气相色谱法监测水介质中酚类物质含量的特点

A. Taneeva, A. Dmitrieva, V. Novikov
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引用次数: 0

摘要

的相关性。酚类物质是水生环境的主要污染物之一,对人体有害。因此,他们今天的决心是一个紧迫的问题。本工作的目的是采用不同的吸附材料,用气相色谱法测定水介质中酚类物质的含量。要做到这一点,有必要考虑使用各种吸附材料监测水介质中酚含量的气相色谱方法的一些特点。通过详细的文献综述,表明酚类及其衍生物是剧毒物质,MPC标准值较低,对人体有负面影响,需要在水生环境中进行控制。方法。为了测定水介质中的酚类物质,实验部分工作是在装有火焰电离检测器的结晶- 4000m气液色谱仪上进行的,喷嘴柱中填充了各种吸附剂,其中使用了聚乙烯glvcol1500, SE-30和砷化聚乙二醇PEG(as)。结果。酚类化合物及其衍生物的气相色谱分离采用了多种物理化学性质的吸附材料。已经确定,最理想的吸附剂是聚氧乙烯二砷酸盐,它可以分离几乎所有的酚类及其衍生物,其分子中含有两个砷基,能够与所分析的山梨酸盐分子间相互作用。结论。采用crystux - 4000m气液色谱仪对水溶液中苯酚含量进行了实验研究。测定了酚类物质在不同物理化学性质的吸附材料上的滞留特性。结果表明,以聚氧乙烯二砷酸酯为基础制备的吸附剂能最彻底地分离苯酚衍生物的各个组分,这是由于在其分子结构中存在能够与酚羟基分子间相互作用的非白色氧原子电子对。建立了苯酚相对体积的对数与偶极矩和折射率的线性关系。在苯环的邻位上具有功能取代基的酚则偏离了这种依赖关系。这可以用电子效应来解释吗?这导致了吸附剂-山梨酸酯体系在分子间相互作用时的位阻困难。根据所进行的理论研究,可以完全分离酚类的各个成分,特别是沸点接近的酚类成分。对所得数据进行了伏尔加河淤泥渠中酚类物质含量监测。气相色谱分析技术可用于水生生态系统的生态监测系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of the gas chromatographic method for monitoring the content of phenols in an aqueous medium
   THE RELEVANCE. Phenols are one of the main pollutants of the aquatic environment and have a harmful effect on the human body. Therefore, their determination today is an urgent problem.   The purpose of this work is to determine the content of phenols in an aqueous medium by gas chromatographic method using various sorption materials.   To do this, it is necessary to consider some features of the gas chromatographic method for monitoring the content of phenols in an aqueous medium using various sorption materials. Based on a detailed literature review to show that phenols and their derivatives are highly toxic substances, have low values of MPC standards, ha\’e a negative impact on the human body, which necessitates their control in the aquatic environment. METHODS. To determine phenols in an aqueous medium, the experimental part of the work was carried out on a Crystallux-4000M gas-liquid chromatograph with a flame ionization detector and nozzle columns filled with various sorbents, as which polyethylene glvcol-1500, SE-30 and arsenated polyethylene glycol PEG(As) were used.   RESULTS. For gas chromatographic separation of phenols and their derivatives, sorption materials of various physicochemical nature were used. It has been established that the most optimal sorbent, which separates almost all phenols and their derivatives, is polyoxyethylene bis arsenate, the molecule of which contains two arsenvl groups capable of intermolecular interactions with the analyzed sorbates.   CONCLUSION. An experimental study of the phenol content in an aqueous medium using a gas-liquid chromatograph Crystallux-4000M was carried out. The characteristics of the retention of phenols on sorption materials  of different physicochemical nature are determined. It is shown that the most complete separation of the individual components of phenol derivatives is carried out on a sorbent prepared on the basis of polyoxyethylene bis arsenate, which is explained by the presence in the structure of its molecule of non-white electron pairs of oxygen atoms capable of intermolecular interactions with the hydroxyl group of phenols. The linear dependence of the logarithm of the relative volume of phenols on their dipole moments and refractive index is established. A deviation from this dependence is obsen’ed for phenols having functional substituents in the ortho-position of the benzene ring. This can be explained by the electronic effect? which leads to steric difficulties during intermolecular interaction in the sorbent - sorbate system. Based on the theoretical studies carried out, it was possible to completely separate the individual components of phenols, especially those with close boiling points. The obtained data were tested in practice when monitoring the content of phenols in the silt drains of the Volga river. This technique of gas chromatographic analysis can be used in the system of ecological monitoring of aquatic ecosystems.
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