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Reaction calorimeter Product List

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Reaction calorimeter "HFCal equipped RC1mx"

It enables the rapid and accurate measurement of thermodynamic information under various process conditions.

The "HFCal-equipped RC1mx" from METTLER TOLEDO is a reaction calorimeter that measures thermodynamic data quickly and accurately under isothermal or non-isothermal conditions. Measures thermodynamic data quickly and accurately under isothermal or non-isothermal conditions. Heat flow reaction calorimetry is less susceptible to external influences and measures heat generation with high precision under process conditions. 【Features】 ■ Correct understanding of the process ■ Heat flow reaction calorimetry ■ Measurement of true reaction heat ■ Prevention of accidents during scale-up ■ SmartConnect plug-and-play design *For more details, please refer to the PDF document or feel free to contact us.

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  • Analytical Equipment and Devices

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Determination of SADT using a small-scale reaction calorimeter (glass vial) in mL size.

A method for determining the thermal hazards of reactive chemicals using DSC measurement! Glass vials are the sample containers.

This document is a technical note explaining the determination of SADT (Self-Accelerating Decomposition Temperature) using a small-scale reaction calorimeter with a mL size (glass vial). We attempted SADT simulation using azobisisobutyronitrile (AIBN) to determine the thermal hazards of reactive chemicals through DSC measurements. In this note, we used a mL size small-scale reaction calorimeter, with a heating rate of 0.025 to 0.20 K/min, which is approximately 1/20 of the typical DSC measurement range of 0.5 to 8 K/min. We encourage you to read it. [Published Data (Excerpt)] - DSC data for 1 mg of AIBN (azobisisobutyronitrile) at 5 K/min - Heating rate of 0.025 K/min - Heating rate of 0.050 K/min - Heating rate of 0.20 K/min - Predictions of what kind of DSC measurement data can be obtained *For more details, please download the PDF or feel free to contact us.

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Determination of the SADT of diperoxy dodecanedioate using a small-scale reaction calorimeter.

Calculate SADT from measurement data under isothermal conditions! Does LPO exothermically decompose at temperatures below the melting point?

This document is a technical note explaining the determination of the Self-Accelerating Decomposition Temperature (SADT) of diperoxy dodecanedioate using a small-scale reaction calorimeter. The SADT was calculated from measurement data under isothermal conditions at 51°C for 12 days, with a heating rate ranging from 0.015 K/min to 0.20 K/min. Will LPO indeed decompose exothermically at temperatures below its melting point? Please download and view it from the published catalog. [Contents] ■ Determination of the SADT of diperoxy dodecanedioate using a small-scale reaction calorimeter ■ Determination of SADT using a small-scale reaction calorimeter with ultra-low heating rate control *For more details, please download the PDF or feel free to contact us.

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