Laboratory, Optical And Precision Equipments (Excl. Glasses) – Simultanes Thermisches Analysegerät (Sta). Delivery Performance And Commissioning Of A Simultaneous Thermal Analysis Device With The Following Minimum Features: 1. Temperature Range: From 15°C To A Maximum Of 1600°C Working Temperature And At A Continuous Temperature Of 1550°C. The System Must Be Able To Be Stably Controlled In This Range And Be Able To Operate In Normal Operation Without Wear And Tear In Relation To The Temperature. The Temperature Resolution In The Oven Must Meet The Requirements Of High-Precision Analysis (±0.1?K Or Better In The Calibration State). 2. Heating And Cooling Rates: Individually Adjustable Heating Rates From Very Low (1 K/Min) Up To 50 K/Min. The Maximum Heating Speed Must Reach At Least 50 K/Min In Order To Be Able To Run Fast Temperature Programs. The Cooling Rate Must Be So High That The Furnace Chamber Can Be Opened Safely After A Maximum Of 60 Minutes At An Operating Temperature Of 1600 °C. It Must Be Ensured That After This Cooling Time There Is No Wear On The Protective Tube, Thermocouple, Heating Elements, Scales Due To The Temperature Change. 3. Sample Weight Capacity: The Thermobalance Must Be Able To Hold And Measure Sample Masses Of At Least 7 G. The System Must Be Designed For A Total Sample Carrier Load Of 25 G In Order To Provide Sufficient Reserve For Crucibles And Sample Material. The Load Cell Must Be High-Resolution (Microgram Range) And Low-Drift In Order To Accurately Record Mass Changes Of Up To 100%. 4. Sample Holder: Suitable Sample Holders And Crucibles Must Be Provided For Different Sample Types, In Particular A Sample Holder Must Be Available That Enables The Measurement Of Solid Round Samples (Pellets) With Diameters Of 10 - 25 Mm. 5. Gas Supply: The Device Must Offer The Possibility Of Simultaneously Connecting At Least 3 Different Reaction Gases Plus A Protective Gas (Inert Gas) Via Peripherals Or Integrated. The Reaction Gases Are 1X H2, 1X Co And 1X Mixed Gas (Reducing). Gas Flows Must Be Precisely Adjustable And Reproducible Using Mass Flow Controllers (Mfc). A Quick Gas Change Or The Programming Of Different Atmospheres During A Measurement Must Be Possible (E.G. To Switch From An Inert To An Oxidizing Atmosphere). 6. Atmosphere Control: The System Must Be Able To Operate Safely Under Inert Gas (E.G. N2, Ar) As Well As Under Oxidizing (E.G. Air, O2), Reducing Conditions (E.G. H2/Co) And Under A Humid Atmosphere (Steam). The Device Must Be Able To Be Operated Safely With The Required Gases Up To 100% Atmospheric Content. 7. Safety When Operating On Gas: Appropriate Safety Precautions Are Required For Operation With Flammable, Toxic Or Corrosive Gases (Such As Hydrogen, Carbon Monoxide, Etc.). The System Must Have A Flexible Gas Safety Control That, For Example, Automatically Switches To Inert Gas And Closes Critical Valves In The Event Of Leaks Or An Unexpected Gas Stop. All Have Gas
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