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Safe Storage and Transportation Specification
of Electrolytic Copper
1. Introduction
Electrolytic Copper is widely used in various industries as an important raw material for chemical production. However, due to its special physical and chemical properties, electrolytic copper has certain safety risks during storage and transportation. In order to ensure the safe storage and transportation of electrolytic copper, this article aims to explore its related safety specifications and operating requirements.
2. the nature and harm of electrolytic copper
electrolytic copper is a purplish red, shiny metal with good electrical and thermal conductivity. However, electrolytic copper easily reacts with oxygen, carbon dioxide and water vapor in the air to generate basic copper carbonate in a humid environment, resulting in a green surface. In addition, electrolytic copper reacts with oxygen in the air at high temperatures to form copper oxide, causing a fire. Therefore, when storing and transporting electrolytic copper, special attention should be paid to its safety.
3. electrolytic copper safe storage specification
1. Storage environment requirements: electrolytic copper should be stored in a dry, ventilated, dark environment, avoid contact with humidity, high temperature, open flame, etc.
2. Requirements for storage facilities: The warehouse for storing electrolytic copper shall meet the safety requirements of fire prevention, lightning protection and anti-static, and be equipped with corresponding fire fighting equipment and emergency rescue equipment.
3. Stacking specification: Electrolytic copper should be stacked neatly and kept at a certain distance to avoid excessive stacking and excessive pressure at the bottom. At the same time, avoid mixing with acidic, alkaline and other chemicals.
4. Management system: Establish a sound storage management system for electrolytic copper, including records such as storage, delivery and inventory, to ensure that the accounts are consistent.
4. electrolytic copper safety transport specification
1. transport vehicle requirements: transport electrolytic copper vehicles should have the appropriate qualifications and certificates, in line with fire, lightning protection, anti-static and other safety requirements.
2. Loading specification: Electrolytic copper should be evenly loaded to avoid excessive weight or excessive weight causing unstable driving of the vehicle. At the same time, ensure that the goods are firmly fixed to prevent slipping or rolling during transportation.
3. Transportation route selection: Choose a reasonable transportation route to avoid passing through dangerous areas such as high temperature and open fire. During transportation, the vehicle speed should be kept stable and operations such as sudden braking or sharp turns should be avoided.
4. Requirements for personnel on board: When transporting electrolytic copper, professional personnel on board should be equipped to supervise the safety of goods and the transportation process. Accompanying personnel shall have corresponding safety knowledge and emergency handling ability.
5. emergency treatment measures
During the storage and transportation of electrolytic copper, the following emergency treatment measures should be taken in case of accidents:
1. Fire: In case of fire, fire extinguishers, fire hydrants and other fire fighting equipment should be used immediately to extinguish the fire, and alarm and start the emergency plan at the same time.
2. Leakage: In case of leakage of electrolytic copper, special tools shall be used for cleaning to avoid direct contact with the leakage. At the same time, the leakage area shall be isolated to prevent personnel from entering by mistake.
6. conclusion
electrolytic copper as an important raw material for chemical production should strictly abide by the relevant safety regulations and requirements in the process of storage and transportation. By strengthening the management system, improving personnel safety awareness, and improving emergency plans, the safety risks in the storage and transportation of electrolytic copper can be effectively reduced to ensure production safety.