Improving the management of industrial waste through the lean philosophy and industry 4.0
DOI:
https://doi.org/10.32358/rpd.2022.v8.586Keywords:
lean philosophy, waste management, industry 4.0, sustainabilityAbstract
Purpose: Given the growing importance of sustainability, an efficient model is proposed that allows the identification and quantification of industrial waste. Methodology/Approach: First, a bibliographic review of the existing models of joint application was carried out: Sustainability, Lean Philosophy, and Industry 4.0. Critical analysis of the existing models of joint application of these concepts. Preparation of the model proposal and analysis of the results. Findings: The proposed model, in addition to contributing to compliance with current laws, allows a better perception of the waste produced, including its characterization. This promotes the directing of waste to responsible and competent entities for its collection and recycling, showing a change in the company in environmental management policies. Research Limitation/implication: The inherent cost of reorganizing the layout design can be limiting, as it depends on the type, size, business characteristics, and flexibility of your existing production system. Originality/Value of paper: It is a new model of joint application of the three concepts and fills the void of the existing models. This allows organizations to have a better understanding of the waste produced.Downloads
References
Agrawal, K & Paharia, A. (2019). Layout optimization of machining process of the side frame of cotton ginning M/C using FLP. International Journal of Advance Research and Development, 3(4), 260-265.
Ali, S., & Xie, Y. (2021). The impact of Industry 4.0 on organizational performance: the case of Pakistan's retail industry. European Journal of Management Studies. https://doi.org/10.1108/EJMS-01-2021-0009
Alshamsi, A., Anwar, Y, Almulla, M., Aldohoori, M., Hamad, N. & Awad, M. (2017). Monitoring Pollution: Applying IoT to Create a Smart Environment. International Conference on Electrical and Computing Technologies and Applications (ICECTA), 1-4. https://doi.org/10.1109/ICECTA.2017.8251998
Araújo, N., Pacheco, V., & Costa, L. (2021). Smart Additive Manufacturing: The Path to the Digital Value Chain. Technologies, 9(4), 88. https://doi.org/10.3390/technologies9040088
Attaran, M. (2021). The impact of 5G on the evolution of intelligent automation and industry digitization. Journal of Ambient Intelligence and Humanized Computing, 1-17. https://doi.org/10.1007/s12652-020-02521-x
Awuchi, C., Twinomuhwezi, H., Awuchi, C. & Ikechukwu, A. (2020). Industrial Waste Management, Treatment, and Health Issues: Wastewater, sold and Electronic Wastes. European Academic Research, 8, 1081-1119.
Babalola, F. D. & Jegede, E. B., 2020. Participation of stakeholders in sustainable management of a state-owned forest reserve in kwara state, Nigeria. Revista Produção e Desenvolvimento, Rio de Janeiro, 6, e504, 1-11. https://doi.org/10.32358/rpd.2020.v6.504
Batinga, G. L., & Borges, R. C. (2022). Ambiguities of industry 4.0: gains, efficiency, and worker tensions. Revista Produção e Desenvolvimento, 8(1), e595. https://doi.org/10.32358/rpd.2022.v8.595
Baumer-Cardoso, M. I., Campos, L. M. S., Santos, P. P. P. & Frazzon, E. (2020). Simulation-based analysis of catalyzers and tradeoff in Lean & Green manufacturing. Journal of Cleaner Production. 242, 118411. https://doi.org/10.1016/j.jclepro.2019.118411
Chévez, P. J., Ruggeri, E., Martini, I. & Discoli, C. (2019). Factores clave en la implementación de políticas energéticas en Italia. Revista de Produção e Desenvolvimento, 5, e384, 1-21. https://doi.org/10.32358/rpd.2019.v5.384
