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Is It Possible to Predict the Concentration of Natural Volatile Organic Compounds in Forest Atmosphere?

机译:是否可以预测森林大气中的天然挥发性有机化合物的浓度?

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摘要

We aimed to understand the correlation between the microclimate environment within a forest and NVOC (Natural volatile organic compounds) concentration and the concentration of NVOC more efficiently through the prediction model method. In this study, 380 samples were collected and analyzed to examine the characteristics of NVOC emitted from a birch forest. NVOC were analyzed in May and July 2019, and measurements were performed at three different locations. Using a pump and stainless-steel tube filled with Tenax-TA, 9 L of NVOC was collected at a speed of 150 mL/h. The analysis of NVOC composition in the forest showed that it comprised α-pinene 27% and camphor 10%. Evaluation of the correlation between the NVOC concentration and the microclimate in the forests showed that the concentration increased markedly with the increase in temperature and humidity, and the concentration decreased with the increase in wind velocity. Nineteen substances in total including α-pinene and β-pinene were detected at high concentrations during the sunset. The results of the study site analysis presented a significant regression model with a R2 as high as 60.1%, confirming that the regression model of the concentration prediction of NVOC in birch forest has significant explanatory power.
机译:我们旨在通过预测模型方法更有效地了解森林和NVOC(天然挥发性有机化合物)浓度和NVOC的浓度之间的相关性。在本研究中,收集380个样品并分析,以检查从桦木林发出的NVOC的特征。 NVOC于2019年5月和7月分析,测量在三个不同的位置进行。使用填充有Tenax-Ta的泵和不锈钢管,以150mL / h的速度收集9L NVOC。森林中NVOC组成的分析表明,它包含α-突烯27%和樟脑10%。评估NVOC浓度与森林中微气密之间的相关性表明,随着温度和湿度的增加,浓度显着增加,并且随着风速的增加而降低。在日落期间,在高浓度下检测到总共包括α-脊烯和β-pine烯的十九种物质。研究现场分析的结果提出了一种显着的回归模型,R2高达60.1%,证实了桦木林中NVOC浓度预测的回归模型具有显着的解释能力。

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