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Suitability of Test Chambers for Analyzing Air Pollutant Removal by Plants and Assessing Potential Indoor Air Purification

机译:测试箱适合分析植物去除空气污染物并评估潜在的室内空气净化能力

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A unique test chamber system, which enables experiments with plants under highly controlled environmental conditions, was used to examine the pollutant removal efficiency of plants. For this purpose, the removal of two different volatile organic compounds (VOC) (toluene, 2-ethylhexanol) from the air by aerial plant parts of two common indoor plant species (Dieffenbachia maculata and Spathiphyllum wallisii) was monitored. While the control over environmental conditions (temperature, relative humidity, CO2 content, and light condition) worked very well in all experiments, control experiments with the empty chamber revealed high losses of VOC, especially 2-ethylhexanol, over the test duration of 48 h. Nonetheless, compared to the empty chamber, a significantly stronger and more rapid decline in the toluene as well as in the 2-ethylhexanol concentrations was observed when plants were present in the chamber. Interestingly, almost the same VOC removal as by aerial plant parts could be achieved by potting soil without plants. A comparative literature survey revealed substantial heterogeneity in previous results concerning the VOC removal efficiency of plants. This can be mainly attributed to a high diversity in experimental setup. The experimental setup used in the current study offers an excellent opportunity to examine also plant physiological responses to pollutant exposure (or other stressors) under highly controlled conditions. For the analysis of VOC removal under typical indoor conditions, to obtain data for the assessment of realistic VOC removal efficiencies by plants in rooms and offices, a guideline would be helpful to achieve more coherent findings in this field of research.
机译:独特的测试室系统可以在高度受控的环境条件下对植物进行实验,以检查植物的污染物去除效率。为此,监测了两种常见室内植物物种(Dieffenbachia maculata和Spathiphyllum wallisii)的空中植物部分从空气中去除两种不同的挥发性有机化合物(VOC)(甲苯,2-乙基己醇)的情况。尽管在所有实验中对环境条件(温度,相对湿度,CO2含量和光照条件)的控制都非常有效,但在48 h的测试时间内,用空室进行的控制实验显示出VOC尤其是2-乙基己醇的高损失。但是,与空室相比,当室内有植物时,甲苯和2-乙基己醇的浓度明显更强,更快地下降。有趣的是,通过盆栽不含植物的土壤可以实现与空中植物部分几乎相同的VOC去除。一项比较文献调查显示,以前有关植物挥发性有机化合物去除效率的结果存在很大的异质性。这主要归因于实验设置的高度多样性。当前研究中使用的实验装置为检查植物在高度受控条件下对污染物暴露(或其他胁迫)的生理反应提供了极好的机会。为了分析典型室内条件下的VOC去除量,以获得用于评估房间和办公室中植物实际VOC去除效率的数据,指南将有助于在该研究领域中获得更一致的发现。

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