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Bola de óxido de magnesio

Magnesium Oxide Ball: An OverviewMagnesium oxide (MgO) balls are spherical or near-spherical forms of magnesium oxide, a compound widely used in various industrial, chemical, and scientific applications. Magnesium oxide itself is a white, hygroscopic solid that is highly stable and possesses excellent thermal, electrical, and chemical properties. When shaped into balls, MgO becomes a versatile material with specific advantages in terms of handling, performance, and application. Composition and PropertiesMagnesium oxide is an inorganic compound composed of magnesium and oxygen. It is typically produced through the calcination of magnesium carbonate or magnesium hydroxide, resulting in a high-purity material. MgO balls are manufactured by compressing or sintering powdered magnesium oxide into spherical shapes, often with controlled density and porosity.Key properties of magnesium oxide balls include:- High Thermal Stability: MgO has an exceptionally high melting point (approximately 2,800°C or 5,072°F), making it suitable for high-temperature applications.- Chemical Inertness: MgO is resistant to many chemicals, including acids and alkalis, ensuring durability in harsh environments.- Electrical Insulation: Magnesium oxide is an excellent electrical insulator, making it ideal for use in electrical and electronic components.- Low Thermal Conductivity: While MgO is thermally stable, it has relatively low thermal conductivity, which can be advantageous in certain insulation applications.- Mechanical Strength: Sintered MgO balls exhibit good mechanical strength and wear resistance, ensuring longevity in demanding conditions. ApplicationsMagnesium oxide balls are utilized in a wide range of industries due to their unique properties. Some of the key applications include:1. Refractory Materials: MgO balls are used in the production of refractory linings for furnaces, kilns, and other high-temperature equipment. Their thermal stability and resistance to thermal shock make them ideal for such applications.2. Electrical Insulation: In the electrical and electronics industry, MgO balls are used as insulating components in heating elements, cables, and other devices where high-temperature insulation is required.3. Chemical Processing: Due to their chemical inertness, MgO balls are employed in chemical reactors and vessels where they can withstand corrosive environments.4. Environmental Protection: Magnesium oxide is used in flue gas desulfurization (FGD) processes to remove sulfur dioxide from industrial emissions. MgO balls can be used in such systems to enhance efficiency and durability.5. Scientific Research: In laboratories, MgO balls are used in high-temperature experiments and as a component in specialized equipment. AdvantagesThe spherical shape of MgO balls offers several advantages over other forms of magnesium oxide:- Uniformity: The spherical shape ensures consistent performance in applications where even distribution or packing is critical.- Ease of Handling: Balls are easier to handle, transport, and install compared to powdered or irregularly shaped MgO.- Controlled Porosity: The manufacturing process allows for precise control over the porosity and density of the balls, tailoring them to specific applications. ConclusionMagnesium oxide balls are a highly versatile and reliable material with exceptional thermal, chemical, and electrical properties. Their spherical form enhances their usability and performance in a variety of industrial and scientific applications. Whether used in high-temperature environments, chemical processing, or electrical insulation, MgO balls provide a durable and efficient solution for demanding conditions.

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  • Óxido de magnesio

    Óxido de magnesio

    Su clasificación: Productos de nutrición vegetal
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    Tiempo de liberación: 2025-08-26 13:29:05
    MgO(% mín.)SiO2(% máx.)cao(% máx.)Estallido(% máx.)lo mas importante(% máx.)LOI(% máx.)PHTamaño (≥90%)Polvo(malla)Arena Granular(mm)943.53.01.00,53.58-116080120200300-3250-0.3923.53.01.00,53.58-110,3-0,8904.53.51.00,55.08-110,3-2,0858.041.51.09.08-111.0-2.06515.06.01.51.0288-112.0-4.06015.06.01.51.0308-112.0-5.0 *Es posible hacerlo a medida¿Qué es el óxido de magnesio?El óxido de magnesio se produce mediante la calcinación de magnesita (MgCO₃) o mediante procesos basados ​​en agua de mar. El material resultante se puede procesar en polvos, gránulos o bolas esféricas para diversos usos finales....

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