首页> 外文会议>Proceedings of the First Shenyang International Colloquium on Microfluidies >Hydrophilic Surface and End-Walls in Vessels Help Water Ascend
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Hydrophilic Surface and End-Walls in Vessels Help Water Ascend

机译:船只中的亲水表面和端壁有助于水上升

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How water ascends in tall trees is far from fully understood. At present, each theory suffers accusations of being inadequate and misleading. They share, none the less, one consensus that many air bubbles are present in xylem vessels, a feature believed to interrupt water lifting due to embolisms. Here, using a microfluidic technology to mimic xylem vessels in trees, we show that air bubbles are formed spontaneously when water ascends in artificial vessels with super-hydrophilic surface and end-wall pits. Contrary to the traditional believe, we show that air bubbles together with end-wall structures of xylem help water to ascend to a level that cannot be achieved in a continuous water column; the water ascent persists even in the presence of a small pressure gradient despite large numbers of air bubbles. The result may contribute a new explanation for water movement in higher plants.
机译:水如何在高大的树木中上升还远远没有被完全了解。目前,每种理论都受到指责不足和误导。他们仍然共享一个共识,即木质部容器中存在许多气泡,该功能被认为会由于栓塞而中断举水。在这里,使用微流体技术模拟树木中的木质部容器,我们发现当水在具有超亲水表面和端壁凹坑的人造容器中上升时,气泡会自发形成。与传统观点相反,我们证明了气泡与木质部的端壁结构共同帮助水上升到连续水柱无法达到的水平。尽管存在大量气泡,但即使在压力梯度较小的情况下,水上升仍会持续。结果可能为高等植物水分运动提供新的解释。

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