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filingDate 2007-04-25-04:00^^<http://www.w3.org/2001/XMLSchema#date>
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publicationDate 2007-05-18-04:00^^<http://www.w3.org/2001/XMLSchema#date>
publicationNumber KR-20070051814-A
titleOfInvention New Wastewater Treatment Technology Using Combined Laser Photocatalyst
abstract It is true that some of the previous technologies are currently in the limit of lack of wastewater treatment problems, which has emerged as the first priority of absolute saving in the living environment. n In other words, conventional water treatment methods have been processed by chemical and activated carbon treatment, microbial treatment or physical methods by complex facilities, but this requires not only heavy facility costs and maintenance costs, but also high investment in cost due to increased volume. It is the reality that the placenta that is not processed due to time and space is discharged. n Therefore, the present technology has developed a method for developing a complex laser photocatalyst carrier for use in wastewater treatment. This technique uses a known porous titanium dioxide (Tio2) photocatalyst, carbon dioxide (Co2) photocatalyst and excitation After making a powder to form a composite photocatalyst carrier which solidifies a specially cultured microorganism group in the cell, it was filled in a reactor and then injected with waste water and oxygen at the same time, so that the powder was absorbed into the powder and caused to react instantly. When agitated, mutual friction causes the mica phases contained in the vermiculite molecules to be illuminated and sublimed by a complex laser to obtain high energy, which momentarily causes pollutants composed of moisture. Decomposed and extinguished, and evaporated to flash water or another carbon dioxide gas As fast as a simpler facility will purify as the breakthrough technology that rapidly and accurately than was possible with cheap pay as a technical compilation of all chemical reactions and biological reactions Physical reactions
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