Duarte, K. S., Lima, T. A. C., Alves, L. R., Rios, P. A. P., & Motta, W. H. (2021). The circular economy approach for reducing food waste: a systematic review. Revista Produção e Desenvolvimento, 7. https://doi.org/10.32358/rpd.2021.v7.572
Ezeudu, O. B., Agunwamba, J. C., Ezeasor, I. C., & Madu, C. N. (2019). Sustainable production and consumption of paper and paper products in Nigeria: A review. Resources, 8(1), 53. https://doi.org/10.3390/resources8010053
Fatimah, Y. A., Govindan, K., Murniningsih, R. & Setiawan, A. (2020). Industry 4.0 based sustainable circular economy approach for smart waste management system to achieve sustainable development goals: A case study of Indonesia. Journal of Cleaner Production, 269, 122263. https://doi.org/10.1016/j.jclepro.2020.122263
Gebeyehu, S. G., Abebe, M., & Gochel, A. (2022). Production lead time improvement through lean manufacturing. Cogent Engineering, 9(1), 2034255. https://doi.org/10.1080/23311916.2022.2034255
Godswill, A. C., Gospel, A. C., Otuosorochi, A. I., & Somtochukwu, I. V. (2020). Industrial and community waste management: global perspective. American Journal of Physical Sciences, 1(1), 1-16. https://doi.org/10.47604/ijf.1024
Kamble, S., Gunasekaran, A. & Dhone, N. C. (2020). Industry 4.0 and Lean manufacturing practices for sustainable organizational performance in Indian manufacturing companies. International Journal of Production Research, 58(5), 1319-1337. https://doi.org/10.1080/00207543.2019.1630772
Maracajá, K F. B. & Oliveira, B. R. S. (2020). Indústria 4.0 e sustentabilidade: um estudo de caso sobre o processo de reciclagem de paletes de uma grande empresa em Campina Grande-PB. Qualitas Revista Eletrônica, 21(2). https://doi.org/10.18391/req.v21i2.5624
Marques, P., Manfroi, D., Deitos, E., Cegoni, J., Castilhos, R., Rochol, J., Pignaton, E. & Kunst, R. (2019). An IoT-based smart cities infrastructure architecture applied to a waste management scenario. Ad Hoc Networks, 87, 200-208. https://doi.org/10.1016/j.adhoc.2018.12.009
Mendes, D. S. F. T., Navas, H. V. G., & Charrua-Santos, F. M. B. (2022). Proposal for a maintenance management system based on the lean philosophy and industry 4.0. Revista Produção e Desenvolvimento, 8(1), e587. https://doi.org/10.32358/rpd.2022.v8.587
Narasimharaju, S. R., Zeng, W., See, T. L., Zhu, Z., Scott, P., Jiang, X., & Lou, S. (2022). A comprehensive review on laser powder bed fusion of steels: Processing, microstructure, defects and control methods, mechanical properties, current challenges and future trends. Journal of Manufacturing Processes, 75, 375-414. https://doi.org/10.1016/j.jmapro.2021.12.033
Sá, J. C., Vaz, S., Carvalho, O., Lima, V., Morgado, L., Fonseca, L., ... & Santos, G. (2022). A model of integration ISO 9001 with Lean six sigma and main benefits achieved. Total Quality Management & Business Excellence, 33(1-2), 218-242. https://doi.org/10.1080/14783363.2020.1829969
Published
How to Cite
Issue
Section
License
All content on this work is licensed under a Creative Commons BY Attribution 4.0 Unported license. The articles are free to use, with their CC BY attributions of license.
The journal is not responsible for the opinions, ideas and concepts emitted in the texts, as they are the sole responsibility of its author (s).
The publisher has the right to reject articles that in the evaluation process have been detected signs of plagiarism. The articles that have been detected indications of plagiarism after the publication, will be excluded from the edition. And the indication of the problem will be informed in the place of the text, keeping the same amount of pages.
This journal adopts the principles of ethical conduct of international quality Committee on Publication Ethics (COPE), as well as the parameters of Integrity in the Scientific Activity indicated by SCOPUS and SCIELO.