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Field sampling method for quantifying volatile sulfur compounds from animal feeding operations

机译:定量采样动物饲养过程中挥发性硫化物的现场采样方法

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摘要

Volatile sulfur compounds (VSCs) are a major class of chemicals associated with odor from animal feeding operations (AFOs). Identifying and quantifying VSCs in air is challenging due to their volatility, reactivity, and low concentrations. In the present study, a canister-based method collected whole air in fused silica-lined (FSL) mini-canister (1.4 L) following passage through a calcium chloride drying tube. Sampled air from the canisters was removed (10–600 mL), dried, pre-concentrated, and cryofocused into a GC system with parallel detectors (mass spectrometer (MS) and pulsed flame photometric detector (PFPD)). The column effluent was split 20:1 between the MS and PFPD. The PFPD equimolar sulfur response enhanced quantitation and the location of sulfur peaks for mass spectral identity and quantitation. Limit of quantitation for the PFPD and MSD was set at the least sensitive VSC (hydrogen sulfide) and determined to be 177 and 28 pg S, respectively, or 0.300 and 0.048 μg m−3 air, respectively. Storage stability of hydrogen sulfide and methanethiol was problematic in warm humid air (25 °C, 96% relative humidity (RH)) without being dried first, however, stability in canisters dried was still only 65% after 24 h of storage. Storage stability of hydrogen sulfide sampled in the field at a swine facility was over 2 days. The greater stability of field samples compared to laboratory samples was due to the lower temperature and RH of field samples compared to laboratory generated samples. Hydrogen sulfide was the dominant odorous VSCs detected at all swine facilities with methanethiol and dimethyl sulfide detected notably above their odor threshold values. The main odorous VSC detected in aged poultry litter was dimethyl trisulfide. Other VSCs above odor threshold values for poultry facilities were methanethiol and dimethyl sulfide.
机译:挥发性硫化物(VSC)是与动物饲养操作(AFO)产生的气味相关的主要化学物质。由于其挥发性,反应性和低浓度,在空气中鉴定和定量VSC具有挑战性。在本研究中,一种基于滤罐的方法在通过氯化钙干燥管后,将全部空气收集在装有熔融石英衬里(FSL)的微型滤罐(1.4 L)中。从滤罐中取样的空气被去除(10–600 mL),干燥,预浓缩,并用聚焦检测器冷冻到带有平行检测器(质谱仪(MS)和脉冲火焰光度检测器(PFPD))的GC系统中。色谱柱流出物在MS和PFPD之间按20:1分配。 PFPD等摩尔硫响应增强了定量,并提高了质谱鉴定和定量的硫峰位置。 PFPD和MSD的定量限设定为最不敏感的VSC(硫化氢),分别确定为177和28 pg S,或分别为0.300和0.048μgm-3空气。硫化氢和甲硫醇在温暖的潮湿空气(25°C,96%相对湿度(RH))中未先干燥的存储稳定性存在问题,但是,在储存24小时后,干燥过的碳罐的稳定性仍然只有65%。在养猪场现场采样的硫化氢的储存稳定性超过2天。与实验室样品相比,现场样品的稳定性更高,这是由于与实验室产生的样品相比,现场样品的温度和相对湿度较低。硫化氢是在所有养猪场中检测到的主要臭味VSC,其中甲烷硫醇和二甲基硫醚的气味阈值明显高于它们。在老化的家禽垫料中检测到的主要气味VSC是三硫化二甲基。家禽设施中高于气味阈值的其他VSC是甲硫醇和二甲基硫醚。

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