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58种挥发性有机化合物在熔融石英内衬和SUMMA抛光罐中在各种加湿条件下的稳定性。

Stabilities of 58 volatile organic compounds in fused-silica-lined and SUMMA polished canisters under various humidified conditions.

作者信息

Ochiai Nobuo, Tsuji Akira, Nakamura Naomi, Daishima Shigeki, Cardin Daniel B

机构信息

Yokogawa Analytical Systems Inc., 2-11-13 Nakacho, Musashino-shi, Tokyo 180-0006, Japan.

出版信息

J Environ Monit. 2002 Dec;4(6):879-89. doi: 10.1039/b209210g.

Abstract

Fused-silica-lined (FSL) canisters and SUMMA polished (SUMMA) canisters were compared for the recoveries and the stabilities of 58 volatile organic compounds (VOCs) at low ppbv (volume/volume) levels under various humidified conditions using a three-stage preconcentration method followed by GC-MS analysis. The target VOCs included non-polar VOCs (e.g. halogenated hydrocarbons and aromatic hydrocarbons) and polar VOCs (e.g. alcohols, ketones, esters, ethers, nitriles and thiols). The three-stage preconcentration method was initially optimized for simultaneous analysis of non-polar and polar VOCs because determination of canister stability is dependent on the accuracy of analytical measurements. The method showed good linearity over the concentration range from 1 to 25 ppbv for all target analytes, and the correlation coefficients were higher than 0.9974. The method detection limits ranged from 0.023 to 0.39 ppbv. The test mixtures loaded in both type of canisters (n = 3) had concentrations of 1.7-2.5 ppbv per compound at ambient pressure under various humidified conditions (%RH = 1.6, 8.0, 27, 39, 53 and >99% with excess water present). All canister samples were initially analyzed on day 0 (after 6-12 h). The effect of competitive adsorption of water vapor and polar VOCs on active sites of interior surface was remarkably observed for SUMMA canisters. Polar VOCs had a greater requirement for water vapor to be present. The RH percentages that ensured good recovery on day 0 were RH > 8% for non-polar VOCs and RH > 27% for polar VOCs (except alcohols under the condition of RH > 99%). All thiols were not recovered from SUMMA canisters under all conditions. FSL canisters showed good recoveries of more than 86% for all VOCs under all conditions on day 0 (except alcohols under the condition of RH > 99%). The recoveries of alcohols in both canisters under the condition of RH > 99% displayed relatively low recoveries in the range 25-76% because of the partitioning effect into condensed water. The canister samples under the conditions of RH 8.0, 27, 53 and > 99% were analyzed for the stability test on days 3, 7, 14 and 28 after loading. All non-polar VOCs were reasonably stable in the FSL canisters under all examined conditions over 28 days. However, several polar VOCs that have relatively lower vapor pressure, e.g. MIBK, butyl acetate and alcohols except ethanol, showed unstable characteristics under relatively dry conditions (RH 8 and 27%) during 28 days. RH > 53% was needed to ensure good stabilities of all analytes except thiols with the recoveries of > 80% over 28 days for both canisters. Although the FSL canister showed good recoveries of more than 86% for thiols on day 0, drastic degradations were observed after day 3 and they were not detected after day 14.

摘要

采用三级预浓缩法并结合气相色谱 - 质谱联用(GC - MS)分析,比较了熔融石英内衬(FSL)采样罐和苏玛抛光(SUMMA)采样罐在不同湿度条件下,低体积分数十亿分比(ppbv,体积/体积)水平下58种挥发性有机化合物(VOCs)的回收率和稳定性。目标VOCs包括非极性VOCs(如卤代烃和芳烃)和极性VOCs(如醇类、酮类、酯类、醚类、腈类和硫醇类)。由于采样罐稳定性的测定取决于分析测量的准确性,因此最初对三级预浓缩法进行了优化,以同时分析非极性和极性VOCs。该方法在1至25 ppbv的浓度范围内对所有目标分析物均表现出良好的线性,相关系数高于0.9974。方法检测限为0.023至0.39 ppbv。在各种湿度条件下(%RH = 1.6、8.0、27、39、53和>99%,有过量水存在),两种类型采样罐(n = 3)中装入的测试混合物在环境压力下每种化合物的浓度为1.7 - 2.5 ppbv。所有采样罐样品在第0天(6 - 12小时后)进行初始分析。对于SUMMA采样罐,显著观察到水蒸气和极性VOCs在其内表面活性位点上的竞争吸附效应。极性VOCs对水蒸气的存在有更大需求。在第0天确保良好回收率的相对湿度百分比,对于非极性VOCs为RH > 8%,对于极性VOCs为RH > 27%(RH > 99%条件下的醇类除外)。在所有条件下,所有硫醇均无法从SUMMA采样罐中回收。在第0天,FSL采样罐在所有条件下对所有VOCs均表现出超过86%的良好回收率(RH > 99%条件下的醇类除外)。由于在冷凝水中的分配效应,在RH > 99%条件下,两种采样罐中醇类的回收率相对较低,在25 - 76%范围内。在装入样品后的第3、7、14和28天,对RH 8.0、27、53和> 99%条件下的采样罐样品进行稳定性测试。在所有检测条件下,所有非极性VOCs在FSL采样罐中28天内均相当稳定。然而,几种蒸气压相对较低的极性VOCs,如甲基异丁基酮(MIBK)、乙酸丁酯和除乙醇外的醇类,在28天内相对干燥的条件下(RH 8%和27%)表现出不稳定的特性。需要RH > 53%以确保除硫醇外所有分析物的良好稳定性,两种采样罐在28天内回收率均> 80%。尽管FSL采样罐在第0天对硫醇表现出超过86%的良好回收率,但在第3天后观察到急剧降解,在第14天后未检测到。

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