iteso
Departamento de Procesos Tecnológicos e Industriales
El departamento centra su estudio en las ciencias aplicadas y la tecnología para la transformación de los recursos naturales en beneficio de la humanidad. 
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What are Research Programs (RPs)?

They organize the networks of problems that the university investigates, grouping common interests of researchers.

Research Programs (RPs) are organizational structures attached to a department or center, which guide and promote research in that or several departments whose substantive task is to generate relevant knowledge, in accordance with the Mission and Fundamental Orientations (OFI) of ITESO.

Currently, ITESO has ten research projects distributed across eleven departments, encompassing 47 lines of inquiry, objects, or problems on which the university conducts research. These projects generate theoretical and practical knowledge in areas such as technological development; sociocultural production; human rights; democracy; human habitat; natural resources; the environment; psycho-socio-cultural processes; socio-educational practices; health; economics; marketing; business development; alternatives to social, environmental, economic, and political inequalities; and social practices that manifest the moral dimension of human life, among others.

Research Projects (RPs) are spaces that allow us to generate and share research across various fields of knowledge, thereby fostering interdisciplinarity and collaborative networks among researchers throughout the university. We aim to promote high-quality research that helps solve the problems we face as a society and enables networking with other universities.

Department of Technological and Industrial Processes

Its Research Program (RP) is geared towards activities that allow for direct or indirect intervention in national problems. It boasts a multidisciplinary physical, instrumental, and intellectual infrastructure that enables comprehensive solutions in the development of research, development, and innovation (R&D&I) projects. To this end, its work is organized into seven lines of action.

Direct Lines.

Environmental Management: Improve knowledge about ecosystem services and their relationship to human health and well-being. Develop and apply methodologies to understand, quantify, and predict cumulative environmental changes caused by water, urban, and energy projects. Develop applied knowledge, technology, and management tools to prevent, mitigate, or compensate for changes in ecosystems and their impacts on vulnerable communities and future generations.

Energy transition: Develop technology for energy saving and efficient use in production processes. Develop applied knowledge and technology for harnessing renewable energy in processes that are economical and timely for addressing domestic or productive, rural or urban problems.

Food Sovereignty: Study agricultural products containing underutilized bioactive substances and explore their full potential. Design and develop functional foods that prevent acute and chronic diseases using probiotic microorganisms and nutraceuticals. Develop processes for the secondary use of food industry waste to achieve better economic returns and a reduced environmental impact. Study agricultural supply chains and propose alternatives to improve their economic performance and reduce their environmental impact.

Health: Develop prevention systems, predictive intelligence, and more accurate and intuitive devices in the areas of functional food analysis, cell therapy, and the development of biologically compatible prostheses.

Education: To promote the development of competence in science, technology, engineering and mathematics (STEM) through student participation in research, development and innovation projects.

Alternative Lines (Technological and Process Development).

Process Engineering: Research projects focused on finding efficient processes that adapt to the diverse production and distribution models of the food, energy, environmental, and medical industries are developed within the Industrial Engineering, Chemical Engineering, and postgraduate programs in Quality Engineering and Management. This is complemented by technological development through the Master's program in Product and Process Engineering.

Instrumentation: From Mechanics and Mechatronics, highly efficient tools are generated that contribute to the study of national problems through the generation of instrumentation and equipment that contribute to the growth of the community and industry.

Program Coordinator:
Dr. Carmen Patricia Guillén Flores
cguillen@iteso.mx

Investigación

What are Research Programs (RPs)?

They organize the networks of problems that the university investigates, grouping common interests of researchers.

Research Programs (RPs) are organizational structures attached to a department or center, which guide and promote research in that or several departments whose substantive task is to generate relevant knowledge, in accordance with the Mission and Fundamental Orientations (OFI) of ITESO.

Currently, ITESO has ten research projects distributed across eleven departments, encompassing 47 lines of inquiry, objects, or problems on which the university conducts research. These projects generate theoretical and practical knowledge in areas such as technological development; sociocultural production; human rights; democracy; human habitat; natural resources; the environment; psycho-socio-cultural processes; socio-educational practices; health; economics; marketing; business development; alternatives to social, environmental, economic, and political inequalities; and social practices that manifest the moral dimension of human life, among others.

Research Projects (RPs) are spaces that allow us to generate and share research across various fields of knowledge, thereby fostering interdisciplinarity and collaborative networks among researchers throughout the university. We aim to promote high-quality research that helps solve the problems we face as a society and enables networking with other universities.

