Open Access
Issue
E3S Web Conf.
Volume 328, 2021
International Conference on Science and Technology (ICST 2021)
Article Number 05010
Number of page(s) 7
Section Material Theory, Modeling & Characterisation, System Manufacture, Dynamic System
DOI https://doi.org/10.1051/e3sconf/202132805010
Published online 06 December 2021
  1. Ibrahim, D., Bankole, O. C., Ma’aji, S. A., Ohize, E. J., & Abdul, B. K. (2013). Assessment of the strength properties of polystyrene material used in building construction in Mbora district of Abuja, Nigeria. International Journal of Engineering Research and Development, 6(12), 80-84. [Google Scholar]
  2. Smith, L., & Ball, P. (2012). Steps towards sustainable manufacturing through modelling material, energy and waste flows. International Journal of Production Economics, 140(1), 227-238. [CrossRef] [Google Scholar]
  3. García, M. T., Gracia, I., Duque, G., de Lucas, A., & Rodríguez, J. F. (2009). Study of the solubility and stability of polystyrene wastes in a dissolution recycling process. Waste management, 29(6), 1814-1818. [CrossRef] [Google Scholar]
  4. Aljaibachi, R., & Callaghan, A. (2018). Impact of polystyrene microplastics on Daphnia magna mortality and reproduction in relation to food availability. PeerJ, 6, e4601. [CrossRef] [PubMed] [Google Scholar]
  5. Amirshaghaghi, Z. A. H. R. A., Djomeh, Z. E., & Oromiehie, A. B. D. U. L. R. A. S. O. U. L. (2011). Studies of migration of styrene monomer from polystyrene packaging into the food simulant. Iranian Journal of Chemical Engineering, 8(4), 43-49. [Google Scholar]
  6. Pajaro-Castro, N., Caballero-Gallardo, K., & Olivero-Verbel, J. (2014). Identification of volatile organic compounds (VOCs) in plastic products using gas chromatography and mass spectrometry (GC/MS). Revista Ambiente & Água, 9(4), 610-620. [Google Scholar]
  7. Molamohamadi, Z., & Ismail, N. (2013). Developing a new scheme for sustainable manufacturing. International Journal of Materials, Mechanics and Manufacturing, 1(1), 1-5. [CrossRef] [Google Scholar]
  8. Yuan, C., Zhai, Q., & Dornfeld, D. (2012). A three-dimensional system approach for environmentally sustainable manufacturing. CIRP annals, 61(1), 39-42. [CrossRef] [Google Scholar]
  9. Marten, B., & Hicks, A. (2018). Expanded Polystyrene Life Cycle Analysis Literature Review: An Analysis for Different Disposal Scenarios. Sustainability: The Journal of Record, 11(1), 29-35. [CrossRef] [Google Scholar]
  10. Osemeahon, S. A., Barminas, J. T., & Jang, A. L. (2013). Development of Waste Polystyrene as a binder for emulsion paint formulation I: Effect of polystyrene Concentration. The International Journal of Engineering and Science (IJES), 2(8), 30-5p. [Google Scholar]
  11. Rouabah, F., Dadache, D., & Haddaoui, N. (2012). Thermophysical and mechanical properties of polystyrene: influence of free quenching. ISRN Polymer Science, 2012. [Google Scholar]
  12. García, M. T., Gracia, I., Duque, G., de Lucas, A., & Rodríguez, J. F. (2009). Study of the solubility and stability of polystyrene wastes in a dissolution recycling process. Waste management, 29(6), 1814-1818. [CrossRef] [Google Scholar]
  13. Taghavi, N. (2015). Sustainable Manufacturing Strategy: Identifying Gaps in Theory and Practice (Doctoral dissertation, Chalmers University of Technology). [Google Scholar]
  14. Vigneswaran, C., Pavithra, V., Gayathri, V., & Mythili, K. (2015). Banana fiber: scope and value added product development. Journal of Textile and Apparel, Technology and Management, 9(2). [Google Scholar]
  15. Roni, M., Jabar, J., Muhamad, M. R., & Murad, M. (2017). Sustainable manufacturing drivers and firm performance: Moderating effect of firm size. International J. of Adv. & Applied Scien., 4(12), 243-249. [Google Scholar]
  16. Nassar, I. M., Kabel, K. I., & Ibrahim, I. M. (2012). Evaluation of the effect of waste polystyrene on performance of asphalt binder. ARPN J. of Sci. & Tech., 2(10), 927-935. [Google Scholar]
