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[1] YANG, K., FU, Z.W., CAO, Y.F., LI, S.N., DU, Z., SUN, X.Y., LIU, Y.Z., YANG, K., FANG, Z.Z. 2018. New insights for risks of chlorophenols (CPs) exposure: Inhibition of UDP-glucuronosyltransferases (UGTs). Chemosphere, 206, 9-16. ISSN 0045-6535.10.1016/j.chemosphere.2018.04.14829723751 Search in Google Scholar

[2] XIE, L., GOMES, T., SOLHAUG, K.A., SONG, Y., TOLLEFSEN, K.E. 2018. Linking mode of action of the model respiratory and photosynthesis uncoupler 3,5-dichlorophenol to adverse outcomes in Lemna minor. Aquatic Toxicology, 197, 98-108. ISSN 0166-445X.10.1016/j.aquatox.2018.02.00529455116 Search in Google Scholar

[3] KOBETIČOVÁ, H., LIPOVSKÝ, M., WACHTER, I., SOLDÁN, M. 2015. 3,5-Dichlorophenol Removal From Wastewater Using Alternative Adsorbents. RESEARCH PAPERS FACULTY OF MATERIALS SCIENCE AND TECHNOLOGY IN TRNAVA, 23(36), 25-32. ISSN 1338-0532. Search in Google Scholar

[4] ZADA, A., KHAN, M., KHAN, M.A., KHAN, Q., YANGJEH, A.H., DANG, A. MAQBOOL, M. 2021. Review on the hazardous applications and photodegradation mechanisms of chlorophenols over different photocatalysts. Environmental Research. 195, 110742. ISSN 0013-9351. Search in Google Scholar

[5] SŁOMKIEWICZ, P., SZCZEPANIK, B., CZAPLICKA M. 2020. Adsorption of Phenol and Chlorophenols by HDTMA Modified Halloysite Nanotubes. Materials (Basel), 13(15), 3309. 10.3390/ma13153309. Search in Google Scholar

[6] RIBEIRO, A., NEVES, M.H., ALMEIDA, M.F., ALVES, A., SANTOS, L. 2002. Direct determination of chlorophenols in landfill leachates by solid-phase micro-extraction–gas chromatography–mass spectrometry. Journal of Chromatography A, 975(2), 267-274. ISSN 0021-9673. Search in Google Scholar

[7] SUFFET, I.H., DJANETTE, K., BRUCHET, A. 1999. The drinking water taste and odor wheel for the millennium: Beyond geosmin and 2-methylisoborneol. Water Science and Technology, 40(6), 1-13. ISSN 0273-1223. Search in Google Scholar

[8] YOUNIS, S.A., MOTAWEA, E.A., MOUSTAFA, Y.M., LEE, J., KIM, K.H. 2020. A strategy for the efficient removal of chlorophenols in petrochemical wastewater by organophilic and aminated silica@alginate microbeads: Taguchi optimization and isotherm modeling based on partition coefficient. Journal of Hazardous Materials. 397, 122792. ISSN 0304-3894.10.1016/j.jhazmat.2020.12279232387832 Search in Google Scholar

[9] ALI, I., ASIM, M., KHAN, T.A. 2012. Low cost adsorbents for the removal of organic pollutants from wastewater. Journal of Environmental Management, 13, 170-183. ISSN 0301-4797. Search in Google Scholar

[10] WANG. L., HU. G., LYU. F., YUE. T., TANG. H., HAN. H., YANG. Y., LIU. R., SUN, W. 2019. Review Application of Red Mud in Wastewater Treatment. Minerals, 9, 281. 10.3390/min9050281. Search in Google Scholar

[11] JAIN, A.K., GUPTA, V.K., JAIN, S., SUHAS. 2004. Removal of chlorophenols using industrial wastes. Environmental Science and Technology, 38(4),1195-200. doi:10.1021/es034412u.10.1021/es034412u14998037 Search in Google Scholar

[12] RIBEIRO, A., NEVES, M.H., ALMEIDA, M.F., ALVES, A., SANTOS, L. 2002. Direct determination of chlorophenols in landfill leachates by solid-phase micro-extraction–gas chromatography–mass spectrometry. Journal of Chromatography A, 975(2), 267-274. ISSN 0021-9673. Search in Google Scholar

