首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Layered organization of anisometric cellulose nanocrystals and beidellite clay particles accumulated near the membrane surface during cross-flow ultrafiltration: In situ SAXS and ex situ SEM/WAXD characterization
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Layered organization of anisometric cellulose nanocrystals and beidellite clay particles accumulated near the membrane surface during cross-flow ultrafiltration: In situ SAXS and ex situ SEM/WAXD characterization

机译:分层组织横流超滤期间膜表面附近膜表面附近的分层组织:原位萨克斯和前原位SEM / WAXD表征

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摘要

The structural organization of the concentration polarization layer (CPL) during the cross-flow membrane separation process of anisometric aqueous suspensions of colloidal cellulose nanocrystals and beidellite clay particles has been characterized by in situ time-resolved small-angle X-ray scattering (SAXS). Dedicated cross-flow filtration cells were implemented on the ID02 TRUSAXS beamline at the European Synchrotron Radiation Facility (Grenoble, France). From the analysis of the scattered intensities and structure factors of particles in the CPL, both the concentration profiles Phi(Delta z,Delta t) and anisotropic structural organization have been characterized as a function of filtration time (Delta t) and distance from the membrane surface (Delta z). Remarkably, a coupling between concentration and anisotropy was revealed and modeled using either a simple or stretched exponential trend for rod- or disk-like systems, respectively. Using a simple filtration model, the time evolution of the deposit thickness, membrane resistance and specific resistance of the deposit, deduced from an analysis of the normalized concentration profiles, allowed directly predicting the rapid decay of permeate flux associated to the exponential growth of concentration and anisotropic organization inside the CPL. Ex situ scanning electron microscopy (SEM) observations and wide-angle X-ray diffraction (WAXD) analyses performed on dried deposits parallel and perpendicular to the membrane surface revealed well-defined layered structures from nanometer to micrometer length scales.
机译:在胶体纤维素纳米晶体的横流膜分离过程中浓度偏振层(CPL)的结构组织已经以原位时间分辨的小角X射线散射(SAXS)为特征在于逆流膜分离过程中的横流膜分离过程。 。在欧洲同步辐射设施(Grenoble,法国)的ID02 Trusaxs光束线上实施了专用的交叉流过滤单元。根据CPL中颗粒的散射强度和结构因子的分析,浓度分布(Delta Z,Delta T)和各向异性结构组织的特征在于过滤时间(ΔT)和距离膜的距离表面(Delta z)。值得注意地,揭示了浓度和各向异性之间的偶联,并使用杆状或盘状系统的简单或拉伸指数趋势进行了揭示和建模。使用简单的过滤模型,从归一化浓度分布的分析中推断出沉积厚度,膜抗性和沉积物的特异性耐药性的时间演化,允许直接预测渗透助熔剂的快速衰减与浓度的指数生长相关CPL内的各向异性组织。在平行且垂直于膜表面的干燥沉积物上进行的EX原位扫描电子显微镜(SEM)观察(SEM)观察和广角X射线衍射(WAXD)分析显示,膜表面的干燥沉积物揭示了从纳米到微米长度尺寸的明确定义的层状结构。

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