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As environmental standards continue to rise, the chemical industry – including sectors dealing with organic emissions from substances such as acrylonitrile, acrylic acid, phenol, and synthetic rubber – relies on catalytic oxidation (catalytic incineration) processes to meet stricter emission requirements. This approach offers high efficiency, good safety, and strong stability. However, the catalysts used are often imported precious metal catalysts, and as the price of these metals has been rising in recent years, their cost has also increased significantly, imposing a heavy economic burden on manufacturing companies. In response to the actual needs of factories, and drawing on decades of experience in designing and operating catalytic oxidation systems for chemical organic emissions, research institutions have collaborated to develop a set of catalyst regeneration techniques tailored for different types of catalysts. These techniques enable the effective regeneration of precious metal catalysts used for VOC treatment. Numerous cases have shown that catalyst activity increases significantly after regeneration, extending their useful life by 1–2 years. Catalysts can be regenerated up to twice throughout their lifecycle, which helps companies save substantial amounts on catalyst costs. For those interested in learning more about this new technology, please feel free to send a message.