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在垂直受限几何结构中生长的化学花园里,向下的指状生长伴随着管子向上生长。

Downward fingering accompanies upward tube growth in a chemical garden grown in a vertical confined geometry.

作者信息

Ding Yang, Gutiérrez-Ariza Carlos M, Zheng Mingchuan, Felgate Amy, Lawes Anna, Sainz-Díaz C Ignacio, Cartwright Julyan H E, Cardoso Silvana S S

机构信息

Department of Chemical Engineering and Biotechnology, West Cambridge Site, University of Cambridge, Philippa Fawcett Drive, Cambridge CB3 0AS, UK.

Instituto Andaluz de Ciencias de la Tierra, Consejo Superior de Investigaciones Científicas-Universidad de Granada, Avenida de las Palmeras, 4, E-18100 Armilla, Granada, Spain.

出版信息

Phys Chem Chem Phys. 2022 Jul 27;24(29):17841-17851. doi: 10.1039/d2cp01862d.

Abstract

Chemical gardens are self-assembled structures of mineral precipitates enabled by semi-permeable membranes. To explore the effects of gravity on the formation of chemical gardens, we have studied chemical gardens grown from cobalt chloride pellets and aqueous sodium silicate solution in a vertical Hele-Shaw cell. Through photography, we have observed and quantitatively analysed upward growing tubes and downward growing fingers. The latter were not seen in previous experimental studies involving similar physicochemical systems in 3-dimensional or horizontal confined geometry. To better understand the results, further studies of flow patterns, buoyancy forces, and growth dynamics under schlieren optics have been carried out, together with characterisation of the precipitates with scanning electron microscopy and X-ray diffractometry. In addition to an ascending flow and the resulting precipitation of tubular filaments, a previously not reported descending flow has been observed which, under some conditions, is accompanied by precipitation of solid fingering structures. We conclude that the physics of both the ascending and descending flows are shaped by buoyancy, together with osmosis and chemical reaction. The existence of the descending flow might highlight a limitation in current experimental methods for growing chemical gardens under gravity, where seeds are typically not suspended in the middle of the solution and are confined by the bottom of the vessel.

摘要

化学花园是由半透膜促成的矿物沉淀物自组装结构。为了探究重力对化学花园形成的影响,我们研究了在垂直的赫勒-肖盒中由氯化钴颗粒和硅酸钠水溶液生长而成的化学花园。通过摄影,我们观察并定量分析了向上生长的管状物和向下生长的指状物。在之前涉及三维或水平受限几何结构中类似物理化学系统的实验研究中未观察到后者。为了更好地理解实验结果,我们利用纹影光学对流动模式、浮力和生长动力学进行了进一步研究,同时用扫描电子显微镜和X射线衍射对沉淀物进行了表征。除了上升流以及由此产生的管状细丝沉淀外,还观察到了一种此前未报道的下降流,在某些条件下,下降流伴随着固体指状结构的沉淀。我们得出结论,上升流和下降流的物理过程均受浮力以及渗透和化学反应的影响。下降流的存在可能凸显了当前在重力作用下生长化学花园的实验方法的局限性,在这些实验中,种子通常不会悬浮在溶液中间,而是受容器底部限制。

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