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Supplier: Accuris
Description: Standard Practices for Digestion of Water Samples for Determination of Metals by Flame Atomic Absorption, Graphite Furnace Atomic Absorption, Plasma Emission Spectroscopy, or Plasma Mass Spectrometry
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Supplier: Accuris
Description: STANDARD PRACTICES FOR DIGESTION OF WATER SAMPLES FOR DETERMINATION OF METALS BY FLAME ATOMIC ABSORPTION, GRAPHITE FURNACE ATOMIC ABSORPTION, PLASMA EMISSION SPECTROSCOPY, OR PLASMA MASS SPECTROMETRY - INCLUDES STANDARD + REDLINE (PDF)
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Supplier: Harper International Corporation
Description: Ultra High Temperature furnaces rated to 3000°C. Harper tailors each design to the customer’s requirements, considering the best possible solution for your needs in terms of element and muffle design, materials platform, and atmospheric considerations to avoid plasma generation for the
- Process Temperature: 1,200 C
- Heat Source: Combustion, Natural Gas
- Features: Other
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Supplier: Isotech North America
Description: Heatpipes provide the ideal conditions for the creation and maintenance of freeze points from ITS-90. 1. The furnace core is an especially-designed stress-free isothermal heat pipe, which provides a very low thermal gradient along the core working length. The furnace heater is of the
- Process Temperature: 125 to 1,090 C
- Atmosphere: Air / Oxidizing
- Application: Laboratory
- Controller Type: Programmable
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Supplier: Accuris
Description: Analysis of serum and plasma for trace elements, Method 1: Determination of aluminium content - Graphite furnace atomic absorption spectrometric method
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Supplier: Isotech North America
Description: Model 426 is for Aluminum, Silver slim fixed point cells as well as for comparison calibration. Heatpipes provide the ideal conditions for the creation and maintenance of slim ITS-90 cells. The furnace core is a specially-designed stress-free isothermal heat pipe, which provides a very low
- Process Temperature: 450 to 1,000 C
- Width / Tube O.D.: 415 mm
- Length (Chamber / Tube): 280 mm
- Height: 410 mm
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Supplier: ASTM International
Description: 1.1 Most atomic absorption and plasma emission spectroscopy, and plasma-mass spectrometric test methods require that the metals of interest be dissolved in a liquid phase before being introduced into the spectrophotometer. These practices describe digestion or dissolution procedures
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Supplier: Accuris
Description: Standard Test Method for Determination of Lead by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES), Flame Atomic Absorption Spectrometry (FAAS), or Graphite Furnace Atomic Absorption Spectrometry (GFAAS) Techniques
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Supplier: ASTM International
Description: Test Methods for the Analysis of Digested Samples for Lead by Inductively Coupled Plasma (ICP-AES) Flame Atomic Absorption (FAAS), or Graphite Furnace Atomic Absorption (GFAAS) Techniques (Withdraw...
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Supplier: ASTM International
Description: particulate) using inductively coupled plasma atomic emission spectrometry (ICP-AES), flame atomic absorption spectrometry (FAAS), and graphite furnace atomic absorption spectrometry (GFAAS) techniques. 1.3 No detailed operating instructions can be provided because of differences among
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Supplier: CSA Group
Description: arc furnace); - electron beam furnace; - plasma furnace; - other electrical furnaces used in secondary steelmaking, e.g. ladle furnace. ISO 13578:2017 does not specify safety requirements for the following equipment, which can be an integral or complementary
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Description: IEC/TS 60519-5 specifies safety requirements applicable to both plasma torch systems and installations using plasma torch systems. Determines safety requirements for all components, including the electrical equipment, the cooling circuits, the gas supply circuits, the furnace or
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Supplier: CSA Group
Description: ISO 21033:2016 specifies an inductively coupled plasma optical emission spectroscopic method (ICP-OES) for the determination of the trace element content in oils. Depending on the dilution solvent used, most types of vegetable oils can be analysed (crude, degummed, refined, bleached,
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Description: atomization problems. The only suitable non-ashing direct method for these samples is graphite furnace atomic absorption spectrometry.
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Supplier: CSA Group
Description: atomization problems. The only suitable non-ashing direct method for these samples is graphite furnace atomic absorption spectrometry.
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Supplier: ASTM International
Description: activity. This inductively coupled plasma-mass spectroscopy (ICP-MS) method is intended as an alternative analysis to methods such as alpha spectroscopy or thermal ionization mass spectroscopy (TIMS). Also, while this test method covers only those isotopes listed above, the instrumental
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Supplier: Advanced Gas Technologies
Description: food packaging, leak detection, welding and welding shield gases, plasma welding and furnace atmosphere.
- Maximum Flow (Gas / Air): 20,000 SCFM
- Application: Food Processing, Gas
- Body Material: Stainless Steel
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Supplier: Washington Alloy Co.