  17. Ngugi, H. N., Kaluli, J. W., & Abiero-Gariy, Z. Use of expanded polystyrene technology and materials recycling for building construction in Kenya. American Journal of Engineering and Technology Management, 2(5), 64-71, (2017). [CrossRef] [Google Scholar]
  18. Ede, A. N., Alegiuno, V., & Awoyera, P. O. (2014). Use of advanced plastic materials in Nigeria: Performance assessment of expanded polystyrene building technology system. Use of Advanced Plastic Materials in Nigeria: Performance Assessment of Expanded Polystyrene Building Technology System, 3(4), 301-308. [Google Scholar]
  19. Ngugi, H. N., Kaluli, J. W., & Abiero-Gariy, Z. (2017). Use of expanded polystyrene technology and materials recycling for building construction in Kenya. American Journal of Engineering and Technology Management, 2(5), 64-71. [CrossRef] [Google Scholar]
  20. Sekhar, V. C., Nampoothiri, K. M., Mohan, A. J., Nair, N. R., Bhaskar, T., & Pandey, A. (2016). Microbial degradation of high impact polystyrene (HIPS), an e-plastic with decabromodiphenyl oxide and antimony trioxide. Journal of hazardous materials, 318, 347-354. [CrossRef] [PubMed] [Google Scholar]
  21. Ocampo, L., & Clark, E. (2015). A sustainable manufacturing strategy decision framework in the context of multi-criteria decision-making. Jordan Journal of Mechanical & Industrial Engineering, 9(3). [Google Scholar]
  22. Nordin, N., Ashari, H., & Rajemi, M. F. (2014). A Case Study of Sustainable Manufacturing Practices’. Journal of Advanced Management Science Vol, 2(1), 12-16. [CrossRef] [Google Scholar]
  23. Jawahir, I. S., Badurdeen, F., & Rouch, K. E. (2015). Innovation in sustainable manufacturing education. Universitätsverlag der TU Berlin. [Google Scholar]
  24. Deif, A. M. (2011). A system model for green manufacturing. Journal of Cleaner Production, 19(14), 1553-1559. [CrossRef] [Google Scholar]
  25. Mohiuddin, A. K. M., Saha, M. K., Hossian, M. S., & Ferdoushi, A. (2014). Usefulness of banana (Musa paradisiaca) wastes in manufacturing of bio-products: a review. The Agriculturists, 12(1), 148-158. [CrossRef] [Google Scholar]
  26. Ceptureanu, E., Ceptureanu, S., Bologa, R., & Bologa, R. (2018). Impact of Competitive Capabilities on Sustainable Manufacturing Applications in Romanian SMEs from the Textile Industry. Sustainability, 10(4), 942. [CrossRef] [Google Scholar]
  27. Pathak P, Singh MP (2017) Sustainable Manufacturing Concepts: A Literature Review. International Journal of Engineering Technologies and Management Research 4:1-13. https://doi.org/10.5281/zenodo.833990 [Google Scholar]
  28. Moldavska, A., & Welo, T. (2017). The concept of sustainable manufacturing and its definitions: A content analysis based literature review. Journal of Cleaner Production, 166, 744-755. [CrossRef] [Google Scholar]
  29. Alayón, C. (2016). Exploring sustainable manufacturing principles and practices (Doctoral dissertation, Jönköping University, School of Engineering). [Google Scholar]
  30. Rosen, M. A., & Kishawy, H. A. (2012). Sustainable manufacturing and design: Concepts, practices and needs. Sustainability, 4(2), 154-174. [Google Scholar]
  31. Barzegar, M., Ehtesham Rasi, R., & Niknamfar, A. H. (2018). Analyzing the Drivers of Green Manufacturing Using an Analytic Network Process Method: A Case Study. International Journal of Research in Industrial Engineering, 7(1), 61-83. [Google Scholar]
  32. Taghavi, N. (2015). Sustainable Manufacturing Strategy: Identifying Gaps in Theory and Practice (Doctoral dissertation, Chalmers University of Technology). [Google Scholar]
  33. Nukmal, N., Umar, S., Amanda, S. P., & Kanedi, M. (2018). Effect of styrofoam waste feeds on the growth, development and fecundity of mealworms (Tenebrio molitor). J Biol. Sci, 18, 24-28. [Google Scholar]
  34. Organdi, Iwuozor Kingsley. 2018. Removal of Heavy Metals from Their Solution Using Polystyrene Adsorbent (Foil Take-Away Disposable Plates). International Journal of Environmental Chemistry. (2018); 2(2): 29-38. http://www.sciencepublishinggroup.com/j/ijec. doi: 10.11648/j.ijec.20180202.11. ISSN: 2640-1452 (Print); ISSN: 2640-1460 (Online). [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.