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Developments in the Ni–Nb–Zr amorphous alloy membranes

机译:Ni–Nb–Zr非晶态合金膜的研究进展

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摘要

Most of the global H2 production is derived from hydrocarbon-based fuels, and efficient H2/CO2 separation is necessary to deliver a high-purity H2 product. Hydrogen-selective alloy membranes are emerging as a viable alternative to traditional pressure swing adsorption processes as a means for H2/CO2 separation. These membranes can be formed from a wide range of alloys, and those based on Pd are the closest to commercial deployment. The high cost of Pd (USD *31,000 kg-1) is driving the development of less-expensive alternatives, including inexpensive amorphous (Ni60Nb40)100-xZrx alloys. Amorphous alloy membranes can be fabricated directly from the molten state into continuous ribbons via melt spinning and depending on the composition can exhibit relatively high hydrogen permeability between 473 and 673 K. Here we review recent developments in these low-cost membrane materials, especially with respect to permeation behavior, electrical transport properties, and understanding of local atomic order. To further understand the nature of these solids, atom probe tomography has been performed, revealing amorphous Nb-rich and Zr-rich clusters embedded in majority Ni matrix whose compositions deviated from the nominal overall composition of the membrane.
机译:全球大多数H2生产来自烃基燃料,有效的H2 / CO2分离对于提供高纯度H2产品是必需的。氢气选择性合金膜作为传统的变压吸附工艺的一种可行的替代方法正在兴起,作为H2 / CO2分离的一种手段。这些膜可以由多种合金制成,而基于Pd的膜最接近商业应用。 Pd的高成本(31,000 kg-1美元)正在推动廉价替代品的发展,包括廉价的非晶态(Ni60Nb40)100-xZrx合金。非晶态合金膜可以通过熔融纺丝从熔融态直接制成连续的带状,并且根据成分的不同,可以表现出较高的氢渗透性,介于473和673 K之间。在这里,我们回顾这些低成本膜材料的最新发展,特别是在渗透行为,电传输特性以及对局部原子序的理解。为了进一步了解这些固体的性质,已进行了原子探针层析成像,揭示了嵌入大多数Ni基体中的非晶态富Nb和富Zr团簇,其组成与膜的标称整体组成不同。

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