MACHINES TREATMENT MATERIALS

Brand Owner (click to sort) Address Description
CAPHENIA CAPHENIA GMBH Aschauer Straße 58b Bernau am Chiemsee D-83233 Germany Machines for treatment of materials and for manufacturing in the chemical industry, particularly: plasma machines; converters, namely, catalytic converters; particulate filters; separators for aerosols;Technical oils, namely, industrial oils; technical greases, namely, industrial greases, greases for machines and engine oils; lubricants, namely, industrial lubricants, lubricants for engines and motor vehicle lubricants; fuels, namely, fuel gas, synthetic fuels, synthesis gas, diesel oil for motor vehicles, kerosene, diesel oil, turbine fuels, gasoline; illuminants, namely, candles and candle wax; synthesis gasfuel produced from carbon monoxide and hydrogen, namely, synthesis gas;Chemical substances, chemical materials and chemical preparations for use in industry and scientific applications, particularly functionalised and/or non-functionalised hydrocarbons; carbon; hydrogen; carbon monoxide; ethanol, hydrogen;The wording CAPHENIA has no meaning in a foreign language.;scientific and technological services, particularly for the chemical industry, namely, scientific research in the field of chemical analysis for fuels; engineering services, particularly for the chemical industry;
CAPHENIA CCP Technology GmbH Weißenburger Str. 7 Munich 81667 Germany Machines for treatment of materials and for manufacturing in the chemical industry, particularly: plasma machines; converters, namely, catalytic converters; particulate filters; separators for aerosols;Technical oils, namely, industrial oils; technical greases, namely, industrial greases, greases for machines and engine oils; lubricants, namely, industrial lubricants, lubricants for engines and motor vehicle lubricants; fuels, namely, fuel gas, synthetic fuels, synthesis gas, diesel oil for motor vehicles, kerosene, diesel oil, turbine fuels, gasoline; illuminants, namely, candles and candle wax; synthesis gasfuel produced from carbon monoxide and hydrogen, namely, synthesis gas;Chemical substances, chemical materials and chemical preparations for use in industry and scientific applications, particularly functionalised and/or non-functionalised hydrocarbons; carbon; hydrogen; carbon monoxide; ethanol, hydrogen;The wording CAPHENIA has no meaning in a foreign language.;scientific and technological services, particularly for the chemical industry, namely, scientific research in the field of chemical analysis for fuels; engineering services, particularly for the chemical industry;
CLENZEN 2Pure Products Limited 32 Portland Terrace Newcastle upon Tyne NE21QP United Kingdom Machines for treatment of materials; mixing machines;Deodorants, other than for human beings or for animals; air deodorising and purifying preparations; disinfectants; biocides; virucides; antibacterial preparations; fungicides; detergents having antimicrobial properties; air fresheners;Cleaning preparations; stain removing preparations; detergents; cleaning preparations having antimicrobial properties; stain removing preparations having antimicrobial properties;Biocidal preparations for use in industry; Biocidal preparations for use in manufacture; Chemical products for use as anti-bacterial additives for liquids; Detergents having anti-bacterial properties for use in manufacturing processes; Detergents having deodorising properties for use in manufacturing processes;Air treatment equipment; apparatus for cleaning air; air freshener dispensing equipment; air freshener plug-ins;
POWTREX VOLKMANN GMBH Schloitweg 17 59494 Soest Germany Machines for treatment of materials, namely, cutting machines, heat treatment machines; machines for materials handling, namely, palletizers, case elevators, automatic pallet dispensing machines and automatic slip sheet dispensing machines; machines for conveying materials, machines for processing, transporting and/or conveying shapeless, powdery, granular, grainy, particulate, gelatinous, pasty metallic, metal-containing and toxic materials; transport mechanisms, namely, pneumatic transporters; transport devices, namely, lifting installations, conveyors for transport of shapeless, powdery, granular, grainy, particulate, gelatinous, pasty metallic, metal-containing and toxic cargo; vacuum transport devices, namely, vacuum conveyors and vacuum pumps for shapeless, powdery, granular, grainy, lumpy, gel-like, pasty, metallic, metal-containing and toxic cargo; conveyors, namely, chain conveyors, belt conveyors; conveying devices, namely, belt conveyors for shapeless, powdery, granular, grainy, lumpy, gelatinous, pasty, metallic, metal-containing and toxic conveyed material; vacuum conveyors for shapeless, powdery, granular, grainy, lumpy, gelatinous, pasty, metallic, metal-containing and toxic conveyed material; screening devices, namely, vibratory screen separators; screening devices, namely, vibratory screen separators for powdery, granular, grainy, lumpy, gelatinous, pasty, metallic, metal-containing and toxic material; separating devices, namely, vibratory screen separators; separating devices, namely, vibratory screen separators for separating powdery, granular, grainy, lumpy, gelatinous, pasty, metallic, metal-containing and toxic materials; ultrasonic devices, namely for machines for processing, transporting, conveying, screening and separating powdery, granular, grainy, lumpy, gelatinous, pasty, metallic, metal-containing and toxic materials; machines and machine components for transporting, feeding, and recovering shapeless material in powder, granule, grain, gel, and paste form for generative or additive manufacturing processes and devices; machines and machine components for transporting and/or feeding and/or recovering shapeless material in powder, granule, grain, gel, and paste form for 3D printing processes or apparatus; machines and machine components for transporting, feeding and recovering shapeless material in powder, granule, grain, gel, and paste form for 3D laser printing processes or apparatus; machines and machine components for transporting under inert gas and/or feeding under inert gas and/or recovering under inert gas of shapeless material in powder, granule, grain, gel, and paste form for generative or additive manufacturing processes and devices; machines and machine components for transporting under inert gas, feeding under inert gas and recovering under inert gas of shapeless material in powder, granule, grain, gel, and paste form for 3D printing processes or apparatus; machines and machine components for transporting under inert gas, feeding under inert gas and recovering under inert gas of shapeless material in powder, granule, grain, gel, and paste form for 3D laser printing processes or apparatus; machines and machine components for transporting under vacuum, feeding under vacuum and recovering under vacuum of shapeless material in powder, granule, grain, gel, and paste form for generative or additive manufacturing processes and devices; machines and machine components for transporting under vacuum, feeding under vacuum and recovering under vacuum of shapeless material in powder, granule, grain, gel, and paste form for 3D printing processes or apparatus; machines and machine components for transporting under vacuum, feeding under vacuum and recovering under vacuum of shapeless material in powder, granule, grain, gel, and paste form for 3D laser printing processes or apparatus; bearing housings for machines; filters and filter installations therefrom for inert gas applications for machines; generative or additive manufacturing devices; machines for performing additive or additive manufacturing processes; 3D printers; 3D laser printers;Semi-wrought common metals in powder form; metals in foil or powder form for 3D printers;Metal in foil and powder form for use in painting, decorating, printing and art;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. The recycling of metal materials is performed by efficiently recovering the metal materials from component materials of a process cartridge. To achieve this object, there is provided a method of recycling a process cartridge containing a toner, wherein in a crushing process of a process cartridge containing a recovered toner, a container shape of the process cartridge is subjected to disassembly treatment to an extent of main component parts, the toner is recovered by suction in a step of disassembly treatment, metal materials, such as ferrous materials and aluminum materials, in component materials of the process cartridge are subjected to separation treatment after the step of disassembly treatment, and each of the materials is subjected to melting treatment thereby to change the materials into forms capable of reuse as ferrous materials and aluminum materials.