HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS
<p>With the objective to aboard one of the challenges in Engineering teaching: It´s the application in professional practice?, along with attending to the actual requirements of achieve energetic efficiency in industrial process and to reuse wastes of food industry, this work, presents the app...
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Universidad Tecnológica de La Habana José Antonio Echeverría, Cujae
2014-11-01
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Online Access: | http://rci.cujae.edu.cu/index.php/rci/article/view/251 |
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doaj-e2b048f7467d4f6ca591e61d3062a8912020-11-25T03:29:34ZspaUniversidad Tecnológica de La Habana José Antonio Echeverría, CujaeRevista Cubana de Ingeniería2223-17812014-11-0153697810.1234/rci.v5i3.251156HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILSMaría Fernanda Laborde0Laura Ivana Orifici1Ana María Pagano2María Cristina Gely3Universidad Nacional del Centro de la Provincia de Buenos AiresUniversidad Nacional del Centro de la Provincia de Buenos AiresUniversidad Nacional del Centro de la Provincia de Buenos AiresUniversidad Nacional del Centro de la Provincia de Buenos Aires<p>With the objective to aboard one of the challenges in Engineering teaching: It´s the application in professional practice?, along with attending to the actual requirements of achieve energetic efficiency in industrial process and to reuse wastes of food industry, this work, presents the application of heat exchange networks for the resolution of a real case: pre-treatment of waste cooking oils (WCO) withacid catalysis for biodiesel production. Different methods and software are applied to obtain the minimum amounts of heat and the heat exchange network for a processing capacity of 0,19 kg/s of WCO. A minimum temperature difference (Tmin) of 10°C is considered and the minimum requirements of heating and cooling result 4629,87 W and 10066,30 W, respectively. If this exchange network is not considered, this values increase to 26838,33 W and 21958,33 W, respectively. Applying heat exchange network, decrease 78,92% the required steam service in the process and water cooling service decreases 62,48%, demonstrating that integration reduces energetic requirements respect the non-integrated process.</p>http://rci.cujae.edu.cu/index.php/rci/article/view/251punto de pliegueredes de intercambio de calorbiodiéselaceites vegetales |
collection |
DOAJ |
language |
Spanish |
format |
Article |
sources |
DOAJ |
author |
María Fernanda Laborde Laura Ivana Orifici Ana María Pagano María Cristina Gely |
spellingShingle |
María Fernanda Laborde Laura Ivana Orifici Ana María Pagano María Cristina Gely HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS Revista Cubana de Ingeniería punto de pliegue redes de intercambio de calor biodiésel aceites vegetales |
author_facet |
María Fernanda Laborde Laura Ivana Orifici Ana María Pagano María Cristina Gely |
author_sort |
María Fernanda Laborde |
title |
HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS |
title_short |
HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS |
title_full |
HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS |
title_fullStr |
HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS |
title_full_unstemmed |
HEAT EXCHANGE NETWORKS IN BIODIESEL PRODUCTION FROM WASTE COOKING OILS |
title_sort |
heat exchange networks in biodiesel production from waste cooking oils |
publisher |
Universidad Tecnológica de La Habana José Antonio Echeverría, Cujae |
series |
Revista Cubana de Ingeniería |
issn |
2223-1781 |
publishDate |
2014-11-01 |
description |
<p>With the objective to aboard one of the challenges in Engineering teaching: It´s the application in professional practice?, along with attending to the actual requirements of achieve energetic efficiency in industrial process and to reuse wastes of food industry, this work, presents the application of heat exchange networks for the resolution of a real case: pre-treatment of waste cooking oils (WCO) withacid catalysis for biodiesel production. Different methods and software are applied to obtain the minimum amounts of heat and the heat exchange network for a processing capacity of 0,19 kg/s of WCO. A minimum temperature difference (Tmin) of 10°C is considered and the minimum requirements of heating and cooling result 4629,87 W and 10066,30 W, respectively. If this exchange network is not considered, this values increase to 26838,33 W and 21958,33 W, respectively. Applying heat exchange network, decrease 78,92% the required steam service in the process and water cooling service decreases 62,48%, demonstrating that integration reduces energetic requirements respect the non-integrated process.</p> |
topic |
punto de pliegue redes de intercambio de calor biodiésel aceites vegetales |
url |
http://rci.cujae.edu.cu/index.php/rci/article/view/251 |
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