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Dive into the research topics where José M. Palomar-Carnicero is active.

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Featured researches published by José M. Palomar-Carnicero.


International Journal of Green Energy | 2015

Olive cake improvement for bioenergy: the drying kinetics.

Pedro J. Casanova-Peláez; José M. Palomar-Carnicero; Francisco Manzano-Agugliaro; Fernando Cruz-Peragón

The main solid waste generated in the olive oil production process is the olive cake (OC). However, one main drawback of using this waste product as biomass source is the cost of transport which is close related with its water content. Thus, the drying process contributes to a cleaner production with a significant reduction in the cost of transport and consequently it will be possible to improve the use of this waste product as bioenergy. The drying rate is one of the most relevant variables when performing an accurate modelling of rotary driers. To obtain the drying rate experimental, an accurate fitting of this variable as a function of parameters, such as gas temperature and speed, layer sample thickness and moisture content is required. In this sense, this work starts describing in detail the drying kinetics in OCs. Subsequently, several parametric approaches based on linear and non-linear functions have been assessed. With this contribution, it has been highlight that artificial neural networks (ANN) with automatic regularization are the best method to perform a mathematical fitting function of this variable. Consequently, drying kinetics for OCs open up new perspectives for the use of this waste product as bioenergy.


Fuel Processing Technology | 2015

A vital stage in the large-scale production of biofuels from spent coffee grounds: The drying kinetics

Francisco J. Gómez-de la Cruz; Fernando Cruz-Peragón; Pedro J. Casanova-Peláez; José M. Palomar-Carnicero


Energy | 2014

Drying kinetics of olive stone: a valuable source of biomass obtained in the olive oil extraction.

Francisco J. Gómez-de la Cruz; Pedro J. Casanova-Peláez; José M. Palomar-Carnicero; Fernando Cruz-Peragón


Applied Thermal Engineering | 2015

Modeling of olive-oil mill waste rotary dryers: Green energy recovery systems

Francisco J. Gómez-de la Cruz; Pedro J. Casanova-Peláez; José M. Palomar-Carnicero; Fernando Cruz-Peragón


Fuel Processing Technology | 2015

Experimental determination of effective moisture diffusivity during the drying of clean olive stone: Dependence of temperature, moisture content and sample thickness

Francisco J. Gómez-de la Cruz; José M. Palomar-Carnicero; Pedro J. Casanova-Peláez; Fernando Cruz-Peragón


Energy Conversion and Management | 2012

RBF–ARX model of an industrial furnace for drying olive pomace

Pedro J. Casanova-Peláez; Fernando Cruz-Peragón; José M. Palomar-Carnicero; Rubén Dorado; Rafael López-García


Waste and Biomass Valorization | 2018

New Experimental Rotary Dryer of Olive Stone: Design, Control and Modeling

Francisco J. Gómez-de la Cruz; Pedro J. Casanova-Peláez; Fernando Cruz-Peragón; José M. Palomar-Carnicero


Applied Thermal Engineering | 2017

Characterization and analysis of the drying real process in an industrial olive-oil mill waste rotary dryer: A case of study in Andalusia

Francisco J. Gómez-de la Cruz; Pedro J. Casanova-Peláez; José M. Palomar-Carnicero; Fernando Cruz-Peragón


International Technology, Education and Development Conference | 2016

TEACHING OF THE F-CHART METHOD FOR DESIGNING SOLAR DOMESTIC HOT WATER SYSTEM USING SPREADSHEET

Ángel Gómez-Moreno; José M. Palomar-Carnicero; Fernando Cruz-Peragón


International Technology, Education and Development Conference | 2016

METHODOLOGY FOR DESIGNING RADIANT FLOOR SYSTEM IN MECHANICAL ENGINEERING STUDIES

Ángel Gómez-Moreno; José M. Palomar-Carnicero; Fernando Cruz-Peragón

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