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Autor
Stejskal Bohdan (Mendel University in Brno), Mašíček Tomáš (Mendel University in Brno)
Tytuł
Quantitive and Qualitative Analysis of Household Waste : Comparison of Official Data and Results of Case Study
Źródło
Infrastruktura i Ekologia Terenów Wiejskich, 2016, nr IV/4, s. 1867-1877, rys., tab., bibliogr. 16 poz.
Infrastructure and Ecology of Rural Areas
Słowa kluczowe
Gospodarstwa domowe, Odpady, Analiza jakościowa, Analiza ilościowa, Badania ankietowe, Studium przypadku
Households, Wastes, Qualitative analysis, Quantitative analysis, Questionnaire survey, Case study
Uwagi
summ.
Abstrakt
Statistical data of household waste management and relevant data found by one year long direct survey at five households were compared. While the composition of residual (mixed) household waste is determined by sieve analysis and manual after sorting to predetermined groups (and the material composition of waste that passes through a sieve mesh of 8x8 mm openings is not detected by this analysis), during the direct survey in households all the household waste is sorted to predetermined groups. Official information systems report that average total amount of household waste is 301 kg per person and just less than 4 % of it is sorted to usable fractions. The direct survey shows that average total amount of household waste is just 164 kg per person and it is possible to sort 63 % of it.(original abstract)
Pełny tekst
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Bibliografia
Pokaż
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  2. Burnley, J.S., (2007). A review of municipal solid waste composition in the United Kingdom. Waste management 27 (2007), 1274-1285
  3. Chang, N.-B., Davila, E., (2008). Municipal solid waste characterizations and management strategies for the Lower Rio Grande Valley, Texas. Waste Management 28 (2008), 776-794.
  4. Czech Statistical Office (Český statistický úřad), (2016). Produkce, využití a odstranění odpadů. Available at https://www.czso.cz/csu/czso/produkce-vyuziti-a-odstraneniodpadu-2014
  5. Dahlén, L., Lagerkvist, A., (2008). Methods for household waste composition studies. Waste Management 28 (2008), 1100-1112.
  6. European Commision, (2016). Circular economy package - Four legislative proposals on waste. Available at http://www.europarl.europa.eu/RegData/etudes/BRIE/2016/583824/ EPRS_BRI(2016)583824_EN.pdf
  7. Horttanainen, M., Teirasvuo, N., Kapustina, V., Hupponen, M., Luoranen, M. (2013). The composition, heating value and renewable share of the energy kontent of mixed municipal solid waste in Finland. Waste Management 33 (2013), 2680-2686.
  8. Ministry of the Environment of the Czech Republic (Ministerstvo životního prostředí), (2016). Souhrnná data o odpadovém hospodářství za období 2009-2015. Available at http://www.mzp.cz/cz/odpadove_hospodarstv _data_2015
  9. Pačesová, T., (2013). Možnosti recyklace využitelných složek komunálních odpadů. In Odpady a obce 2013, pp 87-90. Available at http://www.ekokom.cz/uploads/attachments/ Obecne/sborniky/sbornik_Odpady_a_obce_2013.pdf
  10. Petersen, C.M., (2005). Quality control of waste to incineration - waste composition analysis in Lidkoping, Sweden. Waste Management 23 (2005), 527-533.
  11. Petersen, L., Dahl, C.K., Esbensen, K.H., (2004). Representative mass reduction in sampling - a critical survey of techniques and hardware. Chemik. Intel. Lab. Syst. 74 (2004), 95-114.
  12. Sharma, M., McBean, E., (2009). Strategy for use of alternative waste sort sizes for characterizing solid waste composition. Waste Management 27 (2009), 38-45.
  13. Steel, E.A., Hickox, W., Moulton-patterson, L., (1999). Statewide Waste Characterization Study Results and Final Report.
  14. Wagland, S.T., Veltre, F., Longhurst, P.J., (2012). Development of an image-based analysis method to determine the physical composition of a mixed waste material. Waste Management 32 (2012), 245-248.
  15. WRAP (Waste & Resources Action Programme), (2009). Household Food and Drink Waste in the UK, October 2009.
  16. Zorpas, A.A., Lasaridi, K., (2013). Measuring waste prevention. Waste Management 33 (2013), 1047-1056.
Cytowane przez
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ISSN
1732-5587
Język
eng
URI / DOI
http://dx.medra.org/10.14597/infraeco.2016.4.4.140
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