The Methods for Implementing Sustainable Development in the Industry
Joanna Masternak
Uniwersytet Humanistyczno-Przyrodniczy Jana Kochanowskiego w Kielcach, Wydział Matematyczno-Przyrodniczy, Instytut Chemii, Zakład Chemii Nieorganicznej, ul. Świętokrzyska 15G, 25-406 Kielce, Poland (Poland)
Abstract
Industry is in the greatest degree responsible for the deteriorated quality of the environment. The holistic approach to production aims at prevention of environmental pollution and wastes. It begins at the stage of project design, through production phase and recycling possibilities. Technical dimension is especially devoted to look for products or technologies which are material-saving, energy-efficient and no-waste. The aim of the article is to present supportive methods for introducing the principle of sustainable development into industrial plants.
Keywords:
industry, ecodesign, cleaner production, industrial ecologyReferences
BASU A. J., VAN ZYL D. J. A., 2006, Industrial ecology framework for achieving cleaner production in the mining and minerals industry, w: Journal of Cleaner Production, vol. 14, issue 3-4, s. 299-304.
Google Scholar
DASGUPTA P., 2007, The idea of sustainable development, w: Sustainability Science, vol. 2, issue 1, s. 5-11.
Google Scholar
DEWULF J., VAN LANGENHOVE H., 2003, Exergetic material input per unit of service (EMIPS) for the assessment of resource productivity of transport commodities, w: Resources, Conservation and Recycling, vol. 38, issue 2, s. 161-174.
Google Scholar
GEHIN A., ZWOLINSKI P., BRISSAUD D., 2008, A tool to implement sustainable end-of-life strategies in the product development phase, w: Journal of Cleaner Production, vol. 16, issue 5, s. 566-576.
Google Scholar
HAUFF M., WILDERER P. A., 2008, Industrial ecology: engineered representation of sustainability, w: Sustainability Science, vol. 3, issue 1, s. 103-15.
Google Scholar
HOSSAIN K. A., KHAN E. I., HAWBOLDT K., 2008, Sustainable development of process facilities: State-of-the-art review of pollution prevention frameworks, w: Journal of Hazardous Materials, vol. 150, issue 1, s. 4-20.
Google Scholar
INYANG H. I., DE BRITO G. T., HILGER H., 2003, Waste recycling within the context of industrial ecology, w: Resources, Conservation and Recycling, vol. 39, issue 1, s. 1–2.
Google Scholar
JAŚKIEWICZ J., 2008, Dilemmas for sustainable development in Poland, w: Problemy Ekorozwoju, vol. 3 nr 1, s. 33-38.
Google Scholar
KORHONEN J., 2001, Regional industrial ecology: examples from regional economic systems of forest industry and energy supply in Finland, w: Journal of Environmental Management, vol. 63, issue 4, s. 367-375.
Google Scholar
KURK F., EAGAN P., 2008, The value of adding design-for-the-environment to pollution prevention assistance options, w: Journal of Cleaner Production, vol. 16, issue 6, s. 722-726.
Google Scholar
LI H. B., CHAI L. H., 2007, Thermodynamic analyses on technical framework of clean production, w: Journal of Cleaner Production, vol. 15, issue 4, s. 357-365.
Google Scholar
LOZANO R., 2008, Developing collaborative and sustainable organizations, w: Journal of Cleaner Production, vol. 16, issue 4, s. 499-509.
Google Scholar
LUTTROPP C., LAGERSTEDT J., 2006, EcoDesign and The Ten Golden Rules: generic advice for merging environmental aspects into product development, Journal of Cleaner Production, vol. 14, issue 15-16, s. 1396-1408.
Google Scholar
MäLER K.-G., 2008, Sustainable Development and Resilience in Ecosystems, w: Environmental and Resource Economics, vol. 39, issue 1, s. 17-24.
Google Scholar
MANLEY J. B., ANASTAS P. T., CUE B. W., 2008, Frontiers in Green Chemistry: meeting the grand challenges for sustainability in R&D and manufacturing, w: Journal of Cleaner Production, vol. 16, issue 6, s. 743-750.
Google Scholar
MASCLE C., ZHAO H. P., 2008, Integrating environmental consciousness in product/process development based on life-cycle thinking, w: International Journal of Production Economics, vol. 112, issue 1, s. 5-17.
Google Scholar
PAULI G., 1997, Zero emissions: the ultimate goal of cleaner production, w: Journal of Cleaner Production, vol. 5, issue 1-2, s. 109-113.
Google Scholar
PAWŁOWSKI A., 2006, Wielowymiarowość rozwoju zrównoważonego, w: Problemy Ekorozwoju, vol 1 nr 1, s. 23-32.
Google Scholar
PLATCHECK E. R., SCHAEFFER L., KINDLEIN W., CãNDIDO L. H. A., 2008, Methodology of ecodesign for the development of more sustainable electro-electronic equipments, w: Journal of Cleaner Production, vol. 16, issue. 1, s. 75-86.
Google Scholar
SANDNER J., 2007, Idea zrównoważonego rozwoju w holistycznej edukacji przyrodniczej, w: Problemy Ekorozwoju vol. 2 nr 2, s. 101-105.
Google Scholar
WALOSZCZYK K., 2008, Współczesna technika wobec wyzwań ekorozwoju, w: Problemy Ekorozwoju vol 2 nr 2, s. 81-88.
Google Scholar
VELEVA V., HART M., GREINER T., CRUMBLEY C., 2001, Indicators of sustainable production, w: Journal of Cleaner Production, vol. 9, issue 5, s. 447-452.
Google Scholar
Authors
Joanna MasternakUniwersytet Humanistyczno-Przyrodniczy Jana Kochanowskiego w Kielcach, Wydział Matematyczno-Przyrodniczy, Instytut Chemii, Zakład Chemii Nieorganicznej, ul. Świętokrzyska 15G, 25-406 Kielce, Poland Poland
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