[改进固相萃取-高效液相色谱法测定土壤中15种羰基化合物]。

IF 1.2 4区 化学 Q4 CHEMISTRY, ANALYTICAL 色谱 Pub Date : 2023-03-01 DOI:10.3724/SP.J.1123.2022.05021
Kun-Peng Xue, Ling-Yu Yu, Xing-Fa Ren, Bing-Fang Tu, Chao Chen, Ting Xu, Huan He, Shuai Hu
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引用次数: 0

摘要

建立了改进固相萃取(SPE)-高效液相色谱法测定甲醛(FOR)、乙醛(ACETA)、丙烯醛(ACR)、丙酮(ACETO)、丙醛(PRO)、巴豆醛(CRO)、丁醛(BUT)、苯甲醛(BEN)、异戊醛(ISO)、正戊醛(VAL)、邻甲基苯甲醛(o-TOL)、间甲基苯甲醛(m-TOL)、对甲基苯甲醛(p-TOL)、正己醛(HEX)和2,5-二甲基苯甲醛(DIM)等15种羰基化合物的方法。在土壤中。用乙腈超声提取土壤,用2,4-二硝基苯肼(2,4- dnph)衍生得到稳定的腙类化合物。衍生化的溶液使用装有n -乙烯基吡咯烷酮/二乙烯基苯共聚物的固相萃取管(Welchrom®BRP)进行清洗。色谱柱为Ultimate®XB-C18 (250 mm×4.6 mm, 5 μm),流动相为乙腈-水(65∶35,v/v),等密度洗脱,波长为360 nm。然后用外部标准法对土壤中的15种羰基化合物进行定量分析。该方法改进了环境标准HJ 997-2018《土壤和沉积物-羰基化合物的测定-高效液相色谱法》中样品处理方法。通过一系列实验确定了土壤提取的最佳条件:乙腈为提取溶剂,提取温度为30℃,提取时间为10 min。结果表明,BRP滤筒的纯化效果明显优于传统的硅基C18滤筒。15个羰基化合物线性关系良好,相关系数均在0.996以上。加样回收率为84.6% ~ 115.9%,相对标准偏差为0.2% ~ 5.1%,检出限为0.02 ~ 0.06 mg/L。该方法简便、灵敏,适用于HJ 997-2018中土壤中15种羰基化合物的准确定量分析。因此,改进的方法为研究土壤中羰基化合物的残留状态和环境行为提供了可靠的技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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[Determination of 15 carbonyl compounds in soil using improved solid phase extraction-high performance liquid chromatography].

An improved solid phase extraction (SPE)-high performance liquid chromatography method was established to determine 15 carbonyl compounds, namely, formaldehyde (FOR), acetaldehyde (ACETA), acrolein (ACR), acetone (ACETO), propionaldehyde (PRO), crotonaldehyde (CRO), butyraldehyde (BUT), benzaldehyde (BEN), isovaleraldehyde (ISO), n-valeraldehyde (VAL), o-methylbenzaldehyde (o-TOL), m-methylbenzaldehyde (m-TOL), p-methylbenzaldehyde (p-TOL), n-hexanal (HEX), and 2,5-dimethylbenzaldehyde (DIM), in soil. The soil was ultrasonically extracted with acetonitrile, and the extracted samples were derivatized with 2,4-dinitrophenylhydrazine (2,4-DNPH) to generate stable hydrazone compounds. The derivatized solutions were cleaned using an SPE cartridge (Welchrom® BRP) packed with N-vinylpyrrolidone/divinylbenzene copolymer. Separation was performed on an Ultimate® XB-C18 column (250 mm×4.6 mm, 5 μm), isocratic elution was performed with acetonitrile-water (65∶35, v/v) as the mobile phase, and detection was performed at a wavelength of 360 nm. The 15 carbonyl compounds in the soil were then quantified using an external standard method. The proposed method improves the sample processing method described in the environmental standard HJ 997-2018: Soil and sediment-Determination of carbonyl compounds-High performance liquid chromatography. A series of experiments revealed the following optimal conditions for soil extraction: acetonitrile as the extraction solvent, extraction temperature of 30 ℃, and extraction time of 10 min. The results showed that the purification effect of the BRP cartridge was significantly better than that of the conventional silica-based C18 cartridge. The 15 carbonyl compounds showed good linearities, and all correlation coefficients were above 0.996. The recoveries ranged from 84.6% to 115.9%, the relative standard deviations (RSDs) ranged from 0.2% to 5.1%, and the detection limits were 0.02-0.06 mg/L. The method is simple, sensitive, and suitable for the accurate quantitative analysis of the 15 carbonyl compounds in soil specified in HJ 997-2018. Thus, the improved method provides reliable technical support for studying the residual status and environmental behavior of carbonyl compounds in soil.

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来源期刊
色谱
色谱 CHEMISTRY, ANALYTICAL-
CiteScore
1.30
自引率
42.90%
发文量
7198
期刊介绍: "Chinese Journal of Chromatography" mainly reports the basic research results of chromatography, important application results of chromatography and its interdisciplinary subjects and their progress, including the application of new methods, new technologies, and new instruments in various fields, the research and development of chromatography instruments and components, instrument analysis teaching research, etc. It is suitable for researchers engaged in chromatography basic and application technology research in scientific research institutes, master and doctoral students in chromatography and related disciplines, grassroots researchers in the field of analysis and testing, and relevant personnel in chromatography instrument development and operation units. The journal has columns such as special planning, focus, perspective, research express, research paper, monograph and review, micro review, technology and application, and teaching research.
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