Simultaneous spectroscopic determination of trace mixed organic acids in aqueous samples using magnetic solid phase extraction coupled with chemometrics method

Yugao Guo, Yuan Jiang, Pei Liu, Jianwei Yang, Qingyin Zhang, X. Bian
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Abstract

The polyaniline-coated magnetite/silica nanomaterials (Fe 3 O 4 @SiO 2 /PANI) have been synthesized and successfully applied as an effective sorbent for preconcentration of several typical organic acids from environmental water samples. The properties of Fe 3 O 4 @SiO 2 /PANI are characterized by FT-IR and XPS. These magnetic materials can enrich trace organic acids effectively by solid-phase extraction. Three kinds of organic acids, including benzoic acids, phthalic acids, and p -toluene sulfonic acids, are selected as target analytes for magnetic solid phase extraction (MSPE). Various experimental parameters of the MSPE were investigated and optimized. After the desorption process, the elution is detected by the UV-visible spectrophotometer. The spectroscopic data are analyzed through the partial least squares (PLS) method, which facilitate quantitation of mixture from complex data. The enrichment factor of benzoic acids, phthalic acids and p -toluene sulfonic acids reached 19.53, 20.31, and 16.89, respectively. A wide measurement range of 10 μg L -1 to 50 mg L -1 is obtained. The LOD is 0.8 μg L -1 . The spiked recoveries in the range of 94%-101% with RSD ( n =8) lower than 4%. The results illustrated that the combined approach of MSPE and PLS has great applied potential for a mixture of trace compounds in different fields of its high
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磁性固相萃取-化学计量学同时光谱法测定水中痕量混合有机酸
合成了聚苯胺包覆的磁铁矿/二氧化硅纳米材料(fe3o4 @ sio2 /PANI),并成功地作为一种有效的吸附剂用于环境水样中几种典型有机酸的预富集。用FT-IR和XPS表征了fe3o4 @ sio2 /PANI的性能。这些磁性材料可以通过固相萃取有效富集微量有机酸。选择苯甲酸、邻苯二甲酸和对甲苯磺酸三种有机酸作为磁性固相萃取(MSPE)的目标分析物。对MSPE的各实验参数进行了研究和优化。解吸过程结束后,用紫外可见分光光度计检测洗脱。采用偏最小二乘(PLS)方法对光谱数据进行分析,便于从复杂数据中定量分析混合物。苯甲酸、邻苯二甲酸和对甲苯磺酸的富集系数分别为19.53、20.31和16.89。测量范围为10 μg L -1 ~ 50 mg L -1。LOD为0.8 μg L -1。加标回收率在94% ~ 101%之间,RSD (n =8) < 4%。结果表明,MSPE与PLS相结合的方法在不同领域的痕量化合物混合分析中具有很大的应用潜力
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