首页> 外文期刊>Journal of the air & waste management association >Chemical-Sensory Characterization of Dairy Manure Odor Using Headspace Solid-Phase Microextraction and Multidimensional Gas Chromatography Mass Spectrometry-Olfactometry
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Chemical-Sensory Characterization of Dairy Manure Odor Using Headspace Solid-Phase Microextraction and Multidimensional Gas Chromatography Mass Spectrometry-Olfactometry

机译:顶空固相微萃取和多维气相色谱质谱-比色法测定乳牛粪中的气味

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摘要

Livestock operations are associated with emissions of odor, gases, and particulate matter. The majority of previous livestock odor studies focused on swine operations whereas relatively few relate to dairy cattle. Identifying the compounds responsible for the primary odor impact is a demanding analytical challenge because many critical odor components are frequently present at very low concentrations within a complex matrix of numerous insignificant volatiles. The objective of this study was to describe a chemical-sensory profile of dairy manure odor using headspace solid-phase microextraction (HS-SPME) and multidimensional gas chromatography-mass spec-trometry-olfactometry (MDGC-MS-O). Two analytical approaches were used: (1) HS-SPME time-series extractions (from seconds up to 20 hr) followed by gas chromatography-mass spectrometry-olfactometry (GC-MS-O) analyses, and (2) relatively short HS-SPME extractions (30 min) followed by MDGC-MS-O analyses on selected chromato-gram heart-cuts. Dairy manure was collected at research dairy farms in the United States and Israel. Volatile or-ganic compounds (VOCs) resolved from multiple analyses included sulfur-containing compounds, volatile fatty acids, ketones, esters, and phenol/indole derivatives. A total of 86 potential odorants were identified. Of them, 17 compounds were detected by the human nose only. A greater number of VOCs and odorous compounds were detected, as well as higher mass loading, on solid-phase microextraction (SPME) fibers observed for longer extractions with SPME. However, besides sulfur-containing compounds, other selected compounds showed no apparent competition and displacement on the SPME fiber. The use of MDGC-MS-O increased chromatographic resolution even at relatively short extractions and revealed 22 additional odorants in one of the regions of the chromato-gram. The two analytical approaches were found to be parallel to some extent whereas MDGC-MS-O can also be considered as a complementary approach by resolving more detailed chemical-sensory odor profiles.
机译:畜牧业的运营与气味,气体和颗粒物的排放有关。先前的大多数有关家畜气味的研究都集中在猪的操作上,而很少涉及奶牛。鉴定引起主要气味影响的化合物是一项艰巨的分析挑战,因为许多关键的气味成分通常以非常低的浓度存在于众多微不足道的挥发物的复杂基质中。这项研究的目的是描述使用顶空固相微萃取(HS-SPME)和多维气相色谱-质谱-嗅觉法(MDGC-MS-O)的乳牛粪便气味的化学-感官特征。使用了两种分析方法:(1)HS-SPME时间序列提取(从几秒到20 hr),然后进行气相色谱-质谱-嗅觉分析(GC-MS-O)分析,以及(2)相对较短的HS- SPME萃取(30分钟),然后对选定的色谱图心脏切割进行MDGC-MS-O分析。乳肥是在美国和以色列的研究奶牛场收集的。通过多次分析得到的挥发性有机化合物(VOC)包括含硫化合物,挥发性脂肪酸,酮,酯和苯酚/吲哚衍生物。总共鉴定出86种潜在的气味。其中只有人鼻检测出17种化合物。在固相微萃取(SPME)纤维上检测到大量的VOC和有味化合物,以及较高的质量负载,观察到用SPME进行较长时间的萃取。但是,除了含硫化合物外,其他选定的化合物在SPME纤维上也没有表现出明显的竞争和位移。 MDGC-MS-O的使用即使在相对较短的萃取时间下也能提高色谱分辨率,并在色谱图的某一区域显示出22种其他加味剂。发现这两种分析方法在一定程度上是平行的,而MDGC-MS-O也可以通过解析更详细的化学感官气味概况而被视为补充方法。

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