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Nickel-ceramic composite membranes: Optimization of hydrazine based electroless plating process parameters

机译:镍陶瓷复合膜:基于肼的化学镀工艺参数的优化

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摘要

Based on the experimental investigation, this article addresses optimization of nickel hydrazine electroless plating process parameters for the fabrication of mesoporous nickel-ceramic composite membranes. An inexpensive sintered ceramic support with an average pore size of 275 nm was used for all the experiments. Parametric optimization was experimentally investigated for a wide range of nickel solution concentrations (0.04-0.16 mol/L) and loading ratios (196-393 cm~2/L). Process parameters such as conversion, plating efficiency and membrane morphological parameters such as average thickness, pore size and effective porosity were evaluated. Based on these evaluated parameters, the optimal process parameters have been evaluated as 0.12 mol/L and 393 cm~2/L respectively. In general, it was also observed that hydrazine electroless plating baths are efficient from both processes as well as membrane perspective as they have been observed to provide a maximum selective conversion and PPD of 38% and 98.8% respectively.
机译:在实验研究的基础上,本文探讨了用于制备介孔镍陶瓷复合膜的镍肼化学镀工艺参数的优化。所有实验均使用廉价的平均孔径为275 nm的烧结陶瓷载体。针对各种镍溶液浓度(0.04-0.16 mol / L)和负载比(196-393 cm〜2 / L),通过实验研究了参数优化。评估了工艺参数(例如转化率,镀覆效率)和膜形态参数(例如平均厚度,孔径和有效孔隙率)。基于这些评估参数,最佳工艺参数分别为0.12 mol / L和393 cm〜2 / L。通常,还观察到肼化学镀浴从两种方法以及从膜的角度来看都是有效的,因为已经观察到它们提供最大的选择性转化率和PPD分别为38%和98.8%。

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