Description: deposit with excellent resistance to oxidation and carburization at temperatures up to 1900oF. Washington Alloy L605 has good fabricability and is used for industrial furnace applications such as furnace muffles and liners in high temperature kilns. Also used in jet engine components
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Supplier: Isotech North America
Description: The Oberon-R is designed for achieving Aluminum, Silver, Gold or Copper fixed points. The furnace core is a specially-designed stress-free isothermal heat pipe, which provides a very low thermal gradient along the core working length. The furnace heater is of the non-inductive
- User Interface: Digital Front Panel
- Display: Digital Readouts
- Calibrator Style: Fixed
- Features: Other Specific Calibration
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Supplier: Zak, Inc.
Description: No Description Provided
- Wall Thickness: 0.375 to 1.5 inch
- Melt Temperature: 3,000 C
- Furnace / Atmosphere: Arc / Plasma Melting, Electron Beam Melting, Evaporator / CVD Furnace, Induction, Inert, Reducing, Vacuum
- Material Types: Copper (Water Cooled)
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Supplier: Zak, Inc.
Description: No Description Provided
- Wall Thickness: 0.375 to 1.5 inch
- Melt Temperature: 3,000 C
- Furnace / Atmosphere: Arc / Plasma Melting, Electron Beam Melting, Evaporator / CVD Furnace, Induction, Inert, Reducing, Vacuum
- Material Types: Copper (Water Cooled)
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Supplier: Zak, Inc.
Description: No Description Provided
- Wall Thickness: 0.375 to 1.5 inch
- Melt Temperature: 3,000 C
- Furnace / Atmosphere: Arc / Plasma Melting, Electron Beam Melting, Evaporator / CVD Furnace, Induction, Inert, Reducing, Vacuum
- Material Types: Copper (Water Cooled)
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Description: and operational reliability. Used as automotive, HVAC(VAC) plasma cutters, laser welding machines, cooling system of furnace, cooling waer system of monocrystal oven, heat treatment equipment, power plant , heat-pump boiler etc. used for overheating monitoring and control. The setting
- Mounting/Configuration: Probe
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Supplier: Gavish, Inc.
Description: Sapphire Tubes and injectors for Semiconductor applications Sapphire components have proven to be an enabling technology - making it possible to run Semiconductor processes using chemically aggressive plasmas including NF3 andCF4 . Sapphire has replaced quartz and ceramics for sapphire
- Material Type: Sapphire
- Shape: Spout / Nozzle (Launder Pouring / Atomization), Tube Stock
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Supplier: CSA Group
Description: coupled plasma optical emission spectrometry (ICP-OES), inductively coupled plasma mass spectrometry (ICP-MS) or graphite furnace atomic absorption spectrometry (GFAAS). Hydride generation (HG) techniques coupled to atomic spectrometry can also be used such as HG-AAS, HG-AFS
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Supplier: Element Materials Technology
Description: X-Ray Fluorescent Analyzer Optical Emission Spectroscopy (OES) Portable Optical Emission Spectroscopy (OES) Atomic Absorption (AA) Analyzers Inductively Coupled Plasma (ICP) Combustion/IR Analyzers Gas Chromatography/Mass Spectrometry (GC/MS) Analyzers Glow Discharge Spectrometers (GDS)
- Standards (Test / Certify To): ASTM, AWS, EPA, MIL-SPEC, OEM Specific, RoHS
- Materials: Adhesives / Sealants, Air, Ceramics / Glass, Chemicals, Coatings, Composites, Concrete / Mortar, Inorganics, Metals, Paper, Petroleum Fluids (Oil, Fuel, Distillates), Plastic / Rubber, Polymers / Organics, Powders, Soil, Textiles, Thin Films / Plating, Toxins / Restrictive Substances, Volatiles
- Industry: Aerospace / Aviation, Automotive, Chemical / Material Processing, Food / Beverage, Health Care / Medical, Legal / Forensics, Marine, Military, Nuclear / Utility, Packaging, Pharmaceutical / Biotech, Piping / Pressure Vessel, Semiconductors / Electronics, Structural / Construction
- Test Methods: Ash Testing / Filler Content, Atomic Absorption Spectroscopy (AA), Auger Spectroscopy (AES), Chemical Extraction, Chromatography (GC, HPLC, etc.), Combustion Analysis, Diffraction (X-ray, Electron, etc.), Inductively Coupled Plasma (ICP / LA-ICP), Infrared Spectroscopy (FTIR, etc.), Mass
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Description: Chemically inert Corrosion resistant Not wet by most molten metals Extremely high working temperature Applications High-temperature furnace setter plates Molten glass and metal crucibles High-temperature and high-voltage electrical insulators Vacuum feedthroughs Fittings and the lining of the
- Material Type: Aluminum Nitride, Boron Nitride
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Description: Chemically inert Corrosion resistant Not wet by most molten metals Extremely high working temperature Applications High-temperature furnace setter plates Molten glass and metal crucibles High-temperature and high-voltage electrical insulators Vacuum feedthroughs Fittings and the lining of the
- Density: 1.4999990533094125 to 1.5999989901967067 g/cc
- Material Type: Aluminum Nitride, Boron Nitride
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Description: – Strong resistance to high temperatures and thermal cycling – High insulation properties – Long-term reliability – Highly customizable Typical Application – Vacuum furnaces and high-temperature vacuum heating systems – Vacuum coating and plasma equipment – Semiconductor and research
- Features: Alumina / Aluminum Oxide, Other, Specialty Ceramic
- Shape / Form: Fabricated / Custom Shape
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Description: shock resistance Low dielectric constant and loss tangent Excellent machinability Chemically inert Corrosion resistant Not wet by most molten metals Extremely high working temperature Applications High-temperature furnace setter plates Molten glass and metal crucibles High-temperature and
- Material Type: Boron Nitride
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Supplier: Linde North America, Inc.
