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Assessment of soil salinity from galvanic sludge during s long-term storage in open areas

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article analyzes 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 analyzed. Maximum service life of packaging made of polyvinyl chloride to save the sludge was determined.
Słowa kluczowe
Rocznik
Strony
206--214
Opis fizyczny
Bibliogr. 23 poz., rys., tab., wykr., wzory
Twórcy
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”
Bibliografia
  • [1] Babij, P., Vyshnevskyi, V., Shevchuk, S.: River Ros and and its water use, monograph, Interpres, Kyiv, 2016, 152 p.
  • [2] 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.
  • [3] 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, Journal of Lviv State University, 2017, 2, (16), pp. 119-128.
  • [4] Chervonij, I., Bredihin, V., Gritsaj, V., Іgnatyev, V., Іvashchenko, V. : Non-ferrous metallurgy of Ukraine, monograph, ZDIA, Zaporizhzhya, 2014, 380 p.
  • [5] 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.
  • [6] DSTU 3866–99, 1999, Soils. Classification of soil by level of secondary salinity, State Standard of Ukraine, Kyiv, 6 p.
  • [7] Kanilo, P.: Greenhouse effect. Man-made environment, Journal of HN Road-transport University, Kharkiv, 2015, 312 p.
  • [8] Code of Ukraine about depths. Forest Code of Ukraine. Water Code of Ukraine, 2015, Paluvoda, Kyiv, 180 p.
  • [9] Law of Ukraine. About environmental protection. Water conservation, 1994, State Standard of Ukraine, Kyiv, 64 p.
  • [10] Martsul, V., Zalygina, O., Likhachova, A., Romanovskij, V. : Galvanic waste water treatment on plants of Belarus, Journal BGTU, series “Chemistry and technology of inorganic substances”, 2013, 3, pp. 61-66.
  • [11] Melnik, O. : Galvanic sludge, Journal of Sumy National University, 2011, 46, pp. 185-189.
  • [12] National report on the state of the natural environment in Ukraine, 2018, Kyiv, Ministry of Environment and Natural Resources, 350 р.
  • [13] Nigmatulin, R.: Multiphase Environment Dynamics, Nauka, Moskva, 1987, 360 p.
  • [14] Nester, A., Rogov, V. : Wastewater renovation of circuit board manufacture, Journal of Sankt-Petersburg University. The series of books 4: Physics and Chemistry, 2015, 2(60), pp. 72-79.
  • [15] Nester, A.A.: Purification of waste water from frozen boards, monograph, National University Publishing House, Khmelnitsky, 2016, 219 p.
  • [16] Polovij, A., Gutsal, A., Dronova, O. : Soil science, monograph, Ekologiya, Odesa, 2013, 668 p.
  • [17] 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.
  • [18] Sanitary regulations and code No 4630-88. Protection of water surface from contamination, 1988, Ministry of Public Health, Moskva, 59 p.
  • [19] Serdyuk, S., Lunova, O., Ahieieva, O., Kamianska, V.: Small rivers of Ukraine: geo-ecological review of the issues, Journal of Donetsk Mining Institute, 2017, 1 (40), pp. 101-106.
  • [20] Serikov, J.A., Kozhenevski, L.F.: Vital functions safety - securitology. Problems, objective, safety methods, KNUMG, Kharkiv, 2012, 112 p.
  • [21] Shmandij, V., Klimenko, M., Golik, Yu., Prishchepa, A.: Environmental safety, OLDI, Kherson, 2013, 366 p.
  • [22] Sinyutkin, A., Suprunchuk, V., Ivaniuk, E., Kostoglod, O.: Utilization of galvanic sludge, Journal Issues of Chemistry and Chemical Technology, 2012, 2, pp. 175-178.
  • [23] Trifonova, T., Selivanova, N., Selivanov, O., Shirkin, L., Mikhailov, V.: Composite structure galvanic sludge utilization, Journal Scientific Centre of Samara, 2012, vol. 14, 5, pp. 850-852.
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-561b835b-02ee-4d1b-a8fe-5d8e0de21107
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