competition between SHMP and polymer chains for the cations in solution; the result is a greater repulsion between the chains, which leads to greater repulsion and thus dispersion of smaller flocculant coils. The study shows that SHMP in concentrations of 1 to 3 kg/t is perfectly acceptable. The results represent an advance in the understanding of SHMP interactions with polymers and minerals in water clarification, which should be of interest to the industry whose sustainability in some regions depends on closing the water cycle.
在某些条件下,分散剂有利于辉钼矿在海水中的浮选;然而,不清楚残余物夹带至浓缩阶段是否会影响澄清水的质量。在这项工作中,评估了低浓度六偏磷酸钠(SHMP)对海水中含有高岭石、白云母和石英的合成尾矿絮凝和沉降的影响。絮凝聚合物是一种高分子量聚丙烯酰胺,且pH呈碱性。结果对矿物加工是有利的。一方面,SHMP的影响并非完全负面,通过限制夹带可以减轻这种影响,这对铜钼矿加工有利。另一方面,如果能容忍SHMP产生的浊度小幅增加,那么有望提高沉降速度。没有SHMP时,会形成大而轻的团聚体。有SHMP时,会形成更小但更致密的聚集体,沉降更快,且微小聚集体会增加浊度。其潜在机制源于SHMP与聚合物链对溶液中阳离子的竞争;结果是链之间的排斥力更大,这导致更大的排斥从而使较小的絮凝剂线圈分散。研究表明,1至3 kg/t浓度的SHMP是完全可以接受的。这些结果代表了在理解SHMP在水澄清过程中与聚合物和矿物相互作用方面的进展,对于一些地区其可持续性取决于水循环闭合的行业来说应该是有意义的。