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Modeling pore size distribution in cellulose rolled stationary phases

机译:模拟纤维素轧制固定相中的孔径分布

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Rolled stationary phases are fabrics (i.e.,nonparticulate phases)that rapidly separate proteins from salts on the basis of size exclusion.Pore size and pore size distributions in the stationary phase determine how different size molecules distribute between the stationary and mobile phases in liquid chromatography columns.The potential for size exclusion chromatography by fabrics is not initially obvious because their interlaced structures are atypical for size exclusion supports.A simple logistic model fits the pore size distribution of a rolled stationary phase when pore sizes were measured usign PEG,Dextran,D_2O,glucose,and NaCl probes.When the fabric is treated with cellulase enzymes,the water-accessible pores.When the fabric is treated with cellulase enzymes,the water-accessible pores uniformly decrease and peak retention is lower.The logistic function model captures this result and enables comparison of pore size distribution curves between enzyme-treated and untreated fabrics in rolled stationary phase columns.
机译:滚动固定相是根据尺寸排阻将蛋白质与盐快速分离的织物(即非颗粒相)。固定相中的孔尺寸和孔径分布决定了液相色谱柱中固定相和流动相之间不同尺寸分子的分布方式最初通过织物进行尺寸排阻色谱分析的潜力并不明显,因为它们的交错结构对于尺寸排阻支持物而言是非典型的。简单的逻辑模型适合于使用PEG,Dextran,D_2O,葡萄糖和NaCl探针。当用纤维素酶处理织物时,可进入水的孔隙。当用纤维素酶处理织物时,可进入水的孔均匀减少且峰保留率较低。逻辑函数模型可捕获此结果并能够比较酶处理和未处理的织物之间的孔径分布曲线滚动固定相柱。

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