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首页> 外文期刊>Journal of separation science. >Carbonized silk fibers for in-tube solid-phase microextraction to detect polycyclic aromatic hydrocarbons in water samples
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Carbonized silk fibers for in-tube solid-phase microextraction to detect polycyclic aromatic hydrocarbons in water samples

机译:用于管中固相微萃取的碳化丝纤维检测水样中的多环芳烃

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摘要

Silk fibers were carbonized to develop a biomass carbon material as an adsorbent for solid-phase microextraction. The surface structure of the carbonized silk fibers was characterized by scanning electron microscopy, and the graphitization degree was determined by Raman spectrometry. After carbonization under high temperature, the orderliness and structural regularity of carbon atoms on silk fibers were promoted. Extraction tube packed with carbonized silk fibers was prepared for in-tube solid-phase microextraction. Coupled with high performance liquid chromatography, it exhibited good extraction performance for hydrophobic polycyclic aromatic hydrocarbons. Main parameters including sampling volume, sampling rate, methanol content in sample, and desorption time were systematically investigated. Under the optimum conditions, the analysis method was established and it exhibited wide linear range (0.016-20 mu g/L) with good linearity (correlation coefficient >= 0.9947), low limits of detection (0.005-0.050 mu g/L), and high enrichment factors (1189-2775). Relative standard deviations (n = 3) for intraday (<= 3.3%) and interday (<= 9.6%) tests indicated that the extraction material had satisfactory repeatability. Finally, the analytical method was successfully applied to detect trace polycyclic aromatic hydrocarbons in real water samples, demonstrating its satisfactory practicability.
机译:碳纤维被碳化以形成生物质碳材料作为固相微萃取的吸附剂。通过扫描电子显微镜表征碳化丝纤维的表面结构,通过拉曼光谱法测定石墨化程度。在高温下碳化后,促进了丝纤维上碳原子的秩序和结构规律。用碳化丝纤维填充萃取管,用于管内固相微萃取。结合高效液相色谱,它表现出疏水多环芳烃烃的良好提取性能。系统地研究了具有抽样体积,取样率,甲醇含量的主要参数和解吸时间。在最佳条件下,建立了分析方法,其具有良好的线性范围(0.016-20μg/ L),线性度良好(相关系数> = 0.9947),低检测限(0.005-0.050 mu g / l),和高浓缩因子(1189-2775)。儿内(<= 3.3%)和间期(<= 9.6%)试验的相对标准偏差(n = 3)表明提取材料具有令人满意的可重复性。最后,成功地应用分析方法以检测实际水样中的痕量多环芳烃,证明其令人满意的实用性。

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