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[Chemical Knowledge]:Specification for storage and transport of battery grade lithium carbonate

Safe storage and transportation specifications
for battery-grade lithium carbonate
1. Introduction

With the rapid development of the electric vehicle and renewable energy market, the demand for battery-grade lithium carbonate as a key chemical production raw material continues to grow. However, battery-grade lithium carbonate has certain safety risks during storage and transportation, so it is important to understand and follow relevant safety regulations. This article will detail the safe storage and transportation specifications for battery-grade lithium carbonate.

2. the properties and hazard
of battery-grade lithium carbonate
battery-grade lithium carbonate is an inorganic compound and belongs to dangerous chemicals. It is highly reactive and reacts violently in contact with water, acid and other substances, generating a lot of heat and gas, which may cause a fire or explosion. In addition, battery-grade lithium carbonate is toxic to the human body and may cause irritation and damage to the eyes, skin and respiratory system after exposure.

3. safe storage specifications

1. Storage facilities: Battery-grade lithium carbonate should be stored in a dry, cool, well-ventilated special warehouse, away from fire, heat and direct sunlight. The warehouse floor should be flat, non-slip, and with anti-leakage measures.
2. Storage container: A well-sealed, corrosion-resistant container should be used to store battery-grade lithium carbonate, and ensure that the container is intact to prevent leakage.
3. Storage identification: Obvious hazard identification shall be set on the warehouse and storage container, including chemical name, hazard, emergency measures and other information.
4. Inventory management: Establish a strict inventory management system, regularly check the storage of battery-grade lithium carbonate, ensure that the storage conditions meet the requirements, and timely discover and deal with potential safety hazards.

4. safety transport specification

1. transport vehicles: should be used with dangerous goods transport qualified vehicles for the transport of battery grade lithium carbonate, to ensure that the vehicle in good condition, in line with the relevant standards.
2. Transport packaging: Battery grade lithium carbonate should be packaged with packaging materials that meet the requirements to ensure that the packaging is tight and firm to prevent leakage or damage during transportation.
3. Transport identification: Obvious hazard identification shall be provided on transport vehicles and packaging, including chemical name, danger, emergency measures and other information.
4. Transportation route: Choose a reasonable transportation route to avoid passing through sensitive areas such as densely populated areas and water source protection areas to ensure that the transportation process is safe and controllable.

5. emergency measures

1. Leakage treatment: in case of leakage of battery-grade lithium carbonate, measures should be taken immediately to prevent the leakage from spreading, and special equipment should be used for cleaning and recycling.
2. Fire treatment: in case of fire, fire extinguishing equipment such as dry powder and carbon dioxide shall be used immediately to extinguish the fire, and the police shall be called for help in time.
3. Medical first aid: If any person is unwell after contact with battery-grade lithium carbonate, he or she should be moved to a safe area immediately and appropriate medical first aid measures should be taken.

6. training and management

1. training: relevant staff training on safe storage and transportation of battery-grade lithium carbonate to improve their safety awareness and operational skills.
2. Management: Establish a sound safety management system for battery-grade lithium carbonate, clarify various safety regulations and operating procedures, and ensure that various safety measures are effectively implemented.

7. conclusion

battery grade lithium carbonate as a key raw material for chemical production, there are certain safety risks in the process of storage and transportation. In order to ensure safety, it is necessary to follow the corresponding safe storage and transportation regulations, and take effective emergency measures. By strengthening training and management, the safety awareness and operation skills of relevant staff can be improved to ensure that the storage and transportation process of battery-grade lithium carbonate is safe and controllable.
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