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Water adsorption and hygroscopic growth of six anemophilous pollen species: the effect of temperature

机译:六种中间花粉种类的水吸附和吸湿生长:温度的影响

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Hygroscopicity largely affects environmental and climatic impacts of pollen grains, one important type of primary biological aerosol particles in the troposphere. However, our knowledge of pollen hygroscopicity is rather limited, and the effect of temperature in particular has rarely been explored before. In this work three different techniques, including a vapor sorption analyzer, diffusion reflectance infrared Fourier transform spectroscopy (DRIFTS) and transmission Fourier transform infrared spectroscopy (transmission FTIR) were employed to characterize six anemophilous pollen species and to investigate their hygroscopic properties as a function of relative humidity (RH, up to 95%) and temperature (5 or 15, 25 and 37°C). Substantial mass increase due to water uptake was observed for all the six pollen species, and at 25°C the relative mass increase at 90%RH, when compared to that at 1%RH, ranged from ~30% to ~50%, varying with pollen species. It was found that the modified κ-K?hler equation can well approximate mass hygroscopic growth of all the six pollen species, and the single hygroscopicity parameter (κ) was determined to be in the range of 0.034±0.001 to 0.061±0.007 at 25°C. In situ DRIFTS measurements suggested that water adsorption by pollen species was mainly contributed to by OH groups of organic compounds they contained, and good correlations were indeed found between hygroscopicity of pollen species and the number of OH groups, as determined using transmission FTIR. An increase in temperature would in general lead to a decrease in hygroscopicity, except for pecan pollen. For example, κ values decreased from 0.073±0.006 at 5°C to 0.061±0.007 at 25°C and to 0.057±0.004 at 37°C for Populus tremuloides pollen, and decreased from 0.060±0.001 at 15°C to 0.054±0.001 at 25°C and 0.050±0.002 at 37°C for paper mulberry pollen.
机译:吸湿性在很大程度上影响了花粉颗粒的环境和气候影响,对流层中的一种重要类型的主要生物气溶胶颗粒。然而,我们对花粉吸湿性的了解相当有限,特别是温度的影响以前很少。在这项工作中,使用三种不同的技术,包括蒸气吸附分析仪,扩散反射率红外傅里叶变换光谱(漂移)和传输傅里叶变换红外光谱(传输FTIR)表征六种异交的花粉种类,并作为一种函数研究其吸湿性相对湿度(RH,高达95%)和温度(5或15,25和37℃)。对于所有六种花粉物种,观察到由于水吸收而产生的大量质量增加,并且在25℃下,与1%RH相比,90%RH的相对质量增加,范围为约〜30%至〜50%,不同花粉种类。发现改性的κ-kΔHler方程可以很好地近似所有六种花粉种类的质量吸湿性生长,并且单一的吸湿性参数(κ)测定在25时0.034±0.001至0.061±0.007的范围内°C。原位漂移测量表明,花粉物种的水吸附主要是由它们所含的OH基团的有机化合物,并且在花粉种类的吸湿性和OH基团的数量之间发现良好的相关性,如使用透射FTIR测定。除了Pecan Pollen之外,通常会导致温度降低导致吸湿性降低。例如,κ值在5℃至0.061±0.006时从0.073±0.006在25℃下降低至0.057±0.057±0.057±0.057±0.057℃,对于杨树射频花粉,并从0.060±0.001降低到15°C至0.054±0.001在37℃下在25℃和0.050±0.002,用于纸桑椹花粉。

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