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The device’s core technology utilizes a combination of physical absorption and chemical adsorption to separate and purify carbon dioxide from fermentation gas and diesel steam boiler exhaust. Through key equipment such as absorption and desorption towers, the exhaust gas comes into contact with a specific absorbent, capturing the carbon dioxide. Subsequently, under optimal conditions, the carbon dioxide is desorbed to produce high-purity carbon dioxide gas. After treatment, the recovered carbon dioxide reaches a purity exceeding 99.9%, making it widely applicable in food preservation, carbonated beverage production, dry ice manufacturing, and oilfield flooding.
This device offers significant advantages over traditional treatment methods. First, it significantly reduces direct carbon dioxide emissions, helping companies fulfill their environmental responsibilities and reduce carbon emissions. Second, the recovered carbon dioxide, as a high-value industrial raw material, can generate additional economic benefits, achieving a win-win situation for both environmental protection and profitability. Furthermore, the device is easy to operate, operates stably, and has low maintenance costs, making it suitable for production scenarios of various sizes.
Currently, the device has been piloted in several food processing and energy chemical companies, achieving significant results, effectively reducing their carbon footprint and improving resource utilization. In the future, with continued technological optimization and upgrading, this carbon dioxide recovery device will be promoted and applied in even more industries, contributing to promoting green and low-carbon development and achieving sustainable development goals.

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