Barium(2+) dibromate
BaBr2O6
barium(2+) dibromate
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Identification
- CAS Number
- 13967-90-3
- EC Number
- 237-750-5
- UN Number
- 2719
- PubChem CID
- 61706
Physical-chemical properties
- Molecular Formula
- BaBr2O6
- Molar Mass
- 393.13 g/mol
- IUPAC Name
- barium(2+) dibromate
Chemical Identifiers
- InChI
- InChI=1S/Ba.2BrHO3/c;2*2-1(3)4/h;2*(H,2,3,4)/q+2;;/p-2
- InChI Key
- VEASZGAADGZARC-UHFFFAOYSA-L
Overview
Barium(2+) dibromate (CAS 13967-90-3) is an inorganic oxidizing salt with strong oxidative properties and high solubility in water. This barium-based compound, with the molecular formula BaBr2O6 and a molecular weight of 393.13 g/mol, represents a specialized oxidizing agent used in various industrial applications. The compound consists of a barium cation paired with two bromate anions, creating a crystalline structure that exhibits characteristic properties of both barium salts and bromate compounds. Its classification under ADR Class 5.1 confirms its nature as an oxidizing substance, requiring careful handling and storage protocols. The oxidizing properties of barium dibromate make it particularly valuable in chemical synthesis and analytical chemistry applications. Like other oxidizing agents in this family, including barium(2+) dinitrate, it can facilitate various redox reactions under controlled conditions. The compound's solubility characteristics enable its use in aqueous systems where precise oxidation control is required. Primary industrial applications include specialized chemical synthesis processes where controlled oxidation is essential, analytical chemistry procedures requiring reliable oxidizing agents, and certain manufacturing processes in the fine chemicals sector. The compound's consistent performance and predictable reaction characteristics make it suitable for applications demanding high purity and reliability. Safety considerations are paramount when handling this oxidizing agent, as it can enhance the combustion of organic materials and may pose risks if not properly managed according to established safety protocols for Class 5.1 substances. OYSI maintains availability of barium(2+) dibromate for qualified industrial customers requiring this specialized oxidizing compound for their technical applications.
Safety & Classification
No Hazard Classification
This substance is not classified as hazardous according to CLP Regulation (EC) No 1272/2008.
Transport (ADR)
| UN Number | 2719 |
| ADR Class | 5.1 |
| Packing Group | II |
| Tunnel Code | E |
| Proper Shipping Name | Bariumbromat |
| Marine Pollutant | No |
Frequently Asked Questions
What is barium(2+) dibromate?
Barium(2+) dibromate is an inorganic chemical compound with the molecular formula BaBr2O6 and CAS number 13967-90-3. This compound consists of a barium cation (Ba2+) combined with two bromate anions (BrO3-), forming a salt with a molecular weight of 393.13 g/mol. It belongs to the category of metal bromates and exhibits oxidizing properties due to the presence of bromate groups in its structure.
What are the physicochemical properties of barium(2+) dibromate?
Barium(2+) dibromate is a crystalline solid compound that typically appears as white or colorless crystals. The compound has a molecular weight of 393.13 g/mol and contains barium in the +2 oxidation state combined with bromate anions. Like most bromate salts, it is likely to be soluble in water and exhibits oxidizing characteristics. The exact solubility, melting point, and other specific physical properties would require detailed technical data sheets for precise values.
What is barium(2+) dibromate used for?
Barium(2+) dibromate is primarily used as an oxidizing agent in various chemical processes and analytical applications. Its oxidizing properties make it suitable for specialized chemical syntheses, laboratory reagent applications, and potentially in certain industrial oxidation reactions. The compound may also find use in research and development activities where controlled oxidation is required. Specific applications depend on the purity grade and the requirements of the particular industrial or laboratory process.
How to handle barium(2+) dibromate safely?
Barium(2+) dibromate should be handled with appropriate personal protective equipment including chemical-resistant gloves, safety goggles, and lab coats. Work in well-ventilated areas or under fume hoods to avoid inhalation of dust particles. As an oxidizing compound, keep it away from combustible materials and reducing agents. Use proper laboratory techniques to minimize dust generation and avoid direct skin contact. Always wash hands thoroughly after handling and follow standard chemical safety protocols in the workplace.
How to store barium(2+) dibromate correctly?
Barium(2+) dibromate should be stored in a cool, dry, well-ventilated area away from incompatible materials. As an oxidizing agent, keep it separated from flammable substances, reducing agents, and organic materials. Store in tightly closed original containers to prevent moisture absorption and contamination. Ensure storage areas comply with local regulations for oxidizing substances and maintain proper inventory records. Keep away from heat sources and direct sunlight to maintain product stability and prevent decomposition.
What to do in case of contact with barium(2+) dibromate?
In case of skin contact with barium(2+) dibromate, immediately remove contaminated clothing and wash the affected area thoroughly with soap and water for at least 15 minutes. For eye contact, flush immediately with clean water for 15 minutes while holding eyelids open. If inhaled, move the person to fresh air immediately. In case of ingestion, do not induce vomiting and seek immediate medical attention. Always consult a physician if symptoms develop or persist after exposure.
How to dispose of barium(2+) dibromate appropriately?
Barium(2+) dibromate must be disposed of according to local, national, and EU waste regulations as it contains barium compounds. Contact licensed waste disposal companies specialized in chemical waste management for proper treatment. Do not dispose of in regular trash, down drains, or into the environment. The waste should be classified according to the European Waste Catalogue and handled by authorized facilities capable of treating oxidizing chemical waste containing heavy metals like barium.
How to transport barium(2+) dibromate?
Barium(2+) dibromate is classified under ADR Class 5.1 (oxidizing substances) with Packing Group II, indicating it presents moderate danger during transport. It must be packaged in UN-approved containers suitable for oxidizing materials and labeled with appropriate hazard placards. Transport documentation must include proper shipping names and hazard classifications. Only trained personnel should handle the transport, and vehicles must comply with ADR regulations for Class 5.1 substances. Segregation from incompatible materials during transport is mandatory.
Is barium(2+) dibromate subject to particular regulations?
Barium(2+) dibromate is subject to standard EU chemical regulations including REACH registration requirements and CLP classification obligations. While not currently listed as a Substance of Very High Concern (SVHC), it must comply with general chemical safety regulations due to its barium content and oxidizing properties. Suppliers must provide Safety Data Sheets and ensure proper classification and labeling. Users should verify compliance with local workplace exposure limits and environmental regulations applicable to barium compounds.
Where to buy barium(2+) dibromate in Europe?
Barium(2+) dibromate is available through OYSI, a specialized European distributor of technical chemicals serving industrial and laboratory customers across Europe. OYSI provides quality chemical products with proper documentation, safety data sheets, and regulatory compliance support. As a professional chemical supplier, OYSI ensures reliable supply chains and technical support for customers requiring barium(2+) dibromate for their industrial processes or research applications. Contact OYSI directly for availability, specifications, and ordering information.
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Data Sources
Classification per CLP Regulation (EC) No 1272/2008. Data from ECHA and PubChem.