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Carbonized Aramid Fiber as the Adsorbent for In-Tube Solid-Phase Microextraction to Detect Estrogens in Water Samples

机译:碳化的芳族纤维作为管内固相微萃取的吸附剂,以检测水样中的雌激素

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Carbonized aramid fiber was prepared as a new type of adsorbent for in-tube solid-phase microextraction. The surface structure, chemical composition, and graphitization degree of the resulted fiber was determined and characterized by scanning electron microscopy, X-ray photoelectron spectroscopy, and Raman spectrometry. The prepared fiber was packed in a stainless-steel tube instead of the sample loop of a six-port and tested for the extraction of five environmental estrogen hormones coupled with high-performance liquid chromatography. Several parameters affecting the estrogens’ extraction including the sampling volume, sampling rate, NaCl content, and desorption time were investigated in detail. The extraction tube with carbonized aramid fiber exhibited remarkable extraction performance towards five estrogen targets. The analysis method was established, and it exhibited a wide linear range (0.5–10.0? μ g/L) with good linearity (correlation coefficient ≥0.9906), low limits of detection (0.011–0.13? μ g/L), and high enrichment factors (178–1335) for the five analytes. Relative standard deviations ( n ?=?3) for intraday (≤4.8%) and interday (≤4.0%) tests indicated that the extraction material had satisfactory repeatability. Bisphenol A released from a polycarbonate (PC) bottle was quantitatively detected with a concentration of 8.3? μ g/L. The relative recoveries spiked at 5 and 10? μ g/L were investigated, and the results were in the range of 74.3–121% for real water samples.
机译:将碳化的芳族聚酰胺纤维制备为用于管内固相微萃取的新型吸附剂。通过扫描电子显微镜,X射线光电子能谱和拉曼光谱法测定所得纤维的表面结构,化学成分和石墨化程度。将制备的纤维填充在不锈钢管中,而不是六端口的样品环,并测试了与高性能液相色谱相结合的五种环境雌激素的提取。详细研究了影响包括采样体积,采样率,NaCl含量和解吸时间的雌激素的提取的几个参数。碳化芳族纤维的萃取管表现出朝向五种雌激素靶标的显着提取性能。建立了分析方法,它表现出具有良好线性度(相关系数≥0.9906)的宽线性范围(0.5-10.0Ωμg/ L),低次数限制(0.011-0.13?μg/ l),高五种分析物的丰富因子(178-1335)。用于盘中的相对标准偏差(n?=Δ3),间隔(≤4.0%)试验表明,提取材料具有令人满意的可重复性。从聚碳酸酯(PC)瓶释放的双酚A以8.3的浓度定量检测为8.3? μg/升。在5和10时飙升的相对回收?研究了μg/ L,结果为实际水样的74.3-121%。

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