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Evaporation kinetics of surfactant solution droplets on rice (Oryza sativa) leaves

机译:水稻叶片表面活性剂溶液液滴的蒸发动力学

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摘要

The dynamics of evaporating sessile droplets on hydrophilic or hydrophobic surfaces is widely studied, and many models for these processes have been developed based on experimental evidence. However, few research has been explored on the evaporation of sessile droplets of surfactant or pesticide solutions on target crop leaves. Thus, in this paper the impact of surfactant concentrations on contact angle, contact diameter, droplet height, and evolution of the droplets’ evaporative volume on rice leaf surfaces have been investigated. The results indicate that the evaporation kinetics of surfactant droplets on rice leaves were influenced by both the surfactant concentrations and the hydrophobicity of rice leaf surfaces. When the surfactant concentration is lower than the surfactant CMC (critical micelle concentration), the droplet evaporation time is much longer than that of the high surfactant concentration. This is due to the longer existence time of a narrow wedge region under the lower surfactant concentration, and such narrow wedge region further restricts the droplet evaporation. Besides, our experimental data are shown to roughly collapse onto theoretical curves based on the model presented by Popov. This study could supply theoretical data on the evaporation of the adjuvant or pesticide droplets for practical applications in agriculture.
机译:广泛研究了亲水性或疏水性表面上无蒂液滴的蒸发动力学,并基于实验证据开发了许多用于这些过程的模型。然而,关于表面活性剂或农药溶液的无滴液滴在目标农作物叶片上蒸发的研究很少。因此,本文研究了表面活性剂浓度对接触角,接触直径,液滴高度和水稻叶片表面液滴蒸发量演变的影响。结果表明,表面活性剂液滴在水稻叶片上的蒸发动力学受表面活性剂浓度和水稻叶片表面疏水性的影响。当表面活性剂浓度低于表面活性剂CMC(临界胶束浓度)时,液滴蒸发时间比高表面活性剂浓度的液滴蒸发时间长得多。这是由于在较低的表面活性剂浓度下,狭窄的楔形区域的存在时间较长,并且这种狭窄的楔形区域进一步限制了液滴的蒸发。此外,根据Popov提出的模型,我们的实验数据已显示出大致折叠为理论曲线。这项研究可以为农业上的实际应用提供佐剂或农药液滴蒸发的理论数据。

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