Shandong Jiurunfa Chemical Technology Co., Ltd. manager@chemical-sales.com 86-153-18854848
Light-burned magnesium oxide, also known as caustic calcined magnesia, is produced by calcining magnesite (MgCO₃) at temperatures between 700-900°C. Unlike dead-burned magnesia (calcined at temperatures above 1000°C), light-burned magnesium oxide typically exhibits excellent reactivity. This versatile material finds applications across multiple industries including ceramics, enamel production, refractory crucibles and bricks manufacturing. It serves as a polishing agent, binder, filler in coatings and paper products, as well as an accelerator and activator in chloroprene and fluorine rubber production.
In pharmaceutical applications, light-burned magnesium oxide functions as an antacid and mild laxative for treating conditions like hyperacidity, gastric ulcers, and duodenal ulcers. Within the chemical industry, it serves as a catalyst and raw material for magnesium salt production.
Light-burned magnesium oxide typically exists as fine powder, which presents numerous challenges during transportation, storage, and application. Dust dispersion not only causes environmental pollution but also increases material loss. Furthermore, powdered magnesium oxide proves difficult to use directly in certain industrial applications, such as serving as a slag conditioner in steelmaking processes. Pelletizing light-burned magnesium oxide offers significant advantages:
Roller press pelletizers represent the ideal equipment for light-burned magnesium oxide pelletization, capable of producing qualified pellets regardless of raw material purity. With their powerful compression capability and stable performance, these machines ensure pellet strength and quality.
The dry pelletizing process for light-burned magnesium oxide, conducted with near-zero moisture content, offers notable economic advantages. This method has low moisture content requirements for raw materials, accommodates dry materials from various sources, and imposes no special demands on particle size distribution. These characteristics have made dry pelletizing technology increasingly prominent in the magnesium oxide industry.
In roller press systems, fine magnesium oxide particles are compressed under sufficiently high pressure to form pellets with adequate strength. This process can operate independently or combine with other techniques, such as soda activation processes, to produce magnesium oxide pellets with specific properties.
The primary production process for light-burned magnesium oxide pellets includes:
Roller speed and pressure levels critically influence pellet quality. Given the stringent quality requirements for light-burned magnesium oxide pellets, high-pressure pelletizers are typically employed.
Light-burned magnesium oxide pellets boast broad application prospects, primarily including:
Producing qualified pellets requires high-pressure pelletizing equipment. Several factors influence pelletizing effectiveness:
Pellet density depends on magnesium oxide type and compression pressure among other factors. Generally, density is influenced by:
While theoretically any particle size can be pelletized, uniform particle size distribution yields better results. Excessively coarse or fine particles may compromise pellet strength and density. Typically, finer particles improve compaction but may generate dust, requiring careful size selection based on specific conditions.
Typically, light-burned magnesium oxide pellets form without binders through high-pressure compaction. However, specific applications may require binders to enhance strength or modify properties. Common options include: