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Determination of odor compounds by using Headspace solid-phase micro extraction combined with GC-MS

机译:使用顶部空间固相微萃取与GC-MS结合的测定异味化合物

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Geosmin (GSM) and 2-methyl isoboneol(2-MIB) are the major compounds causing the odor of water body. A new method for the qualitative and quantitative analysis of GSM and 2-MIB, which isolated and enriched the odor compounds from the water samples by using Headspace solid-phase micro extraction (HS-SPME), and detected the two substances using GC/MS with internal standard method, was developed. The optimal conditions of HS-SPME for GSM and 2-MIB were as follow: extracting for 40minute, extracting at 65 °C, and adding NaCl 0.1g. The temperature program for column of GC was first maintained at 50 °C for 1 minute, then rose to 100 °C at the rate of 10 °C per minute keeping for 0.15minute, finally rose to 240 °C by 5 °C per minute. Under these conditions, the separate detection limits of GSM and 2-MIB were obtained with 0.2ng / L and 0.5ng / L. The relative standard deviations were 5.37% and 5.56% respectively. This method applied for measuring the actual water samples of Longtan Lake and Taihu Lake in December. The former contained 1.26ng/L of GSM and 1.074ng/L of 2-MIB, while the latter included 2.681ng/L of GSM and 3.392ng/L of 2-MIB
机译:土臭味素(GSM)和2-甲基isoboneol(2-MIB)是造成水体的气味的主要化合物。使用GC / MS的GSM和2-MIB,的定性和定量分析,其分离,并通过使用顶空固相微萃取(HS-SPME)富集从水样的气味化合物,并检测到这两种物质的新方法用内标法,开发的。 HS-SPME的用于GSM和2-MIB的最佳条件为:提取装置,用于40分钟,在65℃提取,并加入NaCl0.1克。用于GC的塔中的温度程序是第一保持在50℃下1分钟,然后升至100℃,以10℃每分钟保持为0.15分钟率,最后上升到240℃5℃每分钟的。在这些条件下,用0.2ng / L和为0.5ng / L,相对标准偏差获得GSM和2-MIB的分开的检测限分别为5.37%和5.56%。施加用于测量腊龙潭和太湖的实际水样此方法。前者含有1.26ng / L GSM和2-MIB的1.074ng / L,而后者包括2.681ng / GSM的L和3.392ng / L 2-MIB的

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