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Impact of essential-oil-based cleaning products on indoor air quality: From liquid composition to test emission chamber

机译:基于精油的清洁产品对室内空气质量的影响:从液体组合物测试发射室

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As society has become aware of health hazards related to the exposure to chemicals, major efforts have been made to address indoor air current problematic. Consequently, popularity of "green" cleaning products has upsurge. These products are formulated with essential-oils relying on their anti-bacterial properties to improve indoor air quality. Indeed, essential oils might contain a hundred of odorous molecules, mainly terpenes and terpenoids (TerVOCs) which acts as antibacterial agents. Nonetheless, do essential-oil-based products really contribute to indoor air quality improvement? This study is addressed to evaluate emissions from the use of essential-oils-based cleaning products by various scale experiments. Firstly, a correlation of liquid composition from 7 natural cleaning products with their emission potentials has been investigated. Volatile fractions are evaluated by using micro-chamber testing. A total of 28 terpenes are quantified among products in the liquid form. Nevertheless, only 22 species are detected in gas samples with a yield ranking from 9.1 %to 99.8 %. Results do not verified a direct correlation between liquid mass and emitted concentrations of terpenes. Indeed, chemical affinities between terpenes and solvent matrix in product formulation are evidenced. Then, 4 products from different cleaning purposes have been selected for emission evaluation in a test chamber of l-m3. Product application process are correlated to real case scenario regarding applied quantity and loading factor. Emitted terpenes and carbonyl compounds are quantified by off-line and on-line chromatography measurements. Results evidenced that peak concentrations from terpenes reached up to 1.5 h after cleaning activity. Major compound emitted concentration range from 121 to 152 ug/m3, in the test chamber, for different product categories. Specific emission dynamic is evidenced for formaldehyde, in where continuous increasing concentration is revealed due to the presence of formaldehyde releasers. This study contributes to further assessment of exposure hazards related to cleaning activities.
机译:由于社会已经意识到与化学品的暴露有关的健康危害,所以已经进行了重大努力来解决室内空气当前问题。因此,“绿色”清洁产品的普及具有升高。这些产品配制,用依赖于其抗菌性能的精油配制,以改善室内空气质量。实际上,精油可能含有一百个气味分子,主要是萜烯和三萜(Tervocs),其起到抗菌剂。尽管如此,基于精华油的产品真的有助于室内空气质量改进吗?本研究得到解决,评估各种规模实验的使用基于精油的清洁产品的排放。首先,研究了液体组合物与7种自然清洁产品的相关性,并进行了其排放电位。通过使用微室测试评估挥发性级分。在液体形式的产品中总共量化了28个萜烯。然而,在气体样品中仅检测到22种,产量排名为9.1%至99.8%。结果不验证液体质量与萜烯浓度之间的直接相关性。实际上,证据了产物制剂中的萜烯和溶剂基质之间的化学亲和力。然后,已经选择了来自不同清洁目的的4种产品用于L-M3的测试室中的排放评估。产品应用过程与应用数量和装载因子的实际情况相关。通过离线和在线色谱测量来定量发射的萜烯和羰基化合物。结果证明,清洁活性后,萜烯的峰浓度达到1.5小时。对于不同产品类别,主要化合物在试验室中的121至152ug / m3中产生的浓度范围为121至152ug / m3。对甲醛的显着性发射动态证明了特定的排放动态,在由于存在甲醛释放器的存在而显露连续增加的浓度。本研究有助于进一步评估与清洁活动有关的暴露危害。

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