首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effect of carboxymethyl starch on fine-grained hematite recovery by high-intensity magnetic separation: Experimental investigation and theoretical analysis
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Effect of carboxymethyl starch on fine-grained hematite recovery by high-intensity magnetic separation: Experimental investigation and theoretical analysis

机译:羧甲基淀粉对高强度磁性分离细粒赤铁矿回收的影响:实验研究与理论分析

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With the rapid depletion of relatively simple iron ores that can be readily beneficiated, agglomeration magnetic separation has been increasingly applied for recovery of fine iron minerals. In this study, the effects of stirring speed, pH, and fiocculant dosage on the recovery of fine hematite are investigated by floc-magnetic separation experiments in the presence of carboxymethyl starch (CMS). The experimental results show that the recovery of fine hematite is improved in the presence of CMS in the high-intensity magnetic separation (HIMS) with sufficient kinetic energy input and appropriate pulp pH value. Compared to the conventional RIMS, the concentrate recovery has increased by 7.03 percentage point in the presence of CMS under optimal conditions. Furthermore, the mechanism of the interaction between CMS and fine hematite is investigated through scanning electron microscopy, energy dispersive spectros-copy, and zeta potential and infrared spectrum measurements. The results of SEM-EDS and optical microscope tests indicate that CMS can adsorb on the surface of hematite, but not on the quartz surface. The results of the zeta potential and FUR measurement illustrate that electrostatic adsorption and hydrogen bond adsorption exist between hematite and CMS, but barely found between quartz and CMS. Therefore, the selective agglomeration of fine hematite particles is formed by the polymer bridging effect of CMS in the pulp. Subsequently, the collecting efficiency of fine hematite particles is improved in the HIMS. The model of selective flocculation of fine hematite is proposed and attributed to two processes: the sensitisation process and the collision process. While the former process is the selective adsorption of CMS on the surface of fine hematite particles through hydrogen bonds, the later process is the polymer-bridging flocculation performance with sufficient kinetic energy input at an appropriate pulp pH value. (C) 2018 Elsevier B.V. All rights reserved.
机译:随着可以容易受益的相对简单的铁矿石的快速消耗,越来越多地施加聚集磁分离以回收细铁矿物质。在该研究中,通过在羧甲基淀粉(CMS)存在下,研究了搅拌速度,pH和散热剂对细赤铁矿回收的回收的影响。实验结果表明,具有足够的动能输入和适当的纸浆pH值的高强度磁分离(HIMS)的CMS存在下,改善了细赤铁矿的恢复。与传统轮辋相比,在最佳条件下,浓缩率恢复在CMS存在下增加了7.03个百分点。此外,通过扫描电子显微镜,能量分散光谱拷贝和Zeta电位和红外光谱测量来研究CMS与细赤铁矿之间的相互作用机制。 SEM-EDS和光学显微镜测试的结果表明CMS可以吸附在赤铁矿表面上,但不在石英表面上吸附。 Zeta电位和毛皮测量的结果表明,在赤铁矿和CMS之间存在静电吸附和氢键吸附,但在石英和CMS之间几乎没有发现。因此,通过CMS在纸浆中的聚合物桥接作用形成细细赤铁矿颗粒的选择性附聚。随后,他的细细赤铁矿颗粒的收集效率得到改善。提出了精细赤铁矿的选择性絮凝模型,​​并归因于两个过程:敏化过程和碰撞过程。虽然前一种方法是通过氢键选择细细赤铁矿颗粒表面的CMS的选择性吸附,但后来的方法是聚合物桥接絮凝性能,在适当的纸浆pH值下具有足够的动能输入。 (c)2018 Elsevier B.v.保留所有权利。

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