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Application

 

The three temperature modes of the μRC make it a very useful and flexible tool for excipient compatibility assessment. 
Using the device in an isothermal mode allows auto-catalytic and slow reactions to be monitored.

Step-isothermal calorimetry will provide an accelerated method by which thermal stability assessments can be reduced from weeks to hours.
Temperature scanning can also be used to detect reaction onset. 
Working as a macro-scale DSC, the μRC can provide onset information where lack of material consistency requires the use of larger volumes of material.

 

 

 

 The THT Micro Reaction Calorimeter (µRC™) has a wide range of applications in the chemical, pharmaceutical and related fields. This brochure shows how using a microcalorimeter can help chemists and engineers in everyday tasks. 

 Some of the applications detailed within this brochure include:

  • Reaction Kinetics
  • Process Development
  • Scanning Calorimetry
  • Thermal Stability
  • Heat Capacity Measurement
  • Adhesive Curing Reactions
  • Waste Management
  • End Point Determination
  • Hazard Analysis

  All chemical, physical and biological reactions are accompanied by heat change. These reactions, though sometimes subtle, can be measured using calorimetry. This powerful analysis method works without modification of the sample or process. The THT Micro Reaction Calorimeter is based on power compensation technology making it faster in both signal response and temperature variation. Designed for maximum flexibility, the µRC has the capability to measure both kinetic and thermodynamic parameters in both rapid and slow reactions and in solids, liquids or gases. Measurements made by calorimetry are non-destructive and non-invasive making it valuable for initial analyses and for systems where other techniques fail. With the µRC there is minimal sample preparation and no limitation on the physical state of the material. Systems can be studied under ambient or modified environmental conditions.

 

Specification

  • Baseline Noise: From 5μW
  • Dynamic Range: 5μW to 600mW                                                      
  • Temperature Range: -5°C to 170°C
  • Standard Modes of Operation: Isothermal/Titration/ Scanning                                               
  • Optional Modes: Pressure - pressurise cell up to 10bar                                                                                 
    제약 분야에 사용되는 uRC (Excipient Compatibility Screening)
                                               
  •  Scanning Rate: Up to 2°C/min
  • Isothermal Stability: +/- 0.0001°C over extended time period                                                        
  • Cell Volume: 1.5 ml
  • Cell Type: Removable glass vial
  • Injection Volume: 1 to 250 μl
  • Temperature Control: Peltier based (no external cooling)
  • Stirring Speed: 0 - 400 rpm
  • Measurement Principle: Power compensation
  • Connection to PC: via USB cable
  • Footprint (width x depth x height): 19 x 31 x 35 cm
  • Certain other specifications may be possible by discussion