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Determination of phenols, inorganic anions, and carboxylic acids in Kraft black liquors by capillary electrophoresis

机译:毛细管电泳法测定牛皮纸黑液中的酚,无机阴离子和羧酸

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摘要

Two methods are presented for the quantitative capillary electrophoretic (CE) determination of phenolic lignin degradation compounds as well as of inorganic anions and organic acids in Kraft black liquors, Important phenolic lignin degradation compounds can be rapidly separated by co-electroosmotic CE after acidification of the liquors and subsequent extraction of the compounds with chloroform, A capillary electrophoretic separation of phenolic compounds is performed by using a phosphate/borate electrolyte system and UV detection at 214 nm, In addition, a HPLC method using a gradient with mater, methanol, and acetic acid is also developed, Inorganic ions which are of importance to the pulping process can be determined by simply diluting the black liquors after sampling and subsequent analysis with a chromate electrolyte system and indirect UV detection at 185 nm, In addition, the concentration of low molecular aliphatic carboxylic acids can be determined simultaneously within the same run, By method optimization it is possible to separate the anions within one minute and, at the same time, to increase the resolution of the solutes. The electrolyte systems for the CE separations were optimized by varying the pH value and by adding organic solvents, Short separation times are obtained by adding a polycationic EOF modifier (hexadimethrine bromide) to the electrolyte which reverses the electroosmotic flow, A migration of the anionic analytes in the same direction as the electroosmotic now is thus established. [References: 21]
机译:提出了两种定量毛细管电泳(CE)方法测定牛皮纸黑液中酚类木质素降解化合物以及无机阴离子和有机酸的方法。重要的酚类木质素降解化合物可以通过共电渗析CE酸化后快速分离。液体,然后用氯仿萃取化合物。通过磷酸盐/硼酸盐电解质系统和214 nm的紫外检测,对毛细管化合物进行毛细管电泳分离。此外,采用色谱法,使用母液,甲醇和乙酸进行梯度洗脱还开发了酸,对制浆过程很重要的无机离子可以通过在采样后稀释黑液并随后使用铬酸盐电解质系统进行分析并在185 nm处进行间接UV检测来简单地确定,从而可以确定无机离子。此外,低分子浓度脂肪族羧酸可以在同一范围内同时测定运行中,通过方法优化,可以在一分钟内分离阴离子,并同时提高溶质的分离度。通过改变pH值和添加有机溶剂,可以优化用于CE分离的电解质体系。在电解质中添加聚阳离子EOF改性剂(六甲基溴化己二酸)可逆电渗流,从而缩短了分离时间。从而建立了与电渗现在相同的方向。 [参考:21]

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