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Sorption process for migration reduction of pesticides from graveyards

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper deals with the study upon the possibility to reduce migration of deposited pesticide wastes by using natural and waste sorption agents that would make a screen against plant protection means penetration into the hydrosphere. Sewage sludge from dairy treatment plant "Mlekovita" in Wysokie Mazowieckie as well as the same sludge with sawdust composted under natural conditions in Rudka Forestry Inspectorate was applied as natural sorption agents. Freundlich's and Langmuir's isotherms revealed that raw (no composting) sewage sludge showed better sorption features towards chloroorganic pesticides.
Rocznik
Strony
143--149
Opis fizyczny
bibliogr. 25 poz., tab., wykr.
Twórcy
  • Department of Engineering and Environment Protection Technology Technical University Białystok, ul. Wiejska 45a, 15-351 Białystok, Poland, tel. +48 085 7469644, izoplana@wp.pl
Bibliografia
  • [1] Allen, S.J., Mckay, G., Porter, J.F., 2004. Adsorption isotherm models for basic dye adsorption by peat in single and binary component systems. Journal of Colloid and Interface Science, vol.280,322-333.
  • [2] Anielak, A.M., 2000. Chemiczne i fizykochemiczne oczyszczanie ścieków. PWN, Warszawa, Poland.
  • [31 Atkins, P.W., 2001, Chemia fizyczna. PWN, Warszawa.
  • [4] Biziuk, M., 2001, Pestycydy. Występowanie, oznaczanie i unieszkodliwianie, WNT, Warszawa, Poland.
  • [5] Boruszko, D., Butarewicz, A., Dąbrowski, W., Magrel, L., 2005. Badania nad ostatecznym wykorzystaniem odwodnionych osadów ściekowych do nieprzemysłowego wykorzystania. Politechnika Białostocka, Białystok. Poland.
  • [6] Dąbrowski, W., 2006. Management and utilization of sewage sludge from dairy industry wastewater treatment plant. IWA Specialized Conference - Sustainable sludge management: State of the art, challenges and perspectives. Proceedings. Moscow, May 29-31, 2006. International Water Association, The Russian Association on Water Supply and Water Disposal. - Moscow, 2006. Russia, 734-737.
  • [7] Ignatowicz, K., 2007. Evaluation of pesticide remains and heavy metals concentrations near burial grounds. Polish Journal of Environmental Studies, vol.l6(4), 339-344.
  • [8] Ignatowicz, K., Skoczko, I., 2002. Dependence of sorption of phenoxyacetic herbicides on their physico-chemical properties. Polish Journal of Environmental Studies, 11(4), 339-344
  • [9] Jankowska, M., Świątkowski, A., Starostin, L., Ławrinienko-Omiecynska, J., 1991. Adsorpcja jonów na węglu aktywnym. PWN, Warszawa. Poland.
  • [10] Kumar, A., Kumar, S., Kumar, S., 2003, Adsorption of resorcinol and catechol on granular activated carbon: Equilibrium and kinetics. Carbon. 41, 3015-3025.
  • [11] Laboratory Brochure by Applications Engineers Chemviron Carbon. Pensylwania, 1991.
  • [12] Li, K., Xing, B., Torello, W.A., 2005, Effect of organic fertilizers derived dissolved organic matter on pesticide sorption and leaching. Environmental Pollution. 134, 187-194.
  • [13] Long, Y., Mao, X., Nan, S., Fang, H., Yan, H., Quan, J., 2006, An exploration of the relationship between adsorption and bioavailability of pesticides in soil to earthworm. Environmental Pollution. 141, 428-433.
  • [14] Mashayekhi, H., Veneman, P., Xing, B., 2006, Phenanthrene sorption by compost humic acids. Biology and Fertility of Soils. 42, 426-431.
  • [15] Nemeth-Konda, L., Fuleky, Gy., Morovjan, Gy., Csokan, P., 2002, Sorption behaviour of acetochlor, atrazine, carbendazim, diazinon, imidaclopiryd and isoproiuron on Hungarian agricultural soil. Chemosphere. 48, 545-552.
  • [16] Ochsner, T.E., Stephens, B.M., Koskinen, W.C., Kookana, R.S., 2006. Sorption of a hydrophilic pesticide. Soil Science Society of America. 70,1991-1997.
  • [17] Paderewski, M.L., 1999, Procesy adsorpcyjne w inżynierii chemicznej. WNT, Warszawa.
  • [18] Piekarski, J., 2007. Numeric simulation of selected parameters of the sorption process. Polish Journal of Environmental Studies, 16(2A), 826-830.
  • [19] Qingdong, Q., Jun, M., Ke, L., 2007, Adsorption of nitrobenzene from aqueous solution by MCM-41. Journal of Colloid and Interface Science. 315, 80-86.
  • [20] Rodriguez-Cruz, M.S., Sanchez-Martin, M.J., Sanchez-Camazano, M., 2005, Chemosphere. 61, 56-64.
  • [21] Spadotto, C.A., Hornsby, A.G., 2003. Soil sorption of acidic pesticides: modeling pH effects. Journal Environmental Quality. 32, 949-956.
  • [22] Stobiecki, S., 1999. Report of analysis of waters and soils in the vicinity ofWąsosz, Plants Protection Institute. Poznań. Poland.
  • [23] Wibowo, N., Setyadhi, L., Wibowo, D., Setiawan, J., Ismadji, S., 2007, Adsorpiion of benzene and toluene from aquaeous solutions onto activated carbon and its acid and heal treated forms: Influence of surface chemistry on adsorption. Journal of hazardous Materials. 146, 237-242.
  • [24] Wołkowicz, S., Wołkowicz, W., Choromański, D., 2003. Research on the influence of overdue plant pesticides (burial grounds) on geological environment (stage 3). National Geological Institute, Warszawa. Poland.
  • [25] Yuh-Shan, Ho, 2006. Isotherms for the sorption of lead onto peat: comparison of linear and non-linear methods. Polish Journal of Environmental Studies. 15(1), 81-86
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0013-0033
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