Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors

Nowadays, infrared emitters are mostly used in the food industry as drying method. However, there is also great potential for such heaters in flow chemistry. Flow reactors do not only require thermal efficiency but also accurate modulation of heat transfer. This can be achieved by the use of infrare...

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Main Authors: Joris Claes, Bert Brabants, Simon Kuhn, Leen Thomassen, Mumin Enis Leblebici
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2019-05-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/9988
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author Joris Claes
Bert Brabants
Simon Kuhn
Leen Thomassen
Mumin Enis Leblebici
author_facet Joris Claes
Bert Brabants
Simon Kuhn
Leen Thomassen
Mumin Enis Leblebici
author_sort Joris Claes
collection DOAJ
description Nowadays, infrared emitters are mostly used in the food industry as drying method. However, there is also great potential for such heaters in flow chemistry. Flow reactors do not only require thermal efficiency but also accurate modulation of heat transfer. This can be achieved by the use of infrared emitters. In this research, the electrical efficiency of three different types of infrared emitters: short, medium and long wave, is determined. Next, these efficiencies are benchmarked against a convection oven which uses forced convection of hot air. In addition, the influence of surface absorptivity of the stainless steel is tested with and without a black coating. It was hypothesized that the black coating would enhance energy absorption. Similar trends in heat transfer were observed between the three different types of infrared emitters. When both convection and infrared heating used the same amount of electrical power and were both applied in the same convective setup, the net absorbed thermal power was 10 percentage points higher in the infrared setups than by convective heating. This indicates that the efficiency of transferring thermal energy to the liquid in a tubular reactor is higher for infrared heaters than for the convection oven. In addition, a black coating of the flow reactor improved the absorbed power with 6 percentage points. In conclusion, the infrared emitters are excellent for heating flow reactors with high absorptivity, and are more efficient than convection ovens.
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spelling doaj.art-d4fec0bad1464bb7becb1961aae8d6cf2022-12-21T23:01:37ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162019-05-017410.3303/CET1974223Comparative Study of Convective and Radiative Heat Transfer in Milliflow ReactorsJoris ClaesBert BrabantsSimon KuhnLeen ThomassenMumin Enis LeblebiciNowadays, infrared emitters are mostly used in the food industry as drying method. However, there is also great potential for such heaters in flow chemistry. Flow reactors do not only require thermal efficiency but also accurate modulation of heat transfer. This can be achieved by the use of infrared emitters. In this research, the electrical efficiency of three different types of infrared emitters: short, medium and long wave, is determined. Next, these efficiencies are benchmarked against a convection oven which uses forced convection of hot air. In addition, the influence of surface absorptivity of the stainless steel is tested with and without a black coating. It was hypothesized that the black coating would enhance energy absorption. Similar trends in heat transfer were observed between the three different types of infrared emitters. When both convection and infrared heating used the same amount of electrical power and were both applied in the same convective setup, the net absorbed thermal power was 10 percentage points higher in the infrared setups than by convective heating. This indicates that the efficiency of transferring thermal energy to the liquid in a tubular reactor is higher for infrared heaters than for the convection oven. In addition, a black coating of the flow reactor improved the absorbed power with 6 percentage points. In conclusion, the infrared emitters are excellent for heating flow reactors with high absorptivity, and are more efficient than convection ovens.https://www.cetjournal.it/index.php/cet/article/view/9988
spellingShingle Joris Claes
Bert Brabants
Simon Kuhn
Leen Thomassen
Mumin Enis Leblebici
Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors
Chemical Engineering Transactions
title Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors
title_full Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors
title_fullStr Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors
title_full_unstemmed Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors
title_short Comparative Study of Convective and Radiative Heat Transfer in Milliflow Reactors
title_sort comparative study of convective and radiative heat transfer in milliflow reactors
url https://www.cetjournal.it/index.php/cet/article/view/9988
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AT leenthomassen comparativestudyofconvectiveandradiativeheattransferinmilliflowreactors
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