汽车工业中工业共生实施障碍的优先排序——使用ISM和MICMAC分析

K. Vimal, A. Kulatunga, Lakshmanakumar Veeraragavan, M. Ravichandran, Jayakrishna Kandasamy
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引用次数: 0

摘要

生产的不断增加、组织灵活性的缺乏以及对可持续性知识的缺乏导致了原材料的枯竭和废物产生的增加。工业共生已成为负责任消费和废物利用的一种非常有效的解决方案和必要的策略。这种策略帮助不同的组织混合他们的资源,共享信息,物流和废料,通过形成一个网络来解决他们的问题,以增加利润。本研究旨在确定在组织中应用工业共生的障碍,并提出可能的解决方案。利用ISM模型和MICMAC分析可视化不同障碍对在组织中实施工业共生的影响,并在生态创新方面提高效率。本文的研究结果为中小企业管理者有效实施产业共生提供了经验和规律。该研究还改进了一个基本模型,用于检查影响生态创新和可持续框架的IS障碍,并有助于对工业共生这一生态友好理念的持续研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prioritization of barriers in industrial symbiosis implementation in automotive industry - Using ISM and MICMAC Analysis
The continuous increase in production, lack of flexibility of organizations, and lack of knowledge on sustainability have led to the depletion of raw materials and increased waste generation. Industrial symbiosis now has become a very effective solution and an essential strategy for responsible consumption and waste utilization. This strategy helps different organizations to blend their resources, share information, logistics, and waste materials to solve their problems by forming a network to increase profits. This study was directed towards identifying the barriers towards applying Industrial Symbiosis in an organization with probable solutions to them. ISM modeling and MICMAC analysis were used to visualize the impact of different barriers for implementing Industrial symbiosis in an organization and improve efficiency in terms of eco-innovation. The results of this study give experiences and rules to practicing managers in medium and small-scale industries to effectively execute Industrial Symbiosis. The study also adds to the improvement of a basic model for examining the barriers affecting IS with regards to eco-innovation and sustainable frameworks and contributes to ongoing researches on this eco-friendly idea of Industrial Symbiosis.
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