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Simultaneous determination of ten taste and odor compounds in drinking water by solid-phase microextraction combined with gas chromatography-mass spectrometry

机译:固相微萃取-气相色谱-质谱法同时测定饮用水中十种味道和气味化合物

摘要

Taste and odor (T&O) problems in drinking water frequently occur because of many compounds present in the water, of which trans-1,10-dimethyl-trans-9-decalol (geosmin) and 2-methylisoborneol (MIB) are well-known. In this study, a fast and effective method was established for simultaneous determination of 10 T&O compounds, including geosmin, MIB, 2,4,6-trichloroanisole (TCA), 2-methylbenzofuran, 2-isopropyl-3-methoxypyrazine (IPMP), 2-isobutyl-3-methoxypyrazine (IBMP), cis-3-hexenyl acetate, trans,trans-2,4-heptadienal, trans, cis-2,6-nonadienal, and trans-2-decenal in water samples by headspace solid-phase microextraction (SPME) coupled with gas chromatography-mass spectrometry. An orthogonal array experimental design was used to optimize the effects of SPME fiber, extraction temperature, stirring rate, NaCl content, extraction time, and desorption time. The limits of detection ranged from 0.1 to 73 ng/L were lower than or close to the odor threshold concentrations (OTCs). All the 10 T&O compounds were detected in the 14 water samples including surface water, treatment process water and tap water, taken from a waterworks in Lianyungang City, China. MIB and geosmin were detected in most samples at low concentration. Six T&O compounds (IPMP, IBMP, trans,cis-2,6-nonadienal, 2-methylbenzofuran, trans-2-decenal, and TCA) were effectively decreased in water treatment process (sedimentation and filtration) that is different from cis-3-hexenyl acetate, KM and geosmin. It is noted that the TCA concentrations at 15.9-122.3 ng/L and the trans,cis-2,6-nonadienal concentrations at 79.9-190.1 ng/L were over 10 times higher than their OTCs in tap water. The variation of the analytes in the all water samples, especially distribution system indicated that distribution system cannot be ignored as a T&O compounds source.
机译:饮用水中的味觉和气味(T&O)问题经常发生,因为水中存在许多化合物,其中众所周知的是反式1,10-二甲基-反式-9-癸醇(geosmin)和2-甲基异冰片醇(MIB) 。在这项研究中,建立了一种快速有效的方法,用于同时测定10种T&O化合物,包括土臭素,MIB,2,4,6-三氯苯甲醚(TCA),2-甲基苯并呋喃,2-异丙基-3-甲氧基吡嗪(IPMP),顶空固体法测定水样中的2-异丁基-3-甲氧基吡嗪(IBMP),顺式-3-己烯基乙酸酯,反式,反式-2,4-庚二烯醛,反式,顺式2,6-壬二烯醛和反式-2-癸烯醛相微萃取(SPME)与气相色谱-质谱联用。使用正交阵列实验设计来优化SPME纤维,萃取温度,搅拌速率,NaCl含量,萃取时间和脱附时间的影响。检出限为0.1至73 ng / L,低于或接近气味阈值浓度(OTC)。在中国连云港市自来水厂的14个水样中检测到所有10种T&O化合物,包括地表水,处理过程水和自来水。在大多数低浓度样品中都检测到了MIB和土臭素。与cis-3不同的水处理过程(沉淀和过滤)中有效减少了6种T&O化合物(IPMP,IBMP,反式,顺式-2,6-壬二烯醛,2-甲基苯并呋喃,反式2-癸烯和TCA) -乙酸己烯酯,KM和土臭素。值得注意的是,TCA浓度为15.9-122.3 ng / L,反式,顺式-2,6-壬二烯浓度为79.9-190.1 ng / L,是自来水中OTC的10倍以上。所有水样中分析物的变化,特别是分配系统表明,分配系统作为T&O化合物来源不可忽视。

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