Indian Institute of Tropical Meteorology, Pune, India.
Department of Atmospheric and Space Sciences, Savitribai Phule Pune University, Pune, India.
Sci Rep. 2018 Jun 5;8(1):8647. doi: 10.1038/s41598-018-26965-6.
The isotopic characteristics of plant transpired water are strongly controlled by soil evaporation process, primarily by relative humidity. The monsoon system is characterised by large variability of several atmospheric parameters; the primary one being the rainfall, which in turn, modulates the relative humidity. Due to the strong dependency of transpiration on relative humidity, it is expected that this process would vary in accordance with the active and break periods of the monsoon season, which are known to produce cycles of humid and relatively dry phases during a monsoon season. To study the transpiration process, an experiment was conducted wherein rainwater and transpired water were collected from a few plants and analyzed for their isotopic ratios during the summer monsoon seasons of 2016 and 2017. The difference between the isotopic characteristics of the transpired water and rain water is expected to be nominally positive, however, a large variability was observed. This difference is found to be high (low) during the reduced (enhanced) humidity conditions and varies in tandem with the break and active phases of the monsoon season. This characteristic feature may thus be used to delineate the dry and wet phases of monsoon on local to regional scale.
植物散发的水的同位素特征受土壤蒸发过程的强烈控制,主要受相对湿度控制。季风系统的特点是几个大气参数的变化很大;主要的一个是降雨量,而降雨量又调节了相对湿度。由于蒸腾作用强烈依赖于相对湿度,预计这个过程会随着季风季节的活跃期和间歇期而变化,季风季节在一个季节内会产生潮湿和相对干燥的周期。为了研究蒸腾作用过程,进行了一项实验,从一些植物中收集雨水和蒸腾水,并在 2016 年和 2017 年的夏季季风季节分析它们的同位素比值。预计蒸腾水和雨水的同位素特征之间的差异名义上是正值,但观察到了很大的可变性。在湿度降低(增强)的情况下,这种差异较大(较小),并且与季风季节的间歇期和活跃期一致。因此,这种特征可以用来划分当地到区域尺度上季风的干湿期。