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An Experimental Study on Wetting of Coal Dust by Surfactant Solution

机译:表面活性剂溶液润湿煤粉的实验研究

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摘要

Surfactants can improve the wetting performance of the dust-reduction spraying water, thus improving the dust-reduction effect by spray. In this study, the performance of surfactant solution in wetting coal dust was investigated through experiments. In addition, the effects of surfactant type, mass fraction, metamorphic degree of coal, particle size, and additives were investigated. According to the results of surface tension experiments, the surface tension of the solution decreased with the increase of the concentration of surfactant. However, after reaching CMC, the surface tension did not have significantly decrease. SDBS and OP-10 had higher efficiency in decreasing the surface tension than the other two types of surfactants. The addition of sodium sulfate additives can further reduce the surface tension of the surfactant solution by a limited range. The coal dust wetting experiment showed that with the increase in the concentration of the surfactant, the contact angle of the droplets on the coal dust tablet was continuously reduced, and the wettability of the solution was continuously improved. The wettability of the OP-10 solution was optimal. At the same concentration, the minimum contact angle can be obtained in the OP-10 solution. As the contact angle of the coal dust increased, the growth rate in the coal dust reverse osmosis moisture absorption of the surfactant solution relative to the pure water increased. After the addition of sodium sulfate, the reverse osmosis moisture absorption of coal dust increased to varying degrees. In addition, as the concentration of additives increased, the moisture absorption of coal dust increased.
机译:表面活性剂可以改善除尘喷涂水的润湿性能,从而通过喷雾改善除尘效果。在这项研究中,通过实验研究了表面活性剂溶液在润湿煤粉中的性能。此外,研究了表面活性剂型,质量分数,煤的变质度,粒度和添加剂的影响。根据表面张力实验的结果,随着表面活性剂浓度的增加,溶液的表面张力降低。然而,在到达CMC之后,表面张力没有显着降低。 SDBS和OP-10具有比其他两种表面活性剂降低表面张力的效率更高。添加硫酸钠添加剂可以进一步通过有限的范围降低表面活性剂溶液的表面张力。煤尘润湿实验表明,随着表面活性剂浓度的增加,液滴对煤尘片上的接触角持续降低,溶液的润湿性连续提高。 OP-10解决方案的润湿性是最佳的。以相同的浓度,可以在OP-10溶液中获得最小接触角。随着煤粉的接触角增加,煤粉中的生长速率相对于纯净水的表面活性剂溶液的吸收水分吸收。加入硫酸钠后,反渗透水分吸收粉尘增加到不同程度。此外,随着添加剂的浓度增加,煤粉的吸湿增加。

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