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2024 | OriginalPaper | Buchkapitel

Integrated Ferritisation Treatment for Concentrated Wastewater of Electroplating Production

verfasst von : Gennadii Kochetov, Dmitro Samchenko, Tetyana Prikhna

Erschienen in: Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions (3rd Edition)

Verlag: Springer Nature Switzerland

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Abstract

Sewage from electroplating industries as well as waste after water treatment is especially dangerous for environment due to the high content of toxic heavy metal compounds. The paper presents novel technology that allows reducing initial concentrations of heavy metal ions in electroplating production wastewater from 25 g/dm3 to less than 0.7 mg/dm3. Proposed process of integrated wastewater treatment consists of two innovative methods: energy-efficient ferritisation with activation by electromagnetic pulse discharges instead of expansive thermal one as well as advance sorption treatment by suspensions containing new nanosorbents of polyvalent iron oxides obtained by electroerosion dispersion. This technology of water purification allows to meet requirements of current Ukrainian standards for water reuse in electroplating production. Structural studies of the treatment-generated waste have shown significant content of ferrite phases with magnetic properties and high potential for further utilisation. In contrast to traditional technologies, developed comprehensive process for treatment of liquid waste flows would ensure rational use of water and energy inputs in the system of industrial production.

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Literatur
Zurück zum Zitat Kochetov, G., Prikhna, T., Kovalchuk, O., & Samchenko, D. (2019). Development of ferritization processing of galvanic waste with energy saving electromagnetic pulse activation of the process. Eastern-European Journal of Enterprise Technologies, 6(10), 6–14.CrossRef Kochetov, G., Prikhna, T., Kovalchuk, O., & Samchenko, D. (2019). Development of ferritization processing of galvanic waste with energy saving electromagnetic pulse activation of the process. Eastern-European Journal of Enterprise Technologies, 6(10), 6–14.CrossRef
Zurück zum Zitat Kochetov, G., Prikhna, T., Samchenko, D., Prysiazhna, O., Monastyrov, M., Moshchil, V., & Mamalis, A. (2021). Resource-efficient ferritization treatment for concentrated wastewater from electroplating production with aftertreatment by nanosorbents. Nanotechnology Perceptions, 17(1), 9–18.CrossRef Kochetov, G., Prikhna, T., Samchenko, D., Prysiazhna, O., Monastyrov, M., Moshchil, V., & Mamalis, A. (2021). Resource-efficient ferritization treatment for concentrated wastewater from electroplating production with aftertreatment by nanosorbents. Nanotechnology Perceptions, 17(1), 9–18.CrossRef
Zurück zum Zitat Kovalchuk, O., Kochetov, G., & Samchenko, D. (2019). Study of service properties of alkali-activated cement using wastewater treatment residues. IOP Conference Series: Materials Science and Engineering, 708(1), 012087.CrossRef Kovalchuk, O., Kochetov, G., & Samchenko, D. (2019). Study of service properties of alkali-activated cement using wastewater treatment residues. IOP Conference Series: Materials Science and Engineering, 708(1), 012087.CrossRef
Zurück zum Zitat Monastyrov, M., Prikhna, T., Halbedel, B., Kochetov, G., Marquis, F., & Mamalis, A. (2019). Eectroerosion dispersion, sorption and coagulaton for complex water purification electroerosion waste recycling and manufacturing of metals, oxides and alloys nanopowders. Nanotechnology Perceptions, 15, 48–57.CrossRef Monastyrov, M., Prikhna, T., Halbedel, B., Kochetov, G., Marquis, F., & Mamalis, A. (2019). Eectroerosion dispersion, sorption and coagulaton for complex water purification electroerosion waste recycling and manufacturing of metals, oxides and alloys nanopowders. Nanotechnology Perceptions, 15, 48–57.CrossRef
Zurück zum Zitat Tokach, Y. E., Rubanov, Y. K., Pivovarova, N. A., & Balyatinskaya, L. N. (2013). Galvanic sludge recycling with the extraction of valuable components. Middle-East Journal of Scientific Research, 18, 1646–1655. Tokach, Y. E., Rubanov, Y. K., Pivovarova, N. A., & Balyatinskaya, L. N. (2013). Galvanic sludge recycling with the extraction of valuable components. Middle-East Journal of Scientific Research, 18, 1646–1655.
Zurück zum Zitat Tua, Y.-J., Chang, C.-K., Youa, C.-F., Wang, S.-L. (2012). Treatment of complex heavy metal wastewater using a multi-staged ferrite process. Journal of Hazardous Materials, 209–210, 379–384. Tua, Y.-J., Chang, C.-K., Youa, C.-F., Wang, S.-L. (2012). Treatment of complex heavy metal wastewater using a multi-staged ferrite process. Journal of Hazardous Materials, 209–210, 379–384.
Metadaten
Titel
Integrated Ferritisation Treatment for Concentrated Wastewater of Electroplating Production
verfasst von
Gennadii Kochetov
Dmitro Samchenko
Tetyana Prikhna
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-43922-3_1