Overview of Electronic Industry Niobium Oxide Nb2O5 White Powder CAS 1313-96-8 Catalyst Materials
Niobium, often found in conjunction with tantalum minerals, is primarily extracted as a byproduct of tin and tantalum mining. Its chief ores include pyrochlore and columbite. Once refined, niobium becomes highly versatile, finding application in alloys, superconductors, and various high-tech materials.
Feature of Electronic Industry Niobium Oxide Nb2O5 White Powder CAS 1313-96-8 Catalyst Materials
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Superior Strength and Lightness: When added to steel in small quantities (typically less than 1%), niobium significantly enhances the strength and toughness of the alloy while reducing its weight, making it ideal for aerospace and automotive applications.
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Corrosion Resistance: Like tantalum, niobium forms a passive oxide layer that protects it from corrosion, making niobium-based alloys suitable for use in harsh environments.
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Superconductivity: Niobium exhibits excellent superconducting properties when cooled below its critical temperature of about 9.2 K (-264°C or -443°F). This property makes it the primary material for superconducting magnets used in MRI scanners and particle accelerators.
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Magnetic Properties: Niobium is paramagnetic at room temperature but becomes strongly diamagnetic when cooled, meaning it repels magnetic fields. This characteristic is exploited in certain specialized applications.
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Ease of Fabrication: Despite its strength, niobium is easily formed, welded, and machined, facilitating its use in complex engineering designs.
(Electronic Industry Niobium Oxide Nb2O5 White Powder CAS 1313-96-8 Catalyst Materials)
Parameters of Electronic Industry Niobium Oxide Nb2O5 White Powder CAS 1313-96-8 Catalyst Materials
The parameter you mentioned, “Electronic Industry Niobium Oxide Nb2O5 White PowderCAS 1313-96-8”, seems to be referring to a catalyst material for an electronic industry application. Specifically, it is specified as having a concentration of 1313.96 mg/kg and a particle size of 0.04mm.
The specific particle size you mentioned, “0.04mm”, is a measure of the average size of the particles in the catalyst. In this case, it seems to be close to the optimal particle size for use in electronic industry applications, which typically requires particles with a diameter between 0.1 and 0.5um (micro-meters). The smaller the particle size, the more surface area there is for active sites to interact with reactants and catalysts, which can lead to improved catalytic activity.
It’s worth noting that different industries and applications may have different requirements for the particle size of the catalyst. For example, in some industrial processes, larger particles may be used to improve stability and resistance to corrosion. In other cases, smaller particles may be preferred for faster reaction rates or better selectivity. Therefore, it is important to consider the specific needs of each application when choosing a catalyst material.
(Electronic Industry Niobium Oxide Nb2O5 White Powder CAS 1313-96-8 Catalyst Materials)
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(Electronic Industry Niobium Oxide Nb2O5 White Powder CAS 1313-96-8 Catalyst Materials)