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Orthogonal Design Study on Factors Affecting the Determination of Common Odors in Water Samples by Headspace Solid-Phase Microextraction Coupled to GC/MS

机译:顶空固相微萃取-GC / MS联用测定水样中常见气味的影响因素的正交设计研究

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Geosmin and 2-MIB are responsible for the majority of earthy and musty events related to the drinking water. These two odorants have extremely low odor threshold concentrations at ng L−1level in the water, so a simple and sensitive method for the analysis of such trace levels was developed by headspace solid-phase microextraction coupled to gas chromatography/mass spectrometry. In this study, the orthogonal experiment design L32(49) was applied to arrange and optimize experimental conditions. The optimum was the following: temperatures of extraction and desorption, 65°C and 260°C, respectively; times of extraction and desorption, 30 min and 5 min, respectively; ionic strength, 25% (w/v); rotate-speed, 600 rpm; solution pH, 5.0. Under the optimized conditions, limits of detection(S/N=3)were 0.04 and 0.13 ng L−1for geosmin and 2-MIB, respectively. Calculated calibration curves gave high levels of linearity with a correlation coefficient value of 0.9999 for them. Finally, the proposed method was applied to water samples, which were previously analyzed and confirmed to be free of target analytes. Besides, the proposal method was applied to test environmental water samples. The RSDs were 2.75%~3.80% and 4.35%~7.6% for geosmin and 2-MIB, respectively, and the recoveries were 91%~107% and 91%~104% for geosmin and 2-MIB, respectively.
机译:Geosmin和2-MIB负责与饮用水有关的大多数泥土和霉味事件。这两种气味剂在水中的ng L-1处具有极低的气味阈值浓度,因此通过顶空固相微萃取与气相色谱/质谱联用开发了一种简单而灵敏的分析痕量水平的方法。在这项研究中,正交实验设计L32(49)用于安排和优化实验条件。最佳条件如下:萃取和解吸温度分别为65°C和260°C;提取和解吸时间分别为30分钟和5分钟。离子强度25%(w / v);转速600 rpm;溶液pH,5.0。在优化条件下,土臭素和2-MIB的检出限(S / N = 3)分别为0.04和0.13 ng L-1。计算出的校准曲线具有很高的线性度,其相关系数值为0.9999。最后,将所提出的方法应用于水样,该水样此前已进行过分析并确认不含目标分析物。此外,该建议方法还用于测试环境水样。土臭素和2-MIB的RSD分别为2.75%〜3.80%和4.35%〜7.6%,而土臭素和2-MIB的回收率分别为91%〜107%和91%〜104%。

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