Inline, high-efficiency deoxygenation is possible. We propose improvements in quality and prevention of quality deterioration.
Nitrogen stripping, also known as gas replacement degassing, is a technology involving partial pressure and gas-liquid contact. By installing a stripper in the process piping and introducing high-purity nitrogen gas, it is a system that efficiently removes dissolved oxygen from process water. 【Features】 - High-efficiency deoxygenation is possible. High-purity nitrogen allows for deoxygenation in the PPB order. - Compared to other methods, the equipment cost is low, and operation is simple. It can be easily installed in existing piping. - Maintenance is easy. There are no moving parts, and it is designed to be sanitary for food applications. - Nitrogen can be widely used in atmosphere control. It can be combined with purging, blanketing, and pressurization. 【Examples of Applications】 - O2 removal from edible oils (soybean oil, corn oil, vegetable oils, etc.) - O2 removal from potable water (beer, juice, tea water, etc.) - O2 removal from fatty acids - O2 removal from chemical process water - H2O and O2 removal from chemical raw materials (resins, solvents, etc.) For more details, please contact us.
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Nitrogen stripping, also known as gas replacement degassing, is a technology involving partial pressure and gas-liquid contact. By installing a stripper in the process piping and introducing high-purity nitrogen gas, it is a system that efficiently removes dissolved oxygen from process water. 【Features】 - High-efficiency deoxygenation is possible. High-purity nitrogen allows for deoxygenation at the PPB level. - Compared to other methods, the equipment cost is low, and operation is simple. It can be easily installed in existing piping. - Maintenance is easy. There are no moving parts, and it is designed to be sanitary for food applications. - Nitrogen can be widely used in atmosphere control. It can be combined with purging, blanketing, and pressurization. 【Examples of Applications】 - O2 removal from edible oils (soybean oil, corn oil, vegetable oils, etc.) - O2 removal from potable water (beer, juice, tea water, etc.) - O2 removal from fatty acids - O2 removal from chemical process water - H2O and O2 removal from chemical raw materials (resins, various solvents, etc.) For more details, please contact us.
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Iwata's Gas Technology and Gas Engineering Iwata Industries' Power and Gas Plant Department utilizes Iwata's gas technology, gas supply capabilities, and know-how to propose gas solutions for improving product quality, enhancing productivity, and reducing environmental impact in manufacturing and research settings. - Reliable product specifications - Utilization of a robust gas supply network - Proposal capabilities that meet customer needs - Extensive delivery track record