Reflective backward analysis to assess the operational performance and eco-efficiency of two industrial districts
Purpose: The best strategy to apply for the future cannot disregard a careful analysis of the past and is the one capable of seizing opportunities from outside. Manufacturing sectors are characterized by sudden changes, and in this work, we analyze the ceramic tiles sector characterized by a mature technology in which innovation has played a key role. Design/methodology/approach: This study aims to provide a sectorial analysis based on a historical data set (2004–2019) to highlight how an industry is performing both operationally and in terms of eco-efficiency. For this purpose, from a methodological point of view, the data envelopment analysis (DEA) was used. Findings: The results of the analysis show that the Spanish ceramics industry shows a growing economic trend by taking advantage of lower industrial costs, while the Italian industry is characterized by a modest decline partially mitigated by exports. The industrial districts are an aggregation of companies that in the ceramic sector has allowed to combine innovation, sustainability and digitalization and is a model toward the maximization of sustainable efficiency because it is a place of aggregation of resources and ideas. Originality/value: This study experiments with an innovative way of addressing traditional industry analysis, namely, integrating the reflective management approach with DEA-based backward analysis. This provides decision makers with the basis for new interpretations of variable trends.
Year of publication: |
2021
|
---|---|
Authors: | Appolloni, Andrea ; D'Adamo, Idiano ; Gastaldi, Massimo ; Yazdani, Morteza ; Settembre-Blundo, Davide |
Published in: |
International Journal of Productivity and Performance Management. - Emerald, ISSN 1741-0401, ZDB-ID 2024364-9. - 2021 (31.12.)
|
Publisher: |
Emerald |
Saved in:
Saved in favorites
Similar items by person
-
Appolloni, Andrea, (2023)
-
Appolloni, Andrea, (2022)
-
An economic analysis of tidal energy to support sustainable development
Catalano, Matteo, (2024)
- More ...