超薄聚二甲基硅氧烷在室内条件下长期延缓水分蒸发

ty10086 提交于 周三, 08/25/2021 - 15:34
文章英文标题
Long-Term Retardation of Water Evaporation by Ultra-Thin Layers of Polydimethylsiloxanes in the Indoor Conditions
正文
全球变暖正在影响世界许多地区的水分平衡,使其超过降雨量的蒸发,从而导致负面的环境后果和经济损失。利用特殊添加剂的超薄表面膜是降低水库自由面蒸发失水的有效途径。由于以脂肪醇(十六醇、十八醇及其混合物)为基础的添加剂稳定性差、成本高,因此寻找新的高效、经济的添加剂来减少蒸发造成的水分损失。在实验室,对厚度为1 μ m的PDMS - 100和PDMS - 200超薄膜对自由面蒸发水速率的影响进行了长期( 84天)的实验研究。得到了PDMS薄膜降低蒸发量效果的日值随时间的变化动态,以及从研究开始的总效果。在研究的第6天,蒸发量降低的日效应最大;分别占PDMS-200膜的39.5 %和PDMS-100膜的32.9 %。对于不加添加剂的水,以及类似具有超薄PDMS薄膜的储罐,传质系数的值与自由表面温度之间均得到了线性相关。采用厚度为1μm的PDMS-200膜,84d的总减蒸率为17.2 %,而相同厚度的PDMS-100膜,减蒸率为5.7 %。鉴于作用时间较长,从经济角度考虑,聚二甲基硅氧烷的超薄膜,特别是PDMS-200可以作为一种有利可图的替代使用基于脂肪醇的单膜。
文章内容(英文)
Global warming is affecting on the water balances in many parts of the world to exceed evaporation over rainfall, leading to negative environmental consequences and economic losses. An effective way to reduce water loss due to evaporation from the free surface of reservoirs is the use of ultra-thin surface films of special additives. Insufficiently high stability and significant cost of additives based on fatty alcohols (hexadecanol, octadecanol and their mixtures) leads to the search for new effective and more economical additives to reduce water loss due to evaporation. In the laboratory, a series of long-term (84 days) experimental studies of the effect of ultra-thin films of polydimethylsiloxanes brands PDMS-100 and PDMS-200 with a thickness of 1 μm on the rate of evaporation of water from the free surface. The dynamics of change in time of daily values of the effect of reduction of evaporation by means of PDMS films, and also total effect from the beginning of researches is received. The maximum daily effects of evaporation reduction were obtained on the 6th day of the study; they accounted for 39.5% for the PDMS-200 film and 32.9% for the PDMS-100 film, respectively. Linear correlations are obtained between the values of mass transfer coefficient and free surface temperature for water without additives, as well as for similar tanks with ultra-thin PDMS films. The total effect of evaporation reduction with the PDMS-200 film with a thickness of 1 μm for 84 days was 17.2%, while for the PDMS-100 film of the same thickness a reduction of evaporation by 5.7% was obtained. Given the long duration of action, ultra-thin films of polydimethylsiloxanes, especially PDMS-200 from an economic point of view can be a profitable alternative to the use of monofilms based on fatty alcohols.
来源出处
Journal|[J]Journal of Ecological Engineering2021.
谷歌学术影响力
[db:学术影响力]

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