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首页> 外文期刊>International Journal of Mineral Processing >Laboratory studies for improving green ball strength in bentonite-bonded magnetite concentrate pellets
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Laboratory studies for improving green ball strength in bentonite-bonded magnetite concentrate pellets

机译:改善膨润土粘结磁铁精矿粒料生球强度的实验室研究

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摘要

The performance of bentonite binders in magnetite concentrate balling has been difficult to predict due to a lack of understanding of the binding mechanisms and of the effects of water chemistry. Results are presented that indicate that the most effective binding occurs when the bentonite platelets slide past one another to form sheet-like or fiber-like structures, which is produced by compressive shear mixing It has also been determined that the effects of water chemistry on bentonite performance are much greater than had previously been believed. This is because the water retained in magnetite filter cake has been shown to have a considerably higher concentration of ions (particularly calcium and magnesium) than was present in the bulk solution, and these ions strongly impact the swelling behavior of the bentonite. Results showing the benefits of fiber development and showing the effects of the water chemistry are presented. By taking advantage of bentonite fiber development and dealing with the effects of water chemistry, the strength of bentonite-bonded magnetite concentrate pellets can be increased. These studies have brought to light a number of previously unsuspected effects, which are critically important for further improving the theories of bentonite-binding behavior.
机译:由于对结合机理和水化学作用的了解不足,难以预测膨润土粘结剂在磁铁矿精矿中的性能。结果表明,当膨润土片层相互滑过以形成片状或纤维状结构时,最有效的结合发生,这是通过压缩剪切混合产生的。还确定了水化学对膨润土的影响性能比以前认为的要好得多。这是因为已显示,磁铁矿滤饼中保留的水比大体积溶液中的离子具有更高的离子浓度(尤其是钙和镁),并且这些离子强烈影响膨润土的溶胀性能。结果显示了纤维发展的好处和水化学作用的影响。通过利用膨润土纤维的开发和处理水化学的作用,可以提高与膨润土结合的磁铁矿精矿颗粒的强度。这些研究揭示了许多先前未曾预料到的效果,这对于进一步改进膨润土结合行为的理论至关重要。

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