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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Evaporation of water-ethanol binary sessile drop on fluoropolymer surfaces: Influence of relative humidity
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Evaporation of water-ethanol binary sessile drop on fluoropolymer surfaces: Influence of relative humidity

机译:含氟聚合物表面上水 - 乙醇二进制术滴的蒸发:相对湿度的影响

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Experimental results on the diffusive drop evaporation behavior of 2?μL pure water, pure ethanol and ethanol-water binary droplets under constant relative humidity and temperature conditions were reported on two flat fluoropolymer surfaces of TEFLON-FEP and PTFE. Contact angles, droplet heights, contact radius were monitored with a camera as a function of time. A roughly linear relationship between the initial static contact angles on fluoropolymer surfaces and ethanol concentration was found similar to the previously published results. It was determined that constant contact angle mode dominated for most of the duration of drop evaporation process after the initial stages. Volumes of the binary droplets were found to decrease nonlinearly over time for all of the compositions. The most important effect of the RH increase of the medium was found to be the increase of the adsorption quantity of water vapor from the environment onto pure ethanol and also binary ethanol-water droplets. For pure ethanol droplet under high RH conditions, the rate of evaporation declined after the evaporation of most of the ethanol in 250?s, then the remaining droplet evaporated with a much slower rate which was close to, but not equal to the rate of pure water drop evaporation, indicating that ethanol was present in the droplet until to end. The same behavior was seen for ethanol-water binary droplets. Evaporation rate of the binary droplet containing 25% ethanol by wt. was observed to be close to that of pure water and 75% ethanol by wt. was found to be close to that of pure ethanol with minor differences. However, evaporation of a binary droplet containing 50% ethanol by wt. was more complicated and it is hard to distinguish ethanol and water evaporation zones for this composition and there was a long transition stage where ethanol and water evaporated together for long durations. It was found that droplet life-times were generally longer on flat TEFLON-FEP substrate than that of sligh
机译:在Teflon-FEP和PTFE的两个扁平含氟聚合物表面上报道了在恒定相对湿度和温度条件下的2×μl纯水,纯乙醇和乙醇 - 水二元液体的实验结果。接触角,液滴高度,用相机作为时间的函数监测接触半径。发现含氟聚合物表面和乙醇浓度上的初始静态接触角之间的大致线性关系类似于先前公布的结果。确定恒定的接触角模式为初始阶段之后的大部分液滴蒸发过程的持续时间支配。发现二元液滴的体积以随着所有组合物而非线性地降低。发现培养基的RH增加的最重要影响是从环境中的水蒸气的吸附量增加到纯乙醇和二元乙醇 - 水滴。对于在高RH条件下的纯乙醇液滴,在250℃的大部分乙醇中蒸发后蒸发速率下降,然后剩余的液滴蒸发,较慢的速率接近,但不等于纯净的速率水滴蒸发,表明乙醇存在于液滴中直至末端。对于乙醇 - 水二进制液滴来看相同的行为。通过wt含有25%乙醇的二元液滴的蒸发速率。观察到接近纯水和75%乙醇的乙醇。被发现接近纯乙醇的细微差异。然而,通过wt蒸发含有50%乙醇的二元液滴。更复杂,很难区分该组合物的乙醇和水蒸发区,并且存在长的过渡阶段,其中乙醇和水蒸发在一起长持续时间。发现液滴寿命次数在扁平的Teflon-FEP基板上通常比Sligh的衬底更长

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