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Classification of silica fine particles using a novel electric hydrocyclone

机译:使用新型电动水力旋流器对二氧化硅细颗粒进行分类

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A novel electric hydrocyclone is developed and tested. Aqueous suspensions of silica with a median diameter of 754 nm and 0.2% volumetric concentration are tested using a 20-mm-diameter hydrocyclone. The ratios of tested underflow rate to throughput are: 0, 0.1,0.2 and 0.3. The tested volumetric flow rates are 0.083 X 10~(-3), 0.117 X 10~(-3) and 0.167 X 10~(-3) m~3/s (5, 7 and 10 l/min). The conical part of the electric hydrocyclone is connected to a cylindrical dust box having 42 mm diameter. This dust box has a central metal rod cone and a cylindrical metal wall between which the desired 50-volt DC electric potential or no potential is applied. The investigated lengths of the dust box are 53 and 106 mm. The three different conditions investigated are: (a) no applied electric potential, (b) positive potential applied at the central rod side and negative potential at the side wall, and (c) positive potential applied at the side wall and negative potential at the central rod side. In both the absence and presence of the underflow, the hydrocyclone with a long dust box is found to give better classification efficiency than that with a short dust box. Interestingly, the effect of electric potential is reversed with respect to the presence and absence of the underflow. The presence of the underflow unexpectedly increase the 50% particle cut size when electric potential is applied. However, the effect of electric potential is reversed when there is no underflow. The electric potential can reduce the 50% particle cut size by up to 10% compared to the absence of electricity. It is found that condition (c) exhibits a stronger effect than condition (b). As expected, the higher the flow ratio, the smaller the particle cut size becomes. Based on the experimental results, an empirical correlation for the 50% particle cut size has been obtained.
机译:开发并测试了新型的电动水力旋流器。使用直径为20毫米的水力旋流器测试中值直径为754 nm的二氧化硅的水悬浮液和0.2%的体积浓度。测试的下溢率与吞吐量的比率为:0、0.1、0.2和0.3。测试的体积流量为0.083 X 10〜(-3),0.117 X 10〜(-3)和0.167 X 10〜(-3)m〜3 / s(5、7和10 l / min)。电动水力旋流器的锥形部分连接到直径为42毫米的圆柱形集尘箱。该集尘箱有一个中心金属杆锥和一个圆柱形金属壁,在它们之间施加了所需的50伏直流电或没有电。研究的集尘箱长度为53和106 mm。所研究的三个不同条件是:(a)没有施加电势,(b)在中心杆侧施加了正电势,在侧壁处产生了负电势,(c)在侧壁上施加了正电势,并且在侧壁上施加了负电势。中央杆侧。在不存在底流的情况下,发现带有长集尘箱的水力旋流器比带有短集尘箱的水力旋流器具有更好的分级效率。有趣的是,相对于是否存在下溢,电位的影响是相反的。当施加电势时,底流的存在出乎意料地增加了50%的粒径。但是,当没有下溢时,电势的作用会反转。与不通电相比,电势可以将50%的切粒尺寸减小多达10%。发现条件(c)显示出比条件(b)更强的作用。如所预期的,流量比越高,颗粒切割尺寸变得越小。根据实验结果,获得了50%切粒尺寸的经验相关性。

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