Journal Article

·2014

Multiple Regression Analysis of Catalytic Dehydrogenation of Isopropanol in a Chemical Heat Pump System

Mehmet Selçuk Mert , İnci Salt YTU , Fatma Karaca YTU , Hatice Hande Mert , Esen Bolat YTU

Chemical Engineering & Technology

Abstract

Abstract Chemical heat pump is a clean technology developed to upgrade the low‐level thermal energy to upper levels and to store energy without losses caused by temperature differences. Multiple regression analysis of catalytic dehydrogenation of isopropanol was performed. The endothermic dehydrogenation of isopropanol was carried out under continuous boiling and refluxing conditions in order to study the enhancement effects of the presence of an alkaline compound and different types of catalysts at various concentrations in the reaction medium on the evolution rate of hydrogen. The factorial experimental design method was applied to understand better the coupled influences of both catalyst and alkaline additive concentrations to discuss and evaluate statistically the results for different catalysts and to develop the related models.

Keywords

Dehydrogenation Catalysis Endothermic process Factorial experiment Chemistry Heat pump Hydrogen Boiling Chemical engineering Thermodynamics Organic chemistry Mathematics Heat exchanger

Subject Areas

Adsorption and Cooling Systems ·Mechanical Engineering ·Physical Sciences
Refrigeration and Air Conditioning Technologies ·Mechanical Engineering ·Physical Sciences
Chemical Looping and Thermochemical Processes ·Biomedical Engineering ·Physical Sciences

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