Muthu Satish, Childress Amy, Brant Jonathan
University of Wyoming, Department of Civil and Architectural Engineering, 1000 E. University Avenue, Laramie, WY 82071, United States.
University of Southern California, Department of Civil and Environmental Engineering, 3260 South Vermont Avenue, Los Angeles, CA 90089-2531, United States.
J Colloid Interface Sci. 2014 Aug 15;428:191-8. doi: 10.1016/j.jcis.2014.04.052. Epub 2014 May 4.
Membrane fouling assessed from a fundamental standpoint within the context of the Derjaguin-Landau-Verwey-Overbeek (DLVO) model. The DLVO model requires that the properties of the membrane and foulant(s) be quantified. Membrane surface charge (zeta potential) and free energy values are characterized using streaming potential and contact angle measurements, respectively. Comparing theoretical assessments for membrane-colloid interactions between research groups requires that the variability of the measured inputs be established. The impact that such variability in input values on the outcome from interfacial models must be quantified to determine an acceptable variance in inputs. An interlaboratory study was conducted to quantify the variability in streaming potential and contact angle measurements when using standard protocols. The propagation of uncertainty from these errors was evaluated in terms of their impact on the quantitative and qualitative conclusions on extended DLVO (XDLVO) calculated interaction terms. The error introduced into XDLVO calculated values was of the same magnitude as the calculated free energy values at contact and at any given separation distance. For two independent laboratories to draw similar quantitative conclusions regarding membrane-foulant interfacial interactions the standard error in contact angle values must be⩽2.5°, while that for the zeta potential values must be⩽7 mV.
从德亚金-朗道-韦弗-奥弗比克(DLVO)模型的角度对膜污染进行了基础评估。DLVO模型要求对膜和污垢的性质进行量化。膜表面电荷(zeta电位)和自由能值分别通过流动电位和接触角测量来表征。比较不同研究小组对膜-胶体相互作用的理论评估需要确定测量输入值的变异性。必须量化输入值的这种变异性对界面模型结果的影响,以确定输入的可接受方差。进行了一项实验室间研究,以量化使用标准协议时流动电位和接触角测量的变异性。根据这些误差对扩展DLVO(XDLVO)计算的相互作用项的定量和定性结论的影响,评估了这些误差的不确定度传播。引入XDLVO计算值的误差与接触时以及任何给定分离距离处计算的自由能值大小相同。对于两个独立的实验室来说,要就膜-污垢界面相互作用得出相似的定量结论,接触角值的标准误差必须≤2.5°,而zeta电位值的标准误差必须≤7 mV。