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A Physicochemical Study of the Process of Modification of Carbon Sorbents with Lactic Acid

机译:用乳酸改性碳吸附剂的物理化学研究

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摘要

With the aim of creating new adsorbing materials with biospecific properties for applications in medicine (obstetrics and gynecology), a technique for the chemical modification of a molded carbon sorbent with lactic acid by polycondensation of the latter on the surface of the former without catalysts is proposed. The completeness of the process of polycondensation of lactic acid on a molded carbon sorbent was controlled by physicochemical methods (low-temperature nitrogen absorption and thermal analysis). The amount of the deposited modifier (lactic acid oligomer) is a determining factor of the completeness of the modification process, which is determined from the results of thermogravimetric analysis of samples. The optimal conditions of the impregnation and thermal processing of a molded carbon sorbent, under which the amount of the deposited modifier reaches the maximum value and equals 7.2-10.5 wt %, have been chosen on the basis of the results of studies. The elemental composition and the content of surface functional groups of the two most promising samples of modified molded carbon sorbents are analyzed. These modified samples are of interest for further analyses and a study of their adsorption properties.
机译:旨在创造具有用于医学应用的生物特性的新吸附材料(产科和妇科),提出了一种通过在前者表面上通过缩聚的乳酸化学改性模塑碳吸附剂的技术。通过物理化学方法(低温氮吸收和热分析,控制乳酸缩聚过程的完整性。(低温氮吸收和热分析)控制。沉积的改性剂(乳酸低聚物)的量是修饰过程的完整性的确定因子,其从样品的热重分析结果中确定。模塑碳吸附剂的浸渍和热加工的最佳条件,其中沉积的改性剂的量达到最大值,并在研究结果的基础上选择了7.2-10.5wt%。分析了修饰模塑碳吸附剂最有前景样品的构成组成和表面官能团的含量。这些改性样品对进一步分析和研究其吸附性能感兴趣。

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