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Ozone gas production equipment "SAT-G Series"

Generate high-concentration oxygen gas using the PSA method to efficiently produce ozone gas.

The PSA method generates high-concentration oxygen gas, and by applying high voltage to the produced oxygen gas using an ozonizer, ozone gas is efficiently produced. The generated ozone gas is released for a certain period, and through repeated oxidation and sterilization, bacteria and fungi that are suspended in or adhere to the air are gradually reduced. There are two installation types: a wall-mounted type that does not take up space and a stationary type with a built-in compressor that operates solely on power supply. <Features> ● Environmentally friendly ozone gas generation Ozone is generated from the oxygen in the air without using chemicals, and it returns to oxygen through sterilization and deodorization, leaving no residues at all. ● Safe and reliable ozone control There is no need for handling tasks such as chemical management, and ozone gas can be supplied in the necessary amount when needed, with a completely automated control design for peace of mind. ● Complete system with no secondary processing required Due to the powerful oxidative power of ozone, sterilization and decomposition of odor components are performed, resulting in no waste from sterilizers, deodorants, or filters. *For more details such as case studies, please refer to the PDF materials or feel free to contact us.

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Tohoku University Technology: Hydrogen gas production method and equipment: T15-157

No need of pulverization process! Able to product easily the hydrogen gas at low cost!

Conventional method of producing hydrogen gas from organic matters such as biomass or plastics, is composed of mixing calcium hydroxide and nickel hydroxide, applying mechanochemical processing (grinding), and then heating. However, since the pulverization process requires energy and equipment, technology development with further cost reduction was expected.   This invention is about a method of producing hydrogen gas from organic materials such as biomass and plastics at low cost without requiring a grinding process.  Organic materials such as biomass and plastics are pyrolyzed in a lumpy state to generate pyrolysis gas, and then this gas is heated with an aqueous solution containing nickel to generate hydrogen gas. In addition, the nickel added during heating can be recovered and reused.

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