首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Asymmetrical flow field-flow fractionation coupled with multi-angle light scattering and refractive index detections for characterization of ultra-high molar mass poly(acrylamide) flocculants
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Asymmetrical flow field-flow fractionation coupled with multi-angle light scattering and refractive index detections for characterization of ultra-high molar mass poly(acrylamide) flocculants

机译:非对称流场流分馏与多角度光散射和折射率检测相结合,用于表征超高摩尔质量的聚丙烯酰胺絮凝剂

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The molar mass distributions of ultra-high molar mass polyacrylamide-based flocculants were measured using asymmetrical flow field-flow fractionation (AFFFF) coupled with multi-angle light scattering and refractive index detectors. The mass load onto the separation channel was found to be critical in obtaining a good size separation. The detailed investigation with ultra-high molar mass polyacrylamides found that the injected amount should be <= 1 mu g to ensure separation according to AFFFF mechanism. As a consequence of the limited sample mass load, the signal-to-noise ratio (S/N) of the detector responses was low. To overcome this limitation and thereby to obtain more accurate and precise molar mass and radius information, each sample was injected 10 times and the resulting signals were averaged before calculating the molar mass and radius. In addition, the channel was equipped with a slotted outlet to increase the concentration of sample passing through the detectors. After implementing the above strategies, it was possible to perform separation of polymers having molar mass and size as high as 10(8) g mol(-1) and root-mean-square radius of similar to 250 run, respectively. The resulting weight-average molar mass of the highest MW sample was in excess of 18 x 10(6) g Mol(-1). (c) 2007 Elsevier B.V. All rights reserved.
机译:超高摩尔质量聚丙烯酰胺基絮凝剂的摩尔质量分布是使用不对称流场流分馏(AFFFF)结合多角度光散射和折射率检测器进行测量的。发现在分离通道上的质量负载对于获得良好的尺寸分离至关重要。对超高摩尔质量聚丙烯酰胺的详细研究发现,注入量应≤1μg,以确保根据AFFFF机理进行分离。由于有限的样本质量负载,检测器响应的信噪比(S / N)低。为了克服此限制,从而获得更准确和精确的摩尔质量和半径信息,每个样品被注入10次,在计算摩尔质量和半径之前,将得到的信号平均。此外,该通道配有开槽出口,以增加通过检测器的样品浓度。实施上述策略后,可以分离摩尔质量和大小分别高达10(8)g mol(-1)和均方根半径分别类似于250游程的聚合物。最高分子量样品的重均摩尔质量超过18 x 10(6)g Mol(-1)。 (c)2007 Elsevier B.V.保留所有权利。

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