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Application of multi-criterial analysis to evaluate the method of utilization of sludge from small wastewater treatment plants with sustainable development of rural areas

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A multi-criterial analysis has been proposed for choosing the optimal method of dewatering and final disposal of sludge from small wastewater treatment plants. A multi-criterial analysis is a method of compromise programming, selecting the best solution from four possible technological variants of sludge treatment. Based on these calculations, the best method from 4 variants was selected. It can be used in selection of optimal solution of sludge treatment and designing of small communities in rural areas.
Rocznik
Strony
97--105
Opis fizyczny
Bibliogr. 15 poz., tab., rys.
Twórcy
autor
  • Institute of Water Supply and Environment Protection, Department of Environment Engineering, Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
  • Institute of Water Supply and Environment Protection, Department of Environment Engineering, Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
autor
  • Krosno State College, Polytechnic Institute, Rynek 1, Krosno, Poland
  • Department of Environmental Engineering and Geodesy, Faculty of Production Engineering, University of Life Sciences in Lublin, ul. Leszczyńskiego 7, 20-069 Lublin, Poland
autor
  • Institute of Soil Science, Environment Engineering and Management, Faculty of Agrobioengineering, University of Life Sciences in Lublin, ul. Leszczyńskiego 7, 20-069 Lublin, Poland
Bibliografia
  • [1] GEORGOPOULOU E., HONTOU V., GAKIS N., SARAFIDIS Y., MIRASGEDIS S., LALAS D.P., LOUKATOS A., GARGOULAS MENTZIS A., ECONOMIDIS D., TRIANTAFILOPOULOS T., KORIZI K., BEAsT.: A decision- -support tool for assessing the environmental benefits and the economic attractiveness of best available techniques in industry, J. Clean. Prod., 2008, 16 (3), 359.
  • [2] LUNDIN M., MOLANDER S., MORRISON G.M., A set of indicators for the assessment of temporal variations in the sustainability of sanitary systems, Water Sci. Tech., 1999, 39 (5), 235.
  • [3] MIKOSZ J., MUCHA Z., Validation of design assumptions for small wastewater treatment plant modernization in line with new interpretation of legal requirements, Ochr. Środ., 2014, 36 (1) 45.
  • [4] BRECHET T., TULKENS H., Beyond BAT: Selecting optimal combinations of available techniques, with an example from the limestone industry, J. Environ. Manage., 2009, 90, 1790.
  • [5] ARAGONÉS-BELTRÁN P., MENDOZA-ROCA J.A., BES-PIÁ A., GARCÍA-MELÓN M., PARRA-RUIZ E., Application of multi-criteria decision analysis to jar-test results for chemicals selection in the physical-chemical treatment of textile wastewater, J. Hazard. Mater., 2009, 164 (1), 288.
  • [6] CAO Y., PAWŁOWSKI A., Energy sustainability of two parallel sewage sludge-to-energy pathways: effect of sludge volatile solids content on net energy efficiency, Environ Prot. Eng., 2012, 38 (2), 77.
  • [7] GENEROWICZ A., KULCZYCKA J., KOWALSKI Z., BANACH M., Assessment of technological solutions of municipal waste management using technology quality indicators and multicriteria analysis, Przem. Chem., 2011, 90 (5) 747.
  • [8] GENEROWICZ A., Multi-criteria analysis of waste management in Szczecin, Pol. J. Environ. Stud. 2014, 23 (1), 57.
  • [9] KOWALSKI Z., GENEROWICZ A., MAKARA A., Evaluation of municipal waste disposal technologies by BATNEEC, Przem. Chem., 2012, 91 (5), 811,
  • [10] TECLE A., FOGEL M., DUCKSTEIN L., Multicrterion selection of wastewater management alternatives, J. Water Res. Manage., 1988, 114 (4), 383.
  • [11] BENEDETTI L., DE BAETS B., NOPENS I., VANROLLEGHEM P.A., Multi-Criteria analysis of wastewater treatment plant design and control scenarios under uncertainty, Environ. Model. Soft, 2010, 25 (5), 616.
  • [12] OBARSKA-PEMPKOWIAK H., KOŁECKA K., Experiences with utilisation of sewage sludge in reed beds. Roczn. Ochr. Środ., 2006, 8, 65.
  • [13] MIKOSZ J., Wastewater management in small communities in Poland, Desalin. Water Treat., 2013, 51 (10–12), 2461.
  • [14] ROELEVELD P.J., KLAPWIJK A., EGGELS P.G., RULKENS W.H., VAN STARKENBURG W., Sustainability of municipal wastewater treatment, Water Sci. Technol., 1997, 35 (10), 221.
  • [15] BODIK I., KUBASKA M., Energy and sustainability of operation of a wastewater treatment plant, Environ. Prot. Eng., 2013, 39 (2), 15.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e731dc4e-e991-48bd-9986-936119a58278
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