Preparation of sorbents for solid-phase extraction of benzoic acid from aqueous solutions

Maxim N. Kachalkin, Alexander V. Voronin
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Abstract

Aim to obtain sorbents based on ethylcellulose for solid-phase extraction of benzoic acid from aqueous solutions. Material and methods. To create the sorbents for solid-phase extraction, we used the following reagents: ethyl cellulose, copper sulfate pentahydrate, sodium hydroxide, benzoic acid, purified water, ethyl alcohol 95%. The samples of ethyl cellulose-based sorbents were studied by Fourier transform IR spectrometry on an Agilent Cary 630 FTIR spectrometer. The Agilent Microlab PC Expert software was used for registration and primary processing of IR spectra, and for statistical analysis. The capacity of sorbents for solid-phase extraction was evaluated in a dynamic mode. The microstructure of the samples was studied by field emission scanning electron microscopy (FE-SEM) on a Hitachi SU8000 electron microscope. The specific surface area of the synthesized sorbents was measured by low-temperature nitrogen porometry using the Brunauer Emmett Teller approximation, on the Autosorb 1 device, using the Quantachrome AS1Win software, according to a well-known technique. Results. А method was proposed for obtaining a sorbent for solid-phase extraction of benzoic acid from aqueous solutions. The IR-spectrometry did not reveal significant differences between ethylcellulose samples and the obtained sorbent samples. The optimal concentrations of ethylcellulose and benzoic acid in the reaction mixture were determined to create a sorbent with a maximum capacity of 19.2 g/g. The differences in the morphological structure of the surface of ethylcellulose matrix and obtained sorbents were described. The specific surface area of ethylcellulose sorbent with a maximum capacity for benzoic acid was 14.10 cm2/g.
固相萃取水溶液中苯甲酸吸附剂的制备
目的研究乙基纤维素固相萃取苯甲酸的吸附剂。材料和方法。为了制备固相萃取的吸附剂,我们使用了以下试剂:乙基纤维素、五水硫酸铜、氢氧化钠、苯甲酸、纯净水、95%乙醇。采用安捷伦Cary 630红外光谱仪对乙基纤维素吸附剂样品进行了傅里叶变换红外光谱分析。使用Agilent Microlab PC Expert软件对红外光谱进行配准和初步处理,并进行统计分析。采用动态模型对吸附剂固相萃取能力进行了评价。在日立SU8000电子显微镜上采用场发射扫描电镜(FE-SEM)研究了样品的微观结构。合成吸附剂的比表面积采用低温氮孔隙法测量,采用Brunauer Emmett Teller近似法,在Autosorb 1设备上,使用Quantachrome AS1Win软件,根据一种众所周知的技术。结果。提出了А方法来获得一种固相萃取水溶液中苯甲酸的吸附剂。红外光谱分析没有发现乙基纤维素样品和获得的吸附剂样品之间有显著差异。确定了反应混合物中乙基纤维素和苯甲酸的最佳浓度,得到吸附剂的最大容量为19.2 g/g。描述了乙基纤维素基质和所得吸附剂表面形态结构的差异。乙烯基纤维素吸附剂的比表面积为14.10 cm2/g,对苯甲酸的吸附能力最大。
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