The compacted density of the primary material, as one factor affecting the capacity of lithium-ion batteries, presents a significant challenge. The single-crystal granular form of lithium cobalt oxide can currently achieve a compacted density of 4.2 g/cm³, which is unimaginably high for secondary agglomerates of small particle ternary materials, becoming a "hard spot" in the expansion blueprint of ternary materials.
Lithium cobalt oxide kiln circulation line is an efficient, energy-saving, and environmentally friendly production process, mainly including parts such as the recovery and reuse of kiln gas, the circulation and reuse of solid materials, and the purification treatment of kiln gas.
In lithium cobalt oxide kilns, the gas and solid materials inside the furnace can be recycled through a circulating system, which reduces energy consumption and enhances production efficiency. Specifically, after purification, the furnace gas can be reintroduced for reaction, thus conserving energy. The solid materials are circulated within the furnace via a recycling conveying system, avoiding waste and energy loss.
The lithium cobalt oxide furnace recycling line utilizes a recycling system to recover and reuse the gas inside the furnace. After purification, the gas can be reintroduced into the furnace for reactions, thereby conserving energy. Specifically, the gas inside the furnace is recovered through the recycling system, treated with processes like dehydration, dust removal, and acid removal, and then reintroduced into the furnace for reactions, thereby achieving the recycling of the gas.
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Positive Pole Kiln Circulation Line Manufacturer






