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Waste Management Integration with Green Quality Function Deployment (G-QFD) for Healthcare Centre

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
High doses of medical waste evidence that health waste management is problematic. A case study was conducted at various health institutions. This research analyzes various issues in the area of medical waste management. The research examines the perception of staff regarding medical waste management. The purpose of the study is to investigate the level of knowledge, attitudes and role of health practitioners in the management of medical waste. Here the quality index and the environmental index of two health centers are studied; one is a private hospital and the other one a state hospital and compares these two indices with a questionnaire. To provide environmentally friendly services, customers and environmental criteria have to be taken into account in the decision-making process and distributing the Green Quality Function provides a very useful way to achieve this goal.
Rocznik
Tom
Strony
45--49
Opis fizyczny
Bibliogr. 20 poz., tab.
Twórcy
  • Industrial Engineering and Management, Sri Aurobindo Institute of Technology, Indore (M.P)
  • Department of Mechanical Engineering, Sri Aurobindo Institute of Technology, Indore (M.P)
Bibliografia
  • 1. Armstrong, B.A., Reinhardt, P.A., 2010. Managing laboratory biomedical waste using a large on-site autoclave–shredder. Journal of Chemical Health and Safety, 17(6), 33-39.
  • 2. Bakker C, 1995, Environmental information for industrial designers, Technische Universiteit Delft
  • 3. Batterman, S., 2004. Findings on an Assessment of Small-scale Incinerators for Health-care Waste. World health organization, Geneva, 2004, 1-65.
  • 4. Bier, I.D. and Cornesky, R., 2001. Using QFD to construct a higher education curriculum. Quality progress, 34(4), 64.
  • 5. Bovea, M.D., Wang, B., 2007. Redesign methodology for developing environmentally conscious products. International Journal of Production Research, 45(18-19), 4057-4072.
  • 6. Costa, A.I.A., Dekker, M., Jongen, 4. 7. 4. W. (2000). Quality function deployment in the food industry: a review. Trends in Food Science & Technology, 11(9-10), 306-314.
  • 7. Han, S.B., Chen, S.K., Ebrahimpour, M., Sodhi, M.S., 2001. A conceptual QFD planning model. International Journal of Quality & Reliability Management, 18(8), 796-812.
  • 8. Jang, Y.C., Lee, C., Yoon, O.S. and Kim, H., 2006. Medical waste management in Korea. Journal of environmental management, 80(2), 107-115.
  • 9. Knight, P., Jenkins, J.O., 2009. Adopting and applying eco-design techniques: a practitioner’s perspective. Journal of cleaner production, 17(5), 549-558.
  • 10.Lee, B.K., Ellenbecker, M.J. and Moure-Ersaso, R., 2004. Alternatives for treatment and disposal cost reduction of regulated medical wastes. Waste management, 24(2), 143-151.
  • 11. Martins, A., Aspinwall, E.M., 2001. Quality function deployment: an empirical study in the UK. Total Quality Management, 12(5), 575-588.
  • 12. Masao, K., Yoji, A., 1983. Quality Function Deployment and Company Wide Quality Control in Japan: a strategy for assuring that quality is built into products. Quality Progress, 16(10), 25-29.
  • 13. Masui, K., Sakao, T., Inaba, A., 2001. Quality function deployment for environment: QFDE (1st report)-a methodology in early stage of DfE. In Proceedings Second International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, 52-857.
  • 14. Mizuno, Y., Kaneko, C., Oikawa, Y., Ikeda, T., & Itoh, T. 1972. Novel synthesis of purine. beta-D-nucleosides via purine 8, 5'-S-anhydronucleosides. Journal of the American Chemical Society, 94(13), 4737-4739.
  • 15. Park, H.S., Jeong, J.W., 2001. Recent trends on disposal technologies of medical waste. Korean Society Solid Waste Engineering Soc, 18(1), 18-27.
  • 16. Prasad, B., 1996. Concurrent engineering fundamentals (Vol. 1). Upper Saddle River, NJ: Prentice Hall PTR.
  • 17. Prüss-Üstün, A., 1999. Safe management of wastes from health-care activities. World Health Organization.
  • 18. Ritzén, S., Lindahl, M., 2001. Selection and implementation-key activities to successful use of EcoDesign tools. In Proceedings Second International Symposium on Environmentally Conscious Design and Inverse Manufacturing, IEEE, 174-179.
  • 19. Shahin, A., 2005. Quality function deployment: A comprehensive review. Department of Management, University of Isfahan: Isfahan, Iran, 1-25.
  • 20. Valavanidis, A., Iliopoulos, N., Fiotakis, K. and Gotsis, G., 2008. Metal leachability, heavy metals, polycyclic aromatic hydrocarbons and polychlorinated biphenyls in fly and bottom ashes of a medical waste incineration facility. Waste Management & Research, 26(3), 247-255.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5505365a-3f2c-43ce-bc75-bdeb53e55226
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