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SYSTEMIC MODEL FOR TECHNOLOGY ADOPTION BY THE CHEMICAL INDUSTRY

OCTOBER 2011   -  Volume: 86 -  Pages: 531-538

DOI:

https://doi.org/10.6036/4053

Authors:

MARTÍN ENRIQUE DURÁN GARCÍA - MARIA ANGELICA PEREZ DE OVALLES - GLADIS RINCON POLO - LUIS MENDOZA MORALES

Disciplines:

  • Economics of technological change (TRANSFERENCIA DE TECNOLOGIA )

Downloads:   261

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Received Date :   20 January 2011

Reviewing Date :   6 September 2011

Accepted Date :   11 September 2011


Key words:
modelo sistémico, adopción tecnológica, industria química, framework metodológico, tecnología química, criterios de selección, systemic model, technology adoption, chemical industry, methodological framework, chemical technology, selection criteria.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

ABSTRACT
The technology adoption by the chemical industry requires an adequate analysis of the variables involved in the technology policy of the industry. Some of these variables are: the characteristics of the technology in adoption, the acquisition conditions, the technology adjustment or the influence of the chemical industry context. A supporting tool for this task is the formulation of a systemic model in order to direct the decision making process and, at the same time, to analyze in a systematic manner the relations of the variables involved. The purpose of the present research is to propose and evaluate a Systemic Model of Chemical Technology Adoption answering the complex technological reality of the chemical industries. This work is setting within a methodological framework based on the Action-Research Method and the DESMET methodology bases, through the characteristics analysis by surveys, applied to 4 expert evaluators. As a result, it is the definition of the model dimensions and categories, the establishment of 17 characteristics and 57 sub-characteristics with their respective metrics (there were proposed 125 metrics), proved through the model evaluation by experts looking for contributions and improvements, reaching an average acceptance of all the model characteristics of 96%. Specifically, the model evaluation feature “pertinency” is 99%, the average acceptance level for the “complexity” is 98%, and for the “adjustment” and “precision” features, it was verified that the average acceptance level is 95%, which is higher than the acceptance level of 75% proposed in the model evaluation. Consequently, the model is pertinent, complete, adequate and precise.
KEY WORDS: systemic model, technology adoption, chemical industry, methodological framework, chemical technology, selection criteria.

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