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Column packing technology in capillary electrochromatography and capillary liquid chromatography.

机译:毛细管电色谱和毛细管液相色谱中的柱填充技术。

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摘要

Capillary electrochromatography (CEC) is a rapidly emerging separation technique employing electroosmosis rather than pressure driven flows to drive the solvent and solutes through a capillary column. Although CEC is developing into a powerful technique in the arsenal of electroseparations, difficulties associated with the packing and fabrication of the chromatographic column have hindered the widespread use of CEC. To better understand and simplify column fabrication in CEC, we have examined two aspects of packed columns: (1) optimization of column packing protocols and frit fabrication, and (2) increasing column performance. First, we investigated the available packing protocols for fabricating packed CEC columns, namely columns packed by slurry pressure, supercritical CO2, electrokinetic, and centripetal forces. Slurry pressure and centripetal forces were utilized previously in our laboratory. A lab-built electrokinetic packing apparatus was constructed and modifications to existing equipment were made to accommodate supercritical CO2. Columns were fabricated with all the techniques demonstrating the feasibility of each, with results comparable to those found in the literature. Columns packed by centripetal forces and supercritical CO2 performed superior to columns packed by the other techniques. In examining the various protocols, it became apparent to us that experience of the practitioner and familiarity with packing equipment were important factors in column fabrication, especially in the fabrication of the retaining frits. Upon further investigation of the packing techniques and optimization of our frit fabrication protocol, we observed similar performance in columns packed by all four techniques. Our optimized method of frit fabrication produced frits ∼1 mm in length in a simple and reproducible fashion. Additionally, we acquired columns packed by other laboratories proficient in electrokinetic and supercritical CO2 packing techniques and demonstrated that columns packed in our laboratory using the same packing techniques performed similarly.; Second, we addressed the ability to increase column performance by incorporating a drying step in the packing protocol. Columns packed by centripetal forces were subjected to a drying step that yielded columns with increased efficiency and retention compared to columns not submitted to the drying step.{09}Columns packed by supercritical CO2, a pseudo dry packing technique, showed increased separation efficiency in comparison to columns maintained under wet conditions. New column formats were also investigated as a means for increasing performance. Capillary columns of square geometry were evaluated for CEC and compared to cylindrical ones. Square and cylindrical columns both performed similarly, with the main advantage of the square columns being the increased detection signal-to-noise ratio.
机译:毛细管电色谱(CEC)是一种快速出现的分离技术,采用电渗法而不是压力驱动的流来驱动溶剂和溶质通过毛细管柱。尽管CEC在电分离库中已发展成为一种强大的技术,但与色谱柱的填充和制造相关的困难阻碍了CEC的广泛使用。为了更好地理解和简化CEC中的色谱柱制造,我们检查了填充色谱柱的两个方面:(1)色谱柱填充方案和熔块制造的优化,以及(2)提高色谱柱性能。首先,我们研究了可用于制备填充CEC色谱柱的填充规程,即填充浆液压力,超临界CO 2 ,电动势和向心力填充的色谱柱。以前在我们的实验室中使用了泥浆压力和向心力。建造了实验室建造的电动包装设备,并对现有设备进行了修改,以适应超临界CO 2 。色谱柱用所有技术制造,证明了每种方法的可行性,其结果与文献中的结果相当。通过向心力和超临界CO 2 填充的色谱柱的性能优于通过其他技术填充的色谱柱。在检查各种协议时,对我们而言,很显然,从业人员的经验和对填料设备的熟悉度是色谱柱制造(尤其是固定玻璃料的制造)中的重要因素。在进一步研究填充技术并优化我们的玻璃料制备方案后,我们观察到了用所有四种技术填充的色谱柱具有相似的性能。我们优化的玻璃料制造方法以简单且可复制的方式生产了长度约为1毫米的玻璃料。此外,我们还获得了其他实验室中精通电动和超临界CO 2 填充技术的色谱柱,并证明了在我们实验室中使用相同填充技术填料的色谱柱具有相似的性能。其次,我们解决了通过在填料方案中加入干燥步骤来提高色谱柱性能的能力。由向心力填充的色谱柱经过干燥步骤,与未经过干燥步骤的色谱柱相比,柱效和保留率更高。{09}由超临界CO 2 填充的色谱柱()与在湿条件下保持的色谱柱相比,拟干填料技术显示了更高的分离效率。还研究了新的列格式,以提高性能。对方形毛细管的毛细管柱进行了CEC评估,并与圆柱毛细管柱进行了比较。方柱和圆柱柱的性能均相似,方柱的主要优点是增加了检测信噪比。

著录项

  • 作者

    Maloney, Todd Dylan.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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