The invention relates to a calorimeter comprising a reactor ( 1 ) that is fitted in an intermediate thermostat ( 2 ). Said intermediate thermostat ( 2 ) cooperates with an external thermostat ( 3 ) and comprises a metal block ( 4 ) as the heat transfer medium. The inventive calorimeter can be produced at lower costs than those comprising a double-walled reaction vessel and allows especially IR probe analysis.
1. A calorimeter comprising:
a reactor;
an interior thermostat including a compensation heater and a first temperature sensor in said reactor, said interior thermostat further including a temperature regulator connected to said first temperature sensor for receiving a temperature indication from said first temperature sensor, an output meter connected to said compensation heater for supplying power thereto and a signal line connecting said temperature regulator to said output meter for supplying a control signal from said temperature regulator to said output meter;
an intermediate thermostat having, as a heat carrier, a metal block into which said reactor is built, a second temperature sensor embedded in said metal block for measuring the temperature of said metal block and a temperature regulator connected to receive a temperature indication from said second temperature sensor, said intermediate thermostat further having a power output device connected to said temperature regulator, and a heating and/or cooling element connected to said temperature regulator, the temperature of said metal block being regulated by the heating and/or cooling element and the energy required from said heating and/or cooling element for the regulation being recorded and entering into the heat flow balance of the calorimeter as heat flow; and
an external thermostat with which said intermediate thermostat cooperates,
wherein, in said interior thermostat, the temperature of a test substance in said reactor is measured by said first temperature sensor and regulated by said compensation heater, wherein a heat input from said compensation heater enters into the heat flow balance of the calorimeter as heat flow.
2. The calorimeter according to claim 1 , wherein the heating and/or cooling elements are Peltier elements.
3. The calorimeter according to claim 1 , further comprising an agitator disposd in said reactor and connected to a drive member by a magnetic coupling or a floating ring seal.
4. The calorimeter according to claim 1 , further comprising a sensor for chemical and/or physical measurements inserted into said metal block to be brought to a pre-determined temperature by said metal block.
5. The calorimeter according to claim 1 , comprising a plurality of reactors built onto a common external thermostat.
6. The calorimeter according to claim 1 , wherein said metal block has a portion that is located below said reactor and said second temperature sensor is embedded in said portion.