
Pyrotechnic compositions, also known as fireworks, are a special type of chemical mixture that can produce the effects of light, heat, sound, smoke, or gas during combustion. These effects are widely used in celebrations, fireworks displays, military exercises, and many other fields.
The composition of pyrotechnic agents usually includes oxidants, combustibles, adhesives, and other additives. Oxidants are responsible for providing the oxygen required for combustion, combustibles are the fuel for combustion reactions, adhesives are used to ensure that the mixture can form a stable form, and additives are used to adjust the speed, color, sound and other characteristics of combustion.
When designing the formula of pyrotechnic agents, multiple factors need to be considered, including the required combustion effect, safety, stability, and cost. Therefore, the research and development of "pyrotechnical compositions" is a job that requires profound chemical knowledge and professional skills.
Please note that although fireworks performances and fireworks are very popular in many occasions, the use of fireworks agents also requires strict safety regulations and laws to ensure public safety and environmental protection.
The design and manufacturing of pyrotechnic agents is a highly specialized field that requires precise chemical knowledge and technology. Each fireworks effect requires a specific chemical formula and ratio to achieve the desired light, heat, sound, and color. For example, different metal elements will produce flames of different colors when burned, so pyrologists will choose appropriate metal compounds based on the desired color.
In addition to color, pyrotechnic agents can also be designed to produce different sounds and effects. For example, some pyrotechnic agents emit a sharp whistle or explosion sound during combustion, which is usually achieved by adding specific chemicals. In addition, pyrotechnic agents can also be designed to produce a large amount of smoke or specific gases during combustion, which are very useful in stage performances or special effects production.
However, the manufacturing and use of pyrotechnical compositions also come with certain risks. Incorrect formulas or operations may lead to unexpected explosions or fires, therefore, strict safety regulations and operating procedures must be followed in the manufacturing and use of pyrotechnic agents. In addition, the impact of pyrotechnic agents on the environment also needs to be considered, including issues such as exhaust emissions and residue treatment.

Fireworks Medicinal Magnesium
Overall, pyrotechnic agents are a field full of challenges and opportunities. With the advancement of technology and the increasing demand for pyrotechnic effects, research and development of pyrotechnic agents will also continue. In the future, we may see the emergence of more environmentally friendly, safe, and effective pyrotechnic products, adding more color and fun to our lives.

Use bags, metal pail, or paper pail to pack, the underlayer are plastic bag.

Transport Tool: Trucks or containers.

Storage Methods: The storehouse should be ventilated, dry, fire preventing, wet preventing, static preventing and the hermetic goods can be stored for 6 months

Factory direct supply

Particle size and Package Can customized

Strickly quality control system and advanced testing equipments

Good aftersale service.

Magnesium powder products are sold to many countries and regions, such as India, the Netherlands, the United States, Canada, South Korea and have established long-term cooperative relationships with well-known foreign companies such as POSCO and OPTA.
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| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Powder |
SMP358 | Nearly Spherical | >Mg 99% | 0.86-0.92 | 35-80 mesh |
| SMP451 | Nearly Spherical | >Mg 99% | 0.86-0.92 | 45-100 mesh | |
| MP30 | lrregular | >Mg 99% | 0.64-0.73 | 30-80 mesh | |
| MP60 | lrregular | >Mg 99% | 0.64-0.73 | 60-200 mesh | |
| MP150 | lrregular | >Mg 99% | 0.76-0.85 | -150 mesh | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Granules |
MG12 | Particles or spheres | ≥99.5% | - | 12-35 mesh |
| MG20 | Particles or spheres | ≥99.5% | - | 20-80 mesh | |
| MG100 | Particles or spheres | ≥99.5% | - | 100mesh all pass | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Turning Chips |
MS6 | Chips | ≥99.7% | - | 6mesh All pass |
| MS840 | Chips | ≥99.7% | - | 8-40mesh | |
| MS2080 | Chips | ≥99.7% | - | 20-80 mesh | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Alloy Chips |
AZ91D | lrregular | Mg90.43; AI8.9; Zn0.43 | - | 30-80 mesh |
| ZK61 | lrregular | Mg94.46; AI0.0006 Zn5.19 |
- | 30-80 mesh | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnalium Powder |
AMAP50 | lrregular | AI:50±2%; Mg:50±2% | 0.76-0.85 | 60-200 mesh |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesiun Desulphurization Reagent | PSMp1080 | lrregular | ≥Mg 92% | 0.75-0.95 | 2-0.18mm (10mesh~80mesh) |
| Can be produced according to customer specifications | |||||







