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Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive  CAS 1313-27-5 for Catalyst

Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst

2024-05-06
in Chemicals&Materials
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Overview of Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst

Metal powder is a common form of metal that has been processed into fine particles, ranging from a few micrometers to over 100 microns in diameter. It plays a crucial role in various industrial applications due to its unique properties and versatility.

Features of Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst

Physical Characteristics

Particle Size: Ranging from nanometers to hundreds of micrometers, the size distribution significantly influences the powder’s flowability, packing density, and sintering behavior.

Shape: Particles can be spherical, irregular, flake-like, or dendritic, each shape affecting the final product’s mechanical properties and surface finish.

Purity: Depending on the production method, metal powders can achieve high levels of purity, critical for applications like electronics and aerospace where impurities can degrade performance.

Density: While less dense than their solid counterparts due to the presence of air between particles, metal powders can be densely packed during processing to approach the density of the solid metal.

Chemical Properties

Reactivity: Some metal powders, particularly aluminum and titanium, are highly reactive with air and moisture, necessitating careful handling and storage under inert atmospheres or vacuum.

Oxidation: Exposure to air can lead to surface oxidation, forming a passive layer that affects sintering and other processes. This can be managed through surface treatment or use of protective atmospheres.

Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive  CAS 1313-27-5 for Catalyst

(Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst)

Parameters of Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst

Molybdenum oxide, also known as MoO3 with a chemical formula of MoO3 and a CAS number of 1313-27-5, is a highly sought-after material in the chemical industry due to its exceptional properties and versatile applications, particularly as a catalyst. With a minimum purity level of 99.7%, this high-quality product ensures optimal performance in various industrial processes.

Molybdenum oxide is derived from the element molybdenum, which is a transition metal found naturally in many minerals. It is renowned for its unique ability to enhance catalytic activity, stability, and selectivity in numerous chemical reactions. This property makes it a critical component in catalyst formulations for industries like petrochemicals, automotive exhaust systems, and even electronics manufacturing.

In the petrochemical sector, molybdenum oxide is used as a promoter in the production of high-performance catalysts for hydrodesulfurization and hydrogenation reactions, helping to reduce sulfur content in crude oil and improve the efficiency of refining processes. Its presence improves the catalyst’s resistance to poisoning, ensuring longer service life and reduced environmental impact.

In the automotive industry, molybdenum oxide plays a crucial role in the development of exhaust catalysts, where it helps convert harmful pollutants like carbon monoxide and nitrogen oxides into less harmful substances like carbon dioxide and water vapor. This contributes to cleaner combustion and compliance with stringent emissions regulations.

Electronics manufacturing employs molybdenum oxide in thin-film technologies, where it acts as a dopant or a dielectric material, improving the performance and reliability of electronic devices. Its high thermal stability and electrical resistivity make it an ideal choice for various semiconductor applications.

The 99.7% purity grade of molybdenum oxide ensures that the final products derived from it meet strict quality standards, resulting in consistent and reliable performance across different industries. The absence of impurities minimizes catalyst deactivation and enhances the overall efficiency of the catalytic process.

Factory Supply Molybdenum Oxide, being competitively priced, offers manufacturers an efficient and cost-effective solution to incorporate this valuable material into their operations. The company behind this product prides itself on providing reliable supply chain management, ensuring timely delivery and customer satisfaction.

In summary, Molybdenum oxide (CAS 1313-27-5) with a minimum purity of 99.7% is a highly sought-after catalyst component due to its exceptional catalytic properties, stability, and adaptability across multiple industries. Its applications range from petrochemicals and automotive exhaust systems to electronics manufacturing, making it an essential ingredient in the modern industrial landscape. Factory Supply’s competitive pricing and commitment to quality make it a trusted partner for businesses looking to enhance their processes and meet stringent performance requirements.

Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive  CAS 1313-27-5 for Catalyst

(Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst)

FAQs of Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst


Q1. What is Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst, and how is it made?
Metal powder consists of fine metallic particles that have been processed from larger metal pieces. Common production methods include atomization, where molten metal is sprayed into tiny droplets that solidify into powder; chemical reduction, which converts metal compounds into elemental metal powders; and mechanical processes such as grinding.
Q2. Why are metal powders used instead of solid metals in manufacturing?
Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst offer several advantages, including the ability to create complex shapes through processes like powder metallurgy and additive manufacturing without needing further machining. They also allow for the production of porous or composite materials, and can result in less material waste.
Q3. Are all metal powders the same, or do they vary in composition and properties?
Metal powders can vary greatly depending on the base metal or alloy, particle size, shape, and purity. Different compositions suit specific applications, from iron and steel powders for structural components to titanium and aluminum powders for lightweight, high-strength parts.
Q4. How does particle size affect the performance of Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst?
Particle size influences the flowability, packing density, and sintering properties of Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst. Finer powders generally have a higher surface area, which can enhance reactions or bonding during sintering but may also increase the risk of agglomeration or require special handling due to dustiness.
Q5. What safety precautions should be taken when handling metal powders?
Given the potential for fire, explosion, and respiratory hazards, appropriate safety measures include using personal protective equipment (PPE) such as respirators and gloves, storing powders in a dry, cool, and controlled environment, avoiding sparks and open flames, and ensuring adequate ventilation to minimize dust accumulation.
Q6. Can Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst be recycled or reused?
Yes, many Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst can be reclaimed and recycled, either directly back into the production process or after suitable treatment. Recycling helps reduce waste and raw material costs.
Q7. How does Factory Supply Molybdenum Oxide MoO3 99.7%min Competitive CAS 1313-27-5 for Catalyst contribute to sustainable manufacturing practices?
By enabling efficient use of materials through near-net shape production, minimizing waste, and allowing for the recycling of scrap and unused powder, metal powder technologies support sustainability goals. Additionally, advancements in additive manufacturing using metal powders can lead to lighter, more energy-efficient products.
Q8. What are some common applications of metal powders in daily life?
Metal powders are used in a wide range of everyday items, from car engine parts and bicycle components made through powder metallurgy to the coatings on kitchen appliances for durability and corrosion resistance. They’re also found in electronic devices, batteries, and even some medical implants.

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