Department of Technological and Industrial Processes

Its Research Program (RP) is geared towards activities that allow for direct or indirect intervention in national problems. It boasts a multidisciplinary physical, instrumental, and intellectual infrastructure that enables comprehensive solutions in the development of research, development, and innovation (R&D&I) projects. To this end, its work is organized into seven lines of action.

Direct Lines.

Environmental Management: Improve knowledge about ecosystem services and their relationship to human health and well-being. Develop and apply methodologies to understand, quantify, and predict cumulative environmental changes caused by water, urban, and energy projects. Develop applied knowledge, technology, and management tools to prevent, mitigate, or compensate for changes in ecosystems and their impacts on vulnerable communities and future generations.

Energy transition: Develop technology for energy saving and efficient use in production processes. Develop applied knowledge and technology for harnessing renewable energy in processes that are economical and timely for addressing domestic or productive, rural or urban problems.

Food Sovereignty: Study agricultural products containing underutilized bioactive substances and explore their full potential. Design and develop functional foods that prevent acute and chronic diseases using probiotic microorganisms and nutraceuticals. Develop processes for the secondary use of food industry waste to achieve better economic returns and a reduced environmental impact. Study agricultural supply chains and propose alternatives to improve their economic performance and reduce their environmental impact.

Health: Develop prevention systems, predictive intelligence, and more accurate and intuitive devices in the areas of functional food analysis, cell therapy, and the development of biologically compatible prostheses.

Education: To promote the development of competence in science, technology, engineering and mathematics (STEM) through student participation in research, development and innovation projects.

Alternative Lines (Technological and Process Development).

Process Engineering: Research projects focused on finding efficient processes that adapt to the diverse production and distribution models of the food, energy, environmental, and medical industries are developed within the Industrial Engineering, Chemical Engineering, and postgraduate programs in Quality Engineering and Management. This is complemented by technological development through the Master's program in Product and Process Engineering.

Instrumentation: From Mechanics and Mechatronics, highly efficient tools are generated that contribute to the study of national problems through the generation of instrumentation and equipment that contribute to the growth of the community and industry.

Program Coordinator:
Dr. Carmen Patricia Guillén Flores
cguillen@iteso.mx

 

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iteso
Dirección del departamento
Mtro. Juan Pablo Zatarain Hernández

Es Ingeniero en Electrónica por el Instituto Tecnológico de La Laguna, Maestro en Sistemas de Calidad y Productividad por el Tecnológico de Monterrey (ITESM) y cuenta con un posgrado de especialidad en Mejora de Procesos de Negocios por el ITESO. Asimismo, está certificado como Black Belt por la American Society for Quality (ASQ) y actualmente es candidato a Doctor en Movilidad Urbana, Transporte y Territorio por la Universidad de Guadalajara.

Cuenta con más de 20 años de experiencia profesional en las industrias electrónica y automotriz, en las que ha desempeñado posiciones de responsabilidad relacionadas con manufactura, calidad, mejora de procesos, servicio a clientes, almacenes, logística y distribución. Esta trayectoria le ha permitido vincular de manera permanente la experiencia empresarial con la formación académica y el desarrollo de proyectos orientados a la solución de problemas organizacionales y productivos.

Actualmente se desempeña como director del Departamento de Procesos Tecnológicos e Industriales del ITESO, institución en la que ha desarrollado una trayectoria académica y de gestión universitaria por más de 24 años. Ha sido coordinador del programa de Ingeniería Industrial y de la Maestría en Ingeniería y Gestión de la Calidad, además de participar en diversos espacios colegiados de la universidad, entre ellos el Consejo Universitario y el Comité Académico del ITESO.

Posee una sólida trayectoria docente en programas de licenciatura, posgrado, diplomados, cursos de especialización y educación continua, principalmente en áreas relacionadas con ingeniería industrial, calidad, productividad, manufactura, logística, cadena de suministro y mejora de procesos, combinando la formación de estudiantes con actividades de coordinación académica, diseño de programas y vinculación con organizaciones.

En el ámbito internacional, ha participado como profesor visitante en la Technische Hochschule Ulm, en Alemania, fortaleciendo su experiencia en contextos académicos interculturales y en la vinculación internacional de la educación superior.

A lo largo de su trayectoria en el ITESO ha recibido diversos reconocimientos por su labor académica y compromiso universitario, entre los que destaca el Premio Pedro Arrupe. Su trabajo se ha caracterizado por integrar la experiencia industrial, la docencia, la gestión académica y la investigación aplicada, con especial interés en los campos de la calidad, la mejora de procesos, la manufactura, la logística y la movilidad urbana.

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Datos de contacto:

33 3669 3434, ext. 4128 
zatarain@iteso.mx 

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