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Continuous Lithium Precipitation Equipment and Lithium Carbonate Production System: Driving the Lithium Industry Forward Efficiently

Oct 13,2025


Continuous Lithium Precipitation Equipment and Lithium Carbonate Production System: Driving the Lithium Industry Forward Efficiently

Against the backdrop of accelerating global energy transition, lithium, as a core strategic resource, continues to see rising demand. Lithium carbonate, a key product in the lithium industry chain, is widely used in lithium-ion batteries, ceramic glazes, pharmaceutical intermediates, and other fields. Its production efficiency and quality directly impact the development of downstream industries. Continuous lithium precipitation equipment and lithium carbonate production systems are the core forces supporting the efficient and high-quality production of lithium carbonate. Their synergistic effect drives the lithium industry toward a new stage of high-quality development.
Compared to traditional batch-type lithium precipitation equipment, it achieves a breakthrough upgrade in terms of technology. From an operational perspective, the continuous lithium precipitation equipment enables the continuous feeding of raw material solution (such as lithium sulfate solution) and precipitant (such as sodium carbonate solution), along with continuous reaction and slurry discharge, eliminating the need for the "feeding - reaction - discharge - cleaning" cycle of batch equipment. This effectively avoids time losses and process fluctuations caused by batch switching.  In terms of parameter control, the equipment is equipped with a high-precision automated control system capable of real-time monitoring and regulation of key indicators such as reaction temperature (typically stabilized at 80-95°C), pH value (controlled within 8.5-9.5), and stirring speed (200-300 rpm). All parameter fluctuations are kept within ±0.5, providing a stable chemical environment for the lithium precipitation reaction.  Additionally, the equipment features a helical flow-guided stirring structure, which enhances material mixing and mass transfer efficiency, increasing the reaction rate by 20%-30% and significantly shortening the production cycle.
With these technological advantages, the continuous lithium precipitation equipment delivers significant benefits to lithium carbonate production. In terms of production efficiency, under the same production capacity scale, the operational time utilization rate of continuous lithium precipitation equipment exceeds that of batch equipment by over 40%, with daily production capacity per production line surpassing 50 tons. Regarding product quality, stable process parameters ensure lithium carbonate purity remains consistently above 99.5%, with particle size distribution standard deviation controlled within 5μm, resulting in significantly better product consistency compared to batch production. In cost control, continuous operation reduces energy consumption from equipment startup and shutdown, improves raw material utilization by 5%-8%, and lowers comprehensive production costs by 12%-15%, providing strong support for enhancing market competitiveness.
Currently, continuous lithium sedimentation equipment and lithium carbonate production systems are advancing toward intelligent and green development. On the equipment side, the widespread application of IoT sensors enables real-time data collection and remote monitoring, while AI algorithms automatically optimize process parameters based on raw material composition changes. On the system side, waste heat recovery devices utilize the residual heat generated during roasting and drying stages for raw material preheating, and treated wastewater is recycled to meet standards, reducing production system energy consumption by 10% and wastewater discharge by 60%. In the future, with ongoing technological advancements, both will further enhance production efficiency and environmental sustainability, providing stable and efficient lithium resource support for the global new energy industry.

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