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Bismuth oxide

Bismuth oxide, also known as bismuth trioxide, is an inorganic compound with the molecular formula Bi2O3. It is one of the most important compounds of bismuth. Bismuth trioxide can be obtained from natural bismuth ores (a type of mineral), but its main source is usually as a byproduct of copper or lead smelting, or by directly burning bismuth (producing a blue flame). Bismuth oxide can be used in pyrotechnics such as green and white flash powders, and in the pharmaceutical industry for making stomach medications, electronic ceramics, aerospace electronic components, etc.
  • Commodity name: Bismuth oxide

Product Classification:

  • Product Description
  • National Fireworks and Firecrackers Product Quality Supervision and Inspection Center Inspection Report
    No: WAY20200632
    Sample (Product) Name Bismuth Oxide Trademark /
    Specification Model /
    Sample (Product) Level —— Sample (Product) Category ——
    Quality Level Premium Appearance and Condition Yellow powdery
    Entrusting Unit (Person) Liuyang Chengxiang Chemical Co., Ltd. Production Unit Address (Nominal) /
    Entrusting Unit (Person) Contact Information Chen Chujun/13907498113 Production Unit (Person) Contact/Method /
    Distribution Unit (Person) / Distribution Unit (Person) Address /
    Sample Quantity 200g Sample (Product) Base /
    Production Date 2024/4/28 Collection (Sampling) Location National Flower Inspection Center
    Sample Arrival Date 2024/5/18 Delivery (Sampling) Personnel Chen Chujun/Li Shengke
    Inspection Date 2024-05-18~2024-05-19 Inspection Environment Natural Environment
    Inspection and Determination Basis GB/T2142-2019 'Qualitative Detection Method for Prohibited and Restricted Agents in Fireworks and Firecrackers'
    Inspection Items Lead Qualitative Measurement Unit /
    Measured Result Not Detected Bi2O3% >99.9
    Usage Description Bismuth oxide can be used for sounders, green flash, white flash, etc.

Key words:

Firecrackers, fireworks, chemical raw material production, chemical raw material storage

FAQ


Oxidant stability and safety issues

Easy to decompose: Many oxidants are easy to decompose when heated, damp, exposed to light or in contact with other substances, generating heat, gas and even causing an explosion. For example, hydrogen peroxide, hypochlorous acid, etc. will spontaneously decompose under certain conditions, release oxygen, and increase the risk of explosion.
Explosive: some oxidants such as chlorates, nitrates and organic peroxides, etc., after friction, impact, vibration, etc., can easily cause explosion. Therefore, special care is required during storage, transportation and use.
Toxicity and corrosiveness: Some oxidants such as bromine pentafluoride are toxic and pose a threat to human health. At the same time, they may also be corrosive to materials such as metals and damage equipment or containers.

Oxidant reactivity issues

Strong oxidation: oxidant has strong oxidation, can react violently with a variety of substances, and even cause combustion or explosion. For example, they can react violently with inflammables, organics, reducing agents, etc., generating large amounts of heat and gas.
Violent reaction with acid: most oxidants will react violently with acid and even explode. Such as potassium chlorate, benzoyl peroxide, etc. in case of sulfuric acid that explosion. Therefore, these oxidizing agents must avoid contact with acids or alkalis during storage and use.
metathesis reaction: a metathesis reaction may occur between oxidants, resulting in high temperature, combustion and even explosion. For example, nitrite reacts violently when it encounters a stronger oxidant than it.

Oxidant storage and transportation issues

Strict storage requirements: The oxidant needs to be stored in a cool, dry, well-ventilated place, avoiding direct sunlight and high temperature environment. At the same time, different varieties of oxidants should be stored in stacks, and it is strictly prohibited to mix organic combustibles.
High transportation risk: During transportation, the oxidant needs to be especially careful to avoid vibration, friction and impact. At the same time, it is necessary to select appropriate packaging materials and transportation methods to ensure safe transportation.

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