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The lithium-ion battery industry chain is expanding, and high-precision membrane filtration technology is increasingly being applied in electrolyte purification and slurry recovery.
The rapid growth of the new-energy vehicle and energy-storage markets has heightened the demand for high-purity key materials for lithium batteries—such as electrolytes and solvents. High-precision filtration technologies are employed to remove impurity particles, ensuring battery safety and consistency. At the same time, these technologies play a crucial role in the water-recycling phase of the production process.
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The reshoring of the global semiconductor industry chain and the establishment of new production lines are driving growth in the market for ultra-high-purity reagents, gases, and chemical filtration products.
With the recovery of the global semiconductor manufacturing industry and increasing emphasis across regions on the security of chip supply chains, there has been a rise in new wafer fab projects. In chip manufacturing, precision filter cartridges used for ultra-pure water production, process gas purification, and chemical filtration serve as the cornerstone for ensuring yield, and this market is showing a steady growth trend.
The country has released the “Pharmaceutical Industry Development Plan,” which focuses on supporting the development of innovative drugs and CDMO services, presenting new opportunities for the high-end filtration consumables market.
Yes, this assessment is highly consistent with the current policy orientation and industrial development trends in China’s pharmaceutical sector. In recent years, the Chinese government has intensively introduced a series of top-level plans, explicitly identifying innovative drugs and CDMOs (Contract Development and Manufacturing Organizations) as strategic priorities. Consequently, high-end filtration consumables—such as ultrafiltration membranes, nanofiltration membranes, virus removal filters, and single-use filtration systems—that serve as the “infrastructure” supporting biopharmaceutical production are now experiencing unprecedented growth opportunities.
Environmental protection standards in the chemical and food & beverage industries are becoming increasingly stringent, and membrane-based water treatment and waste gas recovery technologies are attracting considerable attention.
Under the backdrop of the “dual-carbon” policy, industries such as large-scale chemical manufacturing and food & beverage are facing stricter standards for emissions and resource consumption. As an efficient physical separation method, membrane separation technology is seeing its applications steadily expand in areas including near-zero discharge of industrial wastewater, recovery of valuable components, and treatment of process exhaust gases, presenting enormous market potential.
Several domestic filtration companies have been recognized as “Specialized, Fine, and New,” focusing on the modification of polymer membrane materials and challenging the market dominance of international brands.
Driven by the dual forces of supply-chain security and cost optimization, a group of domestic filtration companies—such as Zhejiang Lankuo—are achieving breakthroughs in key performance areas—including membrane material hydrophilicity/hydrophobicity, strength, and service life—through sustained R&D investment. They are gradually replacing imported products in high-end sectors such as biopharmaceuticals and semiconductors.
The CGT field is rapidly developing, and the production of viral vectors and plasmid DNA is placing higher demands on nanofiltration/ultrafiltration technologies.
Indeed, with the rapid advancement of cell and gene therapy (CGT), viral vectors—such as adeno-associated virus (AAV) and lentivirus (LV)—as well as plasmid DNA (pDNA), have become critical raw materials that occupy a central position throughout the entire CGT product development pipeline.
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