Emmanuel Michael, Lantos Emese, Horváth Dezső, Tóth Ágota
Department of Physical Chemistry and Materials Science, University of Szeged, Rerrich Béla tér 1., Szeged, H-6720, Hungary.
Department of Applied and Environmental Chemistry, University of Szeged, Rerrich Béla tér 1., Szeged, H-6720, Hungary.
Soft Matter. 2022 Feb 23;18(8):1731-1736. doi: 10.1039/d1sm01808f.
We show that a chemical garden can be developed from an alkaline metal precipitate using a flow-driven setup. By injecting sodium phosphate solution into lithium chloride solution from below, a liquid jet appears, on which a precipitate grows forming a structure resembling a hydrothermal vent. The precipitate column continuously builds upward until a maximum height is reached. The vertical growth then significantly slows down while the tube diameter still increases. The analysis of the growth profiles has revealed a linear dependence of volume growth rate on the injection rate, hence yielding a universal growth profile. The expansion in diameter, localized at the tip of the structure, scales with a power law suggesting that the phenomenon is controlled by both diffusion and convection.
我们表明,使用流动驱动装置可以从碱金属沉淀物中培育出化学花园。通过从下方将磷酸钠溶液注入氯化锂溶液中,会出现一股液体射流,沉淀物在其上生长,形成类似热液喷口的结构。沉淀柱不断向上生长,直到达到最大高度。然后垂直生长显著减缓,而管直径仍在增加。对生长曲线的分析揭示了体积生长速率与注入速率呈线性关系,从而得出通用的生长曲线。结构顶端的直径扩张遵循幂律,这表明该现象受扩散和对流共同控制。