[13] BHATNAGAR, A., VILAR, V.J.P., BOTELHO, C.M.S., BOAVENTURA, R.A.R. 2011. A review of the use of red mud as adsorbent for the removal of toxic pollutants from water and wastewater. Environmental Technology, 32(3), 231-249. doi:10.1080/09593330.2011.560615.10.1080/09593330.2011.56061521780692 Search in Google Scholar

[14] SOLDÁN, M. KOBETIČOVÁ, H. 2015. The Structure of Hazardous Industrial Wastes. International Journal of Current Research, 7(12). 24119-24122. ISSN: 0975-833X. Search in Google Scholar

[15] ASCENSÃO, G., SEABRA, M.P., AGUIAR, J.B. LABRINCHA, J.A. 2017. Red mud-based geopolymers with tailored alkali diffusion properties and ph buffering ability. Journal of Cleaner Production, 148, 23-30. ISSN 0959-6526. Search in Google Scholar

[16] WANG, S., ANG, H.M., TADÉ, M.O. 2008. Novel applications of red mud as coagulant, adsorbent and catalyst for environmentally benign processes. Chemosphere,72(11), 1621-1635. ISSN 0045-6535. Search in Google Scholar

[17] KAFKA, R., ČAMBÁLOVÁ, L. 2001. Z dejín výroby hliníka na Slovensku: k 50. výročiu vzniku Závodu Slovenského národného povstania v Žiari nad Hronom. ((From the history of aluminium production in Slovakia: to the 50th anniversary of the Slovak National Uprising Plant at Žiar nad Hronom). 1st ed. Neografie, 2001. 222 p. ISBN:8088892392. Search in Google Scholar

[18] MICHAELI, E., BOLTIŽIAR, M., SOLÁR, V., IVANOVÁ, M. 2012. Skládka priemyselného odpadu lúženca ako príklad environmentálnej záťaže pri bývalej Niklovej hute v Seredi. (The Landfill of Industrial Waste – black nickel mud near the former Nickel Smelter at Sereď Town as an Example of Environmental Load). Životné prostredie, 46(2), 63-68. Search in Google Scholar

[19] REIFFERS, M., VILČEK, J., MICHAELI, E., ČURLÍK, I., KLAMÁR, R, ČECH, V., IVANOVÁ, M., KOCO, S., PASTERNAK, T., IL’KOVIČ, S., PARMA, L., ŠEBEŇ, V., STERBAKOVA, K., LITECKÁ, J., CSATÁRYOVÁ, M., ZAPOTOKOVÁ, M., SOLAR, V. 2018. Research of magnetic properties of spolic technosols (alcalic/hyperartefactic) on the landfill of industrial waste from nickel production. Journal of Electrical Engineering, 69, 489-492. 10.2478/jee-2018-0083. Search in Google Scholar

[20] KOBETIČOVÁ, H., GALBIČKOVÁ, B., ŠEVČÍKOVÁ, J., SOLDÁN, M. 2014. Removing 3,5-Dichlorophenol From Wastewater By Alternative Adsorbents. RESEARCH PAPERS FACULTY OF MATERIALS SCIENCE AND TECHNOLOGY IN TRNAVA SLOVAK UNIVERSITY OF TECHNOLOGY IN BRATISLAVA, 22 (Special number), 61-66. ISSN 1338-0532. Search in Google Scholar

[21] SOBOCKÁ, J., POLTÁRSKA, K. 2004. Description of technogenic spoilbank and its influence on agricultural soils: A case of nickelmetallurgy refuse at Sered’. Procedings, 26, (Vedecké práce, VÚPOP Bratislava) 103-112. ISSN 80-89128-10-6. Search in Google Scholar

[22] KLAČANSKÁ, M., KOBETIČOVÁ, H., SOLDÁN, M., HARŠÁNI, M., KURACINA, M. 2017. Calcination of Nickel Mud. Research Papers Faculty of Materials Science and Technology Slovak University of Technology, 25(40), 40-44. ISSN 1338-0532. Search in Google Scholar

[23] KOBETIČOVÁ, H., SVIATSKII, V., GERULOVÁ, K., WACHTER, I., NIKITIN, Y., BLINOVÁ, L., SOLDÁN, M. 2017. The use of waste from bauxite ore in sorption of 3,5-dichlorophenol from wste water. Acta Montanistica Slovaca. 22(4), 404-411. Search in Google Scholar

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