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Impact of Clay Minerals on the Dewatering of Coal Slurry: An Experimental and Molecular-Simulation Study

机译:粘土矿物对煤泥脱水的影响:实验和分子模拟研究

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The cleaning process of coals is challenging due to the existence of clay minerals. The overall objective of this study is to investigate how the dewatering of coal slurry is impacted by the presence of clay minerals, i.e., kaolinite and montmorillonite. Filtration tests were first conducted to investigate the effect of kaolinite and montmorillonite on the dewatering efficiency of coal. Specifically, we measured the filtration velocity, moisture, average specific resistance, and porosity of filter cakes for six slurry samples, in which different amounts of kaolinite and montmorillonite were contained. Filtration tests show that a small amount of kaolinite and montmorillonite leads to a significant reduction in the filtration velocity and porosity, and a big increase in the average specific resistance and the moisture of the filter cake. We observe that most kaolinite existed in the top and middle layers of the filter cake, while most montmorillonite existed in the top layer; on the contrary, little montmorillonite is observed in the middle and bottom layers of the filter cake. Montmorillonite results in a much more deteriorative effect than kaolinite. Considering that the interactions between clay minerals and water may play a key role, we then further investigate the effect of such interactions using molecular simulations. Simulation results show that water molecules could hardly diffuse into kaolinite from the edge, while they could readily penetrate into the montmorillonite layers from the edge surface. This result can be explained by the hydrated cation in montmorillonite. The adsorption density of water on the octahedral surface of kaolinite is higher than that of water on the tetrahedral surface of kaolinite. Furthermore, the adsorption density of water on the double surfaces of kaolinite is higher than that of water on the montmorillonite surface. This research is expected to provide benefits or contributions to the dewatering of clay-rich coal tailings.
机译:由于粘土矿物的存在,煤炭的清洁过程具有挑战性。这项研究的总体目的是研究粘土矿物即高岭石和蒙脱石的存在对煤浆脱水的影响。首先进行过滤试验以研究高岭石和蒙脱石对煤脱水效率的影响。具体来说,我们测量了六个浆液样品的过滤速度,湿度,平均电阻率和滤饼的孔隙率,其中包含不同含量的高岭石和蒙脱土。过滤试验表明,少量的高岭石和蒙脱石会导致过滤速度和孔隙率显着降低,平均比电阻和滤饼的水分会大大增加。我们观察到,大多数高岭石存在于滤饼的上层和中层,而大多数蒙脱石存在于滤饼的顶层。相反,在滤饼的中层和底层几乎看不到蒙脱石。蒙脱石比高岭石产生更严重的破坏作用。考虑到粘土矿物与水之间的相互作用可能起关键作用,因此我们随后使用分子模拟进一步研究了这种相互作用的影响。模拟结果表明,水分子几乎不会从边缘扩散到高岭土中,而很容易从边缘表面渗透到蒙脱土层中。该结果可以由蒙脱石中的水合阳离子解释。水在高岭石的八面体表面上的吸附密度高于水在高岭石的四面体表面上的吸附密度。此外,水在高岭石的两个表面上的吸附密度高于水在蒙脱石表面上的吸附密度。预期该研究将为富含粘土的煤尾矿的脱水提供益处或贡献。

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