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Suitability of small environmental chambers to test the emission of biocides from treated materials into the air

机译:小型环境舱适合测试杀菌剂从处理后的材料向空气中的排放

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Biocides are used to protect materials that might be damaged by fungal, microbial or insect activity. The aim of this study is to develop a method for the measurement of these organic compounds, which generally have low or moderate vapor pressures. The biocides considered in this study are permethrin, dichlofluanid, tolylfluanid, iodpropinylbutylcarbamat, octylisothiazolinone, tebuconazole and propiconazole. The emission from two commercial products (plastic foil, wool carpet) containing biocides and of seven types of biocidal formulations applied to wood or clay tiles were investigated in 20-1 glass emission test chambers. Each chamber test was performed over a period of 100-200 days, and one investigation was conducted over several years. Compared to volatile organic compounds, low-volatility compounds show totally different emission curves in chamber tests; maximal emission values may be reached in days or weeks. A period of 3 months is sometimes necessary for the determination of area-specific emission rates (SERa's). The SERa's (mugm(-2)h(-1)) from biocide-containing products were determined for permethrin (0.006), propiconazole (0.3), dichlofluanid (2.0), tolylfluanid (1.0), octylisothiazolinone (2.5) and iodpropinylbutylcarbamat (2). In most cases, the SERa stayed at its maximum value or declined slowly over the test period. Additionally, a chamber test begun in 1994 with a piece of wood treated with a typical mixture of biocides dissolved in a technical solvent was continued. SERa's (mugm(-2)h(-1)) for dichlofluanid (0.20), tebuconazole (0.49) and permethrin (0.08) remained detectable after the period of nearly 9 years during which the sample remained continuously in the chamber. This test proved the very slow decrease of emission of low-volatility compounds like permethrin and tebuconazole. (C) 2003 Elsevier Ltd. All rights reserved. [References: 11]
机译:杀菌剂用于保护可能被真菌,微生物或昆虫活动破坏的材料。这项研究的目的是开发一种测量这些有机化合物的方法,这些有机化合物通常具有较低或中等的蒸气压。在这项研究中考虑的杀生物剂是苄氯菊酯,二氯氟苯胺,甲苯基氟苯胺,碘丙炔基丁基氨基甲酸酯,辛基异噻唑啉酮,戊唑醇和丙环唑。在20-1个玻璃排放试验箱中研究了两种含有杀生物剂的商业产品(塑料箔,羊毛地毯)的排放量,以及两种适用于木材或粘土砖的杀生物制剂的排放量。每个试验箱测试在100-200天的时间内进行,并且在数年内进行了一次调查。与挥发性有机化合物相比,低挥发性化合物在室内试验中显示出完全不同的排放曲线。在几天或几周内可以达到最大排放值。确定区域特定排放率(SERa)有时需要3个月的时间。测定了含有杀生物剂的产品的SERa(mugm(-2)h(-1))的氯菊酯(0.006),丙康唑(0.3),二氯氟苯胺(2.0),甲苯基氟苯胺(1.0),辛基异噻唑啉酮(2.5)和碘丙基丁基氨基甲酸酯(2) )。在大多数情况下,SERa在测试期间保持最大值或缓慢下降。此外,继续进行了一项于1994年开始的试验箱测试,该试验是将一块木头用溶解在工业溶剂中的典型杀生物剂混合物处理过。在将样品连续保持在腔室内近9年的时间后,仍可检测到二氯氟苯胺(0.20),戊唑醇(0.49)和苄氯菊酯(0.08)的SERa(mugm(-2)h(-1))。该试验证明了低挥发性化合物(如氯菊酯和戊唑醇)的排放非常缓慢。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:11]

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