АНАЛИЗА ПРОЦЕСА УКЛАЊАЊА ИЗОПРОТУРОНА ИЗ ВОДЕ ПРИМЈЕНОМ АКТИВНИХ УГЉЕВА И ЗЕОЛИТА
DOI:
https://doi.org/10.24867/16HZ11PavicevicKeywords:
Isoproturon, Adsorption, Activated carbon, ZeoliteAbstract
Тhe main task of the paper is to analyze the removal of isoproturon using activated carbon and zeolite. Trought the paper, the concept of pesticides, their classification, the method of pesticide production and their impact on humans and the environment are explained. Based on this, the proces of adsorption of the selected pesticide isoproturon from water is described. The adsorption system on activated carbons Norit SA2 and NORIT HYDRODARCO C and zeolite type: ZSM-5 was observed. The influence of certain parameters in the effciency of pesticide removal was observed.
References
[1] Ali Mohamed Ali Hgeig, 2020, Utilization of exhausted coffee waste and date stones for removal of pesticides from aquatic media, doctoral dissertation, Novi Sad,
[2] Bagi F, Bodnar K. 2012. Fitomedicina, Poljoprivredni fakultet, Novi Sad
[3] Đurović A., 2018, Razvoj metoda za hronopotenciometrijsko određivawe odabranih pesticida u vodi, Novi Sad
[4] Momčilović M.Z., 2012, Kinetički i ravnotežni parametri adsorpcionih procesa pri uklanjanju pojedinih štetnih katjonskih sastojaka iz vodenih rastvora aktivnim ugljevima dobijenih hemijsko-termičkom obradom srži ploda divljeg kestena i šišarke crnog bora, Niš
[5] Kordić B., 2019, Ispitivanje uticaja odabranih amida na adsorpciju nitro derivata fenola iz vodene sredine na aktivnom uglju, Novi Sad
[6] Bansal R.C., Goyal M., 2015, Activated carbon adsorption, Taylor & Francis Group, Boca Raton. ISBN: 08247534
[7] Worch E., 2012, Adsorption Technology in Water Treatment: Fundamentals, Processes and Modeling, Walter de Gruyter, Berlin/Boston
[8] Jiang N i sar. 2019. Adsorption of triclosan, trichlorophenol and phenol by high-silica zeolites: Adsorption efficiencies and mechanisms, Separation and Purification Technology, Elsevier B.V. Amsterdam
[9] Barrer R.M., 1978, Zeolites and Clay Minerals as sorbents and Molecular Sieves, Academic Press, London
[10] Widayat W. Annisa A.N. 2017. Synthesis and Characterization of ZSM-5 Catalyst at Different Temperatures, IOP Conference Series: Materials Science and Engineering, 214, 012032.
[2] Bagi F, Bodnar K. 2012. Fitomedicina, Poljoprivredni fakultet, Novi Sad
[3] Đurović A., 2018, Razvoj metoda za hronopotenciometrijsko određivawe odabranih pesticida u vodi, Novi Sad
[4] Momčilović M.Z., 2012, Kinetički i ravnotežni parametri adsorpcionih procesa pri uklanjanju pojedinih štetnih katjonskih sastojaka iz vodenih rastvora aktivnim ugljevima dobijenih hemijsko-termičkom obradom srži ploda divljeg kestena i šišarke crnog bora, Niš
[5] Kordić B., 2019, Ispitivanje uticaja odabranih amida na adsorpciju nitro derivata fenola iz vodene sredine na aktivnom uglju, Novi Sad
[6] Bansal R.C., Goyal M., 2015, Activated carbon adsorption, Taylor & Francis Group, Boca Raton. ISBN: 08247534
[7] Worch E., 2012, Adsorption Technology in Water Treatment: Fundamentals, Processes and Modeling, Walter de Gruyter, Berlin/Boston
[8] Jiang N i sar. 2019. Adsorption of triclosan, trichlorophenol and phenol by high-silica zeolites: Adsorption efficiencies and mechanisms, Separation and Purification Technology, Elsevier B.V. Amsterdam
[9] Barrer R.M., 1978, Zeolites and Clay Minerals as sorbents and Molecular Sieves, Academic Press, London
[10] Widayat W. Annisa A.N. 2017. Synthesis and Characterization of ZSM-5 Catalyst at Different Temperatures, IOP Conference Series: Materials Science and Engineering, 214, 012032.
Downloads
Published
2022-03-05
Issue
Section
Environment and Occupational Safety Engineering