Description: supplement or completely replace air in furnaces, for example, to dramatically improve combustion efficiency and throughput, and reduce emissions, including nitrous oxides (NOx). Oxygen and oxyfuel systems are widely used for high-temperature steel reheating and glass melting or remelting
- Supply Options: Bulk / Microbulk, Gas Cylinder
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Supplier: Leybold USA Inc.
Description: available Heat treatment & plasma processes In heat treatment furnaces and plasma processes, vacuum pump technology needs to perform reliably while exposed to difficult processes. SOGEVAC NEO D advantages: Rugged industrial design with oil filter No external exhaust filter
- Mechanical: Rotary Vane
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Supplier: Leybold USA Inc.
Description: available Heat treatment & plasma processes In heat treatment furnaces and plasma processes, vacuum pump technology needs to perform reliably while exposed to difficult processes. SOGEVAC NEO D advantages: Rugged industrial design with oil filter No external exhaust filter
- Mechanical: Rotary Vane
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Supplier: Shanghai Optics
Description: suits your needs. Sapphire Windows in Extreme Temperature Environments Sapphire’s maximum temperature rating of almost 2000 ° C makes it ideal for lamp shields, high temperature combustion chambers, furnace systems, and gas processing. A supported sapphire window remains at peak performance
- Window Material: Sapphire
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lift pin guides - Plasma etcher insulators and RF windows -- electrical insulation combined with plasma resistance - High-temperature jigs and fixtures -- furnace tooling, brazing fixtures, and molten metal handling - Bearing and mechanical seal components -- wear-resistant rolling (read more)
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Integrated thermal treatment system study -- Phase 2 results. Revision 1
System C: Plasma Furnace .............................................
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http://dspace.mit.edu/bitstream/handle/1721.1/88956/48955100-MIT.pdf?sequence=2
68 Figure 24: Using the Plasma Furnace Reduces Lost Sales..
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Plasma plants for the melting and reduction of metals
As an exam ple, we can consider shaft plasma furnaces , which rep resent “closed systems” and provide the minimum amount of forming gas flows.
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THERMAL PLASMAS FOR HAZARDOUS WASTE TREATMENT PROCEEDINGS OF THE INTERNATIONAL SCHOOL OF PLASMA PHYSICS "PIERO CALDIROLA"
This is the reason why DC plasma furnaces were developed with hollow graphite consumable electrodes, in which a plasma gas is injected to control the arc, plasma gas serving equally as the carrier gas to inject fine particles, such as chromite.
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Application of plasma arc melting technology to processing of reactive metals
10 Daido steel plasma furnaces (schematic .
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Application of Plasma Technology in Iron and Steelmaking
Nontransferred arc plasma furnaces were originally developed from arc gas heaters.
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Melter development needs assessment for RWMC buried wastes
The unit technologies investigated, based upon a Preliminary System Design Study (EGG-WTD-9594, July lCr)l) and initial Thermal Technologies Screening Study (EGG-WTD-9449, January 1991), were primarily joule, heated melters and arc/ plasma furnaces ; although other available furnaces/melters are …
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Plasma metallurgy
There were immediately two principal directions of utilization of plasma: production of special alloys, steels, and high-melting materials,in plasma furnaces , and the development of thermal processcs for ores related to obtaining metals from ores directly.
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Experimental Investigations on V-containing Steelwork Slags with a Low V2 O5 Content
By using the plas- ma furnace , different parameters could be investigated even at a high slag ratio.
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Hydrogen as reducing agent for the ice and crude steel generation, Being situation, potentials and challenges
Plasma furnace of one .
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