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Separation Technology - メーカー・企業6社の業務用製品ランキング | イプロスものづくり

更新日: 集計期間:May 27, 2026~Jun 23, 2026
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Separation Technologyのメーカー・企業ランキング

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  1. Tohoku Techno Arch Co., Ltd. Miyagi//Educational and Research Institutions
  2. ファイトケミカルプロダクツ Miyagi//others
  3. DIAM Chiba//Manufacturing and processing contract
  4. AndTech Kanagawa//Service Industry
  5. 5 浜松コジマヤ興業 Shizuoka//Manufacturing and processing contract

Separation Technologyの製品ランキング

更新日: 集計期間:May 27, 2026~Jun 23, 2026
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  1. Tohoku University Technology: Electrochemical transfer of tramp element from molten iron: T20-1058 Tohoku Techno Arch Co., Ltd.
  2. Oil reaction separation technology ファイトケミカルプロダクツ
  3. Carbon fiber separation technology DIAM
  4. The Cutting Edge of Rare Metal Recycling - Trends in Rare Metals and Highly Selective Separation Technologies AndTech
  5. 4 Tohoku Univ. Technology : Swelling followed by ball-milling for waste wire-harness recycling : T19-082_T19-440 Tohoku Techno Arch Co., Ltd.

Separation Technologyの製品一覧

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Tohoku Univ. Technology : Swelling followed by ball-milling for waste wire-harness recycling : T19-082_T19-440

Highly efficient and accurate separation of copper wires and PVC coating

Wire harnesses (WHs), the main target of this technology, are mainly used in automobiles and consist of bundles of thin wires that connect each component and are responsible for transmitting electrical signals and supplying power. Increased demand is expected with the rapid growth of electric vehicles in the future, and the development of efficient recycling technology for used WHs is strongly desired. To secure domestic resources and realize a decarbonized society, it is vital to recycle not only metal wires but also plastic coating materials. Chopping or comminution treatment is a common separation technology for treating used WHs, while it has limitations for mechanically recycling recovered plastic coating because it contains fine copper particles that are impurities for recycling. This invention enables the separation, sorting,and simultaneous recovery of copper wires and polyvinyl chloride (PVC) coating without the formation of fine particles by applying moderate impact in the ball mill equipment after swelling the coating material with organic solvent.

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Overspray paint separation technology "EcoDryScrubber"

We are one step closer to an environmentally friendly painting process!

Our company offers the German DURR Corporation's overspray paint separation technology, 'EcoDryScrubber,' which uses limestone (natural limestone) as an overspray collection material, regardless of the type of paint. This technology eliminates the need for circulating water or coagulants for paint collection, as well as the disposal of paint sludge, enhancing painting performance while significantly reducing energy consumption and environmental impact. 【Benefits】 ■ Up to 60% reduction in energy costs, including: - 80% reduction in thermal consumption - 50% reduction in electricity usage ■ 80% reduction in water usage for air conditioning (compared to conventional wet separation) *For more details, please download the PDF or feel free to contact us.

  • Painting Machine
  • Separation Technology

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Tohoku University Technology: Electrochemical transfer of tramp element from molten iron: T20-1058

Continuous Cu separation from molten Fe by molten oxide electrolysis

Recycled smelting using steel scrap can significantly reduce carbon usage and CO2 emission compared to current method, and it is an effective mean to reduce the actual increasing amount of steel scrap.   However, the contamination of tramp elements, such as Cu/Ni/Sn, which are difficult to remove by oxidation and evaporation, causes the property and workability deterioration of steel material. In addition, since tramp elements are concentrated each time the steel scrap is recycled, they become the cause of the inability to increase recycling rate. The conventional method of copper removal using sulfide flux has been considered, but this is a batch process using a large amount of sulfide.  This invention is about a technology to promote ion separation of Cu in molten iron into molten slag using electrochemical method, which enables in principle continuous processing. Moreover, not only purification of molten iron but also recycling of recovered electrodeposited copper can be considered.

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Carbon fiber separation technology

Low energy, low temperature processing is possible.

Our company offers a carbon fiber separation technology from waste CFRP using the electrolytic sulfuric acid method. The electrolytic sulfuric acid method utilizes conductive diamond as an electrode to electrolyze sulfuric acid, producing three types of active oxidizing agent solutions: peroxodisulfuric acid, peroxomonosulfuric acid, and hydrogen peroxide. This method dissolves the resin component of CFRP to separate the carbon fibers. Since electrolytic sulfuric acid does not contain heavy metals, it does not violate environmental regulations and is considered a particularly strong oxidizing agent that can be used safely in industrial applications. Moreover, sulfuric acid can be recycled, posing no issues related to waste disposal, making it an environmentally friendly treatment method. 【Features】 ■ Recyclable sulfuric acid solution ■ Ability to obtain regenerated carbon fibers with minimal strength reduction ■ Capability to obtain relatively long regenerated carbon fibers *For more details, please download the PDF or feel free to contact us.

  • 企業:DIAM
  • 価格:Other
  • fiber
  • Resource Recycling System
  • Recycling Technology
  • Separation Technology

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Development of technology to distinguish and separate the handedness of molecules.

Keywords: Organic synthesis chemistry, chiral chemistry, optical resolution, organic crystals, supramolecular chemistry, liquid crystals, gels.

Just as humans have right-handed and left-handed preferences, the molecular world also contains right-handed and left-handed molecules (enantiomers). In applications such as food, pharmaceuticals, and fragrances, these left and right molecules can exhibit completely different effects, making the technology for separating mixtures into their respective enantiomers (optical resolution) important. While the technology of optical resolution has been known for a long time, systematic research on it is relatively scarce worldwide. Therefore, we are conducting research to make optical resolution a more user-friendly technology. For example, traditional methods often faced the problem of successfully obtaining only one type of molecule, either left or right. However, we have found a method that allows us to obtain both enantiomers simply by changing the solvent used. Additionally, we are working on developing methods to separate compounds that have been difficult to separate until now at a low cost, aiming to advance research towards methods that combine separation efficiency, versatility, and economic viability.

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The Cutting Edge of Rare Metal Recycling - Trends in Rare Metals and Highly Selective Separation Technologies

★Lithium-ion batteries, superhard tool materials, phosphors, nickel... ★What are the key points of various separation and recovery methods for rare metals?

【Lecturer】 Junji Shibata, Professor, Faculty of Environmental Urban Engineering, Kansai University 【Venue】 Room 5, Kawasaki City Educational and Cultural Center 【Kanagawa, Kawasaki Station】 12 minutes on foot from JR and Keikyu Kawasaki Station 【Date and Time】 January 25, 2011 (Tuesday) 12:30-16:30 【Capacity】 30 people *Registration will close once full. Please apply early. 【Attendance Fee】 47,250 yen per person (including tax and text costs)

  • 企業:AndTech
  • 価格:10,000 yen-100,000 yen
  • Technical Seminar
  • Separation Technology

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Oil reaction separation technology

We will upcycle unused oil.

Functional components contained in the oil (such as vitamin E and plant sterols) and oil components are converted into fatty acid esters. The type of alcohol used for the fatty acid esters can also be changed, allowing us to create the desired ester.

  • Other purification and extraction
  • Separation Technology

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