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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Osmotic contribution to the flow-driven tube formation of copper-phosphate and copper-silicate chemical gardens
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Osmotic contribution to the flow-driven tube formation of copper-phosphate and copper-silicate chemical gardens

机译:渗透到铜 - 磷酸铜和铜 - 硅酸盐化工花园的流动管形成的渗透贡献

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摘要

We have produced hollow copper-containing precipitate tubes using a flow-injection technique, and characterized their linear and volume growth. It is shown that the ratio of the volume increase rate to that of pumping is constant independent of the chemical composition. It is also found that osmosis significantly contributes to the tube growth, since the inward flux of chemical species dominates during the precipitate pattern formation. The asymmetric hydrodynamic field coupled with the inherent concentration and pH gradients results in different particle morphology on the two sides of the precipitate membrane. While the tubes have a smooth outer surface, the inner walls are covered with nanoflowers for copper phosphate and with nanoballs for copper silicate.
机译:我们使用流动注射技术生产了含空心铜沉淀管,并表征其线性和体积生长。 结果表明,体积增加率与泵送的比率与化学成分无关。 还发现渗透性显着导致管生长,因为化学物种的内向通量在沉淀图案形成过程中占主导地位。 与固有浓度和pH梯度偶联的不对称流体动力学场导致沉淀膜的两侧的不同颗粒形态。 当管子具有光滑的外表面时,内壁被纳米割草覆盖着磷酸铜,并且用纳米铜硅酸盐覆盖。

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    Univ Szeged Dept Phys Chem &

    Mat Sci Rerrich Bela ter 1 H-6720 Szeged Hungary;

    Univ Szeged Dept Phys Chem &

    Mat Sci Rerrich Bela ter 1 H-6720 Szeged Hungary;

    Univ Szeged Dept Phys Chem &

    Mat Sci Rerrich Bela ter 1 H-6720 Szeged Hungary;

    Univ Szeged Dept Phys Chem &

    Mat Sci Rerrich Bela ter 1 H-6720 Szeged Hungary;

    Univ Szeged Dept Appl &

    Environm Chem Rerrich Bela ter 1 H-6720 Szeged Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;化学;
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