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New energy & Semiconductor Industry

With the increasing global demand for renewable energy, investment and development in the new energy industry continue to grow. The rapid development of electric vehicles, smart grids, energy storage, and other fields has also driven continuous innovation and progress in the new energy industry;


Reactors are widely used in the new energy industry. In the production process of lithium batteries, they are used for preparing positive and negative materials such as ternary precursors, materials for negative electrodes and electrolytes. In the production of solar cells, they can be used for preparing the paste required for solar cell panels and undergoing processes such as solidification and sintering. In the field of biomass energy, they can be used for pre-processing of biomass raw materials, biological fermentation, synthesis, and purification processes. In the field of fuel cells, they can be used for preparing electrolyte membranes and electrode materials for fuel cells.

 

In the manufacturing process of lithium battery materials, separation and purification are very important links. The JTNB agitated nutsche filter dryer can effectively remove impurities and solvents in the electrolyte through its special filtering system and washing device, ensuring the purity and quality of the electrolyte. The active material of the lithium battery electrode can also effectively remove impurities and moisture through the filter washing and drying machine to ensure the high quality and stability of the electrode active material.

 

The Supervapor heat pump evaporation system can separate water and organic substances from the solvent in the lithium battery production process and achieve recycling and reuse of the solvent. In the lithium battery recycling process, it is necessary to concentrate the solution in discarded lithium batteries to facilitate further separation and recycling of valuable materials. This can not only reduce solvent consumption and lower costs, but also reduce environmental pollution.

 

1
Multifunctional Application of Reactors
Used in the entire process of lithium battery positive/negative electrode material preparation, solar cell paste solidification and sintering, biomass energy raw material pre-treatment, fermentation and synthesis, and fuel cell electrolyte membrane preparation.
2
Purification by the Three-in-One Machine
Effectively removes electrolyte impurities, solvents, and moisture from electrode active materials through a special filtration and washing system, ensuring material purity and stability.
3
Heat Pump Evaporation and Solvent Recovery
Achieves separation, recovery, and recycling of water and organic substances in solvents during lithium battery production. In waste battery treatment, it concentrates the solution to recover valuable materials, reducing solvent consumption and environmental pollution.

In the semiconductor industry, high-purity chemicals such as acids, alkalis, solvents, etc., require high purity and precision requirements for the materials of storage containers and sealing properties. Jhenten high-purity chemical storage tanks use 316L electrolytic polishing, lined with PTFE, while strictly controlling the sealing performance of the tanks and particle requirements to prevent chemical leakage and air impurities from entering the tanks.

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High-Purity Material Structure
The storage tank uses 316L electrolytic polishing, lined with PTFE, meeting the material requirements for storing high-purity chemicals.
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Sealing and Contamination Prevention Design
Strict control of the tank's sealing performance and particle contamination to prevent chemical leakage and impurities from contaminating the contents.

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