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Characterization of water repellency for hydrophobized grains with different geometries and sizes

机译:不同几何形状和尺寸的疏水化谷物的疏水性表征

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Capillary barrier cover systems (CBCSs) are useful and low-cost earthen cover systems for preventing water infiltration and controlling seepage at solid waste landfills. A possible technique to enhance the impermeable properties of CBCSs is to make water repellent grains by mixing the earthen cover material with a hydrophobic agent (HA). In this study, six different grains with different geometries and sizes were used to prepare dry hydrophobized grains by mixing with different contents of oleic acid as a HA. Wet hydrophobized grains were prepared by adjusting the water content (theta(g); kg kg(-1)) of dry hydrophobized grains. To characterize the water repellency (WR) of dry and wet hydrophobized grains, initial solidwater contact angles (alpha(i)) were measured using the sessile drop method (SDM). Based on SDM results from the aiHA content and alpha(i)-theta(g) curves, useful WR indices were introduced as "Area_(dry)'' and "Area_(wet)'' (areas under the alpha(i)-HA content and alpha(i)-theta(g) curves, respectively), "HA_(zica)'' and "theta(g)_(zica)'' (maximum HA content and theta(g) at which WR disappears, respectively), and "alpha(i,peak)'' and "HA_alpha(i,peak)'' (peak alpha(i) in the alpha(i)-HA content curve and corresponding HA content to alpha(i),(peak), respectively). Pearson correlation analysis was performed to identify correlations between proposed WR indices and basic grain properties. Results showed that WR indices correlated well to d(50) and coefficient of uniformity (C-u) and regression equations for WR indices were obtained as functions of d(50) and C-u (r(2) > 0.7).
机译:毛细管屏障覆盖系统(CBCS)是有用的低成本土方覆盖系统,用于防止水渗透并控制固体垃圾填埋场的渗漏。增强CBCS防渗性能的一种可能技术是通过将土覆盖材料与疏水剂(HA)混合来制成憎水颗粒。在这项研究中,通过将六种不同几何形状和尺寸的不同谷物通过与不同含量的油酸混合作为HA来制备干燥的疏水化谷物。通过调节干燥的疏水性谷物的水分含量(theta(g); kg kg(-1))来制备湿的疏水性谷物。为了表征干和湿疏水颗粒的憎水性(WR),使用无滴法(SDM)测量了初始固体水接触角(α(i))。根据来自aiHA含量和alpha(i)-theta(g)曲线的SDM结果,有用的WR指数被引入为“ Area_(干)”和“ Area_(湿)”(在alpha(i)- HA含量和alpha(i)-theta(g)曲线),“ HA_(zica)”和“ theta(g)_(zica)”(WR消失时的最大HA含量和theta(g), )和“ alpha(i,peak)”和“ HA_alpha(i,peak)”(alpha(i)-HA含量曲线中的峰值alpha(i)以及与alpha(i)对应的HA含量,(峰值)。进行了Pearson相关分析,以识别建议的WR指数与基本晶粒性能之间的相关性。结果表明,WR指数与d(50)很好地相关,并且均匀系数(C-u)和WR指数的回归方程是d(50)和C-u的函数(r(2)> 0.7)。

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