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Evaluation of thermal desorption for the measurement of artifical swine odorants in the vapor phase

机译:热解吸评估气相中的人工猪臭味

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Quantification of odorants from animal production facilities is difficult. The current technique is to collect air samples in Tedlar bags and quantify odor using a trained olfactory panel. In this approach, relative differences between samples can be determined, but further quantification of odorants is limited. An alternative approach is to quantify odorants in air emissions using sorbent tubes. A sorbent tube is a glass tube packed with a specific adsorbent material (Tenax TA, Carboxen 1000, Carbosieve SIII, etc.) and has been used to collect volatiles and quantify emissions from various industrial sources. Each adsorbent has a limited range of chemical selectivity. Limited applications of sorbent tubes with single or dual adsorbents have been used to measure odorant emissions from animal production facilities. In this study, tri-packed sorbent tubes and Tedlar bags were compared in characterizing 19 major odorants found in artificial swine odor. The sorbent tubes were packed with Tenax TA, Carboxen 1000, and Carbosieve SIII. The artificial swine odor was directly desorbed onto the tri-packed sorbent tube. For comparison, a 10-L Tedlar bag was filled with nitrogen gas and artificial swine odor. The Tedlar bag was then desorbed onto the tri-packed sorbent tube. The sorbent tube was then thermally desorbed into a gas chromatography (GC) system with a flame ionization detector (FID) for quantification. The tri-packed sorbent tube demonstrated recoveries greater than 74% and detection limits less than 0.4 ng for all 19 odorants. Thus, a tri-packed sorbent tube may provide an analytical method to measure low concentrations of major odorants found in air emissions from swine production facilities. Tedlar bags showed limited recoveries of some odorants, less than 12% for indole and skatole. In addition, Tedlar bags immediately sampled after three flushings with nitrogen emitted 3.50 ng L{sup}-1 hr{sup}-1 of acetic acid (~35% above background levels) and 2.13 ng L{sup}-1 hr{sup}-1 phenol (~27% above background levels). These results suggest that air samples collected in Tedlar bags may bias olfactory analysis.
机译:很难对动物生产设施中的气味进行量化。当前的技术是在经过训练的嗅觉面板中收集Tedlar袋中的空气样本并量化气味。通过这种方法,可以确定样品之间的相对差异,但是对加味剂的进一步定量受到限制。一种替代方法是使用吸附剂管量化空气排放中的气味。吸附剂管是一种装有特定吸附剂材料(Tenax TA,Carboxen 1000,Carbosieve SIII等)的玻璃管,已用于收集挥发物并量化各种工业来源的排放。每种吸附剂的化学选择性范围有限。具有单一或双重吸附剂的吸附剂管的有限应用已用于测量动物生产设施散发的气味。在这项研究中,比较了三装式吸附剂管和Tedlar袋,以表征人造猪气味中发现的19种主要气味。吸附剂管中装有Tenax TA,Carboxen 1000和Carbosieve SIII。人造猪的气味直接解吸到三层吸附管上。为了进行比较,在一个10升的Tedlar袋中充满了氮气和人造猪的气味。然后将Tedlar袋解吸到三层吸附管上。然后将吸附剂管热解吸到带有火焰电离检测器(FID)的气相色谱(GC)系统中进行定量。三重吸附剂管对所有19种气味剂的回收率均大于74%,检出限小于0.4 ng。因此,三层装满的吸附剂管可以提供一种分析方法,以测量从猪生产设施排放的空气中发现的低浓度的主要气味。 Tedlar袋显示出某些气味的回收率有限,吲哚和粪臭素的回收率不到12%。此外,在用氮气冲洗3次后,立即采样Tedlar袋,放出的乙酸为3.50 ng L {sup} -1 hr {sup} -1(高于背景水平的35%)和2.13 ng L {sup} -1 hr {sup } -1苯酚(比背景水平高约27%)。这些结果表明,收集在Tedlar袋中的空气样本可能会影响嗅觉分析。

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