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Slip flow through colloidal crystals of varying particle diameter

机译:滑流通过粒径不同的胶体晶体

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Slip flow of water through silica colloidal crystals was investigated experimentally for eight different particle diameters, which have hydraulic channel radii ranging from 15 to 800 nm. The particle surfaces were silylated to be low in energy, with a water contact angle of 83, as determined for a silylated flat surface. Flow rates through centimeter lengths of colloidal crystal were measured using a commercial liquid chromatograph for accurate comparisons of water and toluene flow rates using pressure gradients as high as 1010 Pa/m. Toluene exhibited no-slip Hagen-Poiseuille flow for all hydraulic channel radii. For water, the slip flow enhancement as a function of hydraulic channel radius was described well by the expected slip flow correction for Hagen-Poiseuille flow, and the data revealed a constant slip length of 63 ± 3 nm. A flow enhancement of 20 ± 2 was observed for the smallest hydraulic channel radius of 15 nm. The amount of slip flow was found to be independent of shear rate over a range of fluid velocities from 0.7 to 5.8 mm/s. The results support the applicability of the slip flow correction for channel radii as small as 15 nm. The work demonstrates that packed beds of submicrometer particles enable slip flow to be employed for high-volume flow rates.
机译:实验研究了水通过二氧化硅胶体晶体的滑流,研究了八种不同的粒径,这些粒径的液压通道半径范围为15至800 nm。如对于甲硅烷基化的平坦表面所确定的那样,将颗粒表面甲硅烷基化以具有低的能量,水接触角为83。使用市售液相色谱仪测量通过胶体晶体厘米长的流速,以高达1010 Pa / m的压力梯度精确比较水和甲苯流速。甲苯在所有液压通道半径上均表现出无滑移的哈根-泊厄流动。对于水,通过对哈根-泊厄河流的预期滑流校正,很好地描述了滑流增强与水力通道半径的关系,数据表明滑移长度为63±3 nm。对于15 nm的最小液压通道半径,观察到20±2的流量增强。发现滑流的量在0.7至5.8 mm / s的流体速度范围内与剪切速率无关。结果支持滑流校正对小至15 nm的通道半径的适用性。这项工作表明,亚微米颗粒的填充床可以使滑流用于大流量。

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