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Abstrakty
Pathways of PCDTs and PCTAs in the environment are discussed. Data on levels of these compounds in various part of the environment and their possible sources are presented. Finally, the data on biological effects of PCDTs and PCTAs based on some preliminary toxicological investigations are given.
Czasopismo
Rocznik
Tom
Strony
169--181
Opis fizyczny
bibliogr. 33 poz., tab., wykr.
Twórcy
autor
- Laboratory of Environmental Analyses, Faculty of Environmental Engineering Lublin University of Technology, 40B Nadbystrzycka str., 20-618 Lublin, Poland tel. +48 081 5384414, j.czerwinski@wis.pol.lublin.pl
Bibliografia
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- [2] Bechtler R., Stieglitz L., Zwick G., Will R., Roth W., Hedwig K., (1998), Influence of elemental sulfur on the de-novn synthesis of organochlorine compounds from residual carbon on fly ash, Chemosphere, 37,2261-2278.
- [3] BenzT., Hagenmaier H., LindigC, She J., (1992) Occurrence of the sulphur analogue of octachlorodibenzo-p-dioxin in the environment and investigations on its potential source, Fresenius J. Anal. Chem., 344, 286-291.
- [4] Buser H-R., (1992), Identification and sources of dioxin-like compounds: I. Polychlorodibenzothiophenes and polychlorothianthrenes, the sulfur-analogues of the polychlorodibenzofurans and polychlorodibenzodioxins, Chemosphere, 25,45-48.
- [5] Cai Z., Ramanujam V.M.S., Gross M.L., Cristini A., Tucker R.K., (1994a), Levels of polychlorodibenzo-p-dioxins and dibenzofurans in crab tissues from Newark /Raritan Bay system, Environ. Sci. Technol., 28, 1528-1534.
- [6] Cai Z., Giblin D.E., Ramanujam V.M.S., Gross M.L., Cristini A., (1994b), Mass-profile monitoring in trace analysis: Identification of polychlorodibenzothiophenes in crab tissues collected from the Newark/Raritan Bay system, Environ. Sci. Technol., 28, 1535-1538.
- [7] Chen S.D., Liu H.X., and Wang Z.Y., (2007), Study of Structural and Thermodynamic Properties for Polychlorinated Dibenzothiophenes by Density Functional Theory, J. Chem. Eng. Data, 52, 1195 -1202
- [8] Claus E., Heininger P., Bade M., Jurling H., Raab M., (1998), Mass spectrometric identification of polychlorinated dibenzothiophenes (PCDBTs) in surface sediments of the River Elbe, Fresenius J. Anal. Chem., 361,54-58.
- [9] Cooper K. (1993), Dioxin levels in mollusks and other invertebrates in Newark Bay and Arthur Kill. Symposium on dioxin contaminated sediments in Newark Bay, Society of Environmental Toxicology and Chemistry. Hudson/Delaware Chapter, Environmental and Occupational Health Sciences Institute, Rutgers University, Feb 26.
- [10] Czerwiński J., Dudzińska M.R., Rut B., (2006), Concentration of PCDDs, PCDFs and PCDTs In Bottom Ash from Domestic Heating Systems as an Effect of Fuel Composition, Organohalogen Compounds, 68, 139-142.
- [11] Dudzińska M.R., Czerwiński J., Rut B., (2004), Comparison of PCDD/Fs Levesl and Profiles in Leachates from "New" and "Old" Municipal Landfills, Organohalogen Compounds 66, 869-874.
- [12] Giesy J.P., Jude D.J., Tillitt D.E., Gale R.W., Meadows J.C., Zajicek J.L., Peterman P.H., Verbrugge D.A., Sanderson J.T., Schwartz T.R., Tuchman M.L., (1997), Polychlori-nated dibenzo-/;-dioxins, dibenzofurans, biphenyls and 2,3,7,8-tetrachlorodibenzo-p-dioxin equivalents in fishes from Saginaw Bay, Michigan, Environ. Toxicol. Chem., 16, 713-724.
- [13] Hosomi M., (2005), Photodegradation and dioxin - like endocrine potential of polychlorinated dibenzothiophenes, Science Council of Asia, May 12th, 2005 - poster.
- [14] Huntley S.L., Wenning R.J., Paustenboch D.J., Wong A.S., Luksemburg W.J., (1994), Potential sources of polychlorinated dibenzothiophenes in the Passaic River, New Jersey, Chemosphere, 29, 257-272.
- [15] Huntley S.L., Carlson-Lynch H., Johnson G.W., Paustenboch D.J., Finley B.L., (1998), Identification of historical PCDD/F sources in Newark Bay estuary surface sediments using polytopic vector analysis and radioisotope dating technique, Chemosphere, 36,1167-1185.
- [16] Kobayashi S., Kitadai M., Sameshima K., Ishii Y., Tanaka A., (1999), A theoretical investigation of the conformation changing of dioxins in the binding site of dioxin receptor model; role of absolute hardness-electronegativity activity diagrams for biological activity, Journal of Molecular Structure, 475, 203-217.
- [17] Kopponen P., Sinkkonen S., Poso A., Gynther J., Karenlampi S., (1994), Sulfur analogues of polychlorinated dibenzo-p-dioxins, dibenzofurans and diphenyl ethers as inducers of CYP1A1 in mouse hepatoma cell culture and structure-activity relationships, Environ. Toxicol. Chem., 13, 1543-1548
- [18] Nakai S., Kishita S., Espino M.P., Hosomi M., (2004), Detection of polychlorinated dibenzothiophenes in Japan and investigation of their dioxin like endocrine disrupting potency, Organohalogen Compounds, 66, 1495-1499.
- [19] Nakai S., Kishita S., