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Environmental safety evaluation from galvanic sludge during long-term storage

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article analyses the ecological state of the soil in an enterprise with a galvanic shop that produces chips and microcircuits. The problem of production waste storage in open areas is investigated. Environmental hazards during long-term storage of sludge have been identified. The composition of the sludge obtained after sewage treatment of the production of the copper line was investigated. A method for predicting the level and depth of soil salinity during long-term sludge storage is proposed. The experience of reuse of copper extracted from sludge is analysed.
Słowa kluczowe
Rocznik
Strony
105--113
Opis fizyczny
Bibliogr. 16 poz., rys., tab., wykr., wzory
Twórcy
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”, Ukraine
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”, Ukraine
Bibliografia
  • [1] Baliuk S., Nosonenko A., Classification of the Ukrainian irrigated soils in accordance with a level of their salinization, alkalinization and alkalinity, Journal of Soil Science, 2008, Vol. 9, 1, pp. 27-31.
  • [2] Bondarenko I.V., Anischenko L.Y., Rudyk Y.I., Substantiation for enhancement of environmental safety of waste management systems through forecasting efficiency of specialized equipment, Visnyk of Lviv State University, 2017, 2 (16), pp. 119-128.
  • [3] Chervonij I., Bredihin V., Gritsaj V., Іgnatyev V., Іvashchenko V., Non-ferrous metallurgy of Ukraine, monograph, ZDIA, Zaporizhzhya, 2014, p. 380.
  • [4] Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 establishing a framework for Community action in the field of water policy, 2000, Official Journal of the European Communities, L 327, Vol. 43, pp. 68-72.
  • [5] DSTU 3866-99, 1999, Soils. Classification of soil by level of secondary salinity, State Standard of Ukraine, Kyiv, p. 6.
  • [6] Dudyuk V., Gobela V., Some theoretical approaches to the definition of environmental security, Visnyk NLTU of Ukraine, 25, 2015, pp. 130-135.
  • [7] Kanilo P., Greenhouse effect. Man-made environment, Visnyk of HN Road-transport University, Kharkiv 2015, p. 312.
  • [8] Code of Ukraine about depths. Forest Code of Ukraine. Water Code of Ukraine, Paluvoda, Kyiv 2015, p. 180.
  • [9] Law of Ukraine. About environmental protection. Water conservation, 1994, State Standard of Ukraine, Kyiv, p. 64.
  • [10] Melnik O., Galvanic sludge, Visnyk (journal) of Sumy National University, 2011, 46, pp. 185-189.
  • [11] National report on the state of the natural environment in Ukraine, Kyiv 2018, Ministry of Environment and Natural Resources, р. 350.
  • [12] Nigmatulin R., Multiphase Environment Dynamics, Nauka, Moskva 1987, p. 360.
  • [13] Nester A., Rogov V., Wastewater renovation of circuit board manufacture, Visnyk of Sankt-Peterburg University, The series of books: Physics and Chemistry, 2015, pp. 72-79.
  • [14] Polovij A., Gutsal A., Dronova O., Soil science, monograph, Ekologiyu, Odessa 2013, p. 668.
  • [15] Protasenko O.F., Ivashura A.A., The role of a healthy environment in creating safe conditions for human activity, Information and Communication Technology, 80, HAI, Kharkiv 2018, pp. 210-216.
  • [16] Serdyuk S., Lunova O., Ahieva O., Kamianska V., Small rivers of Ukraine, Journal of Donetsk Mining Institute, 2017, 1 (40), pp. 101-106.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b00e7dc5-ca79-45ba-b153-2d3495c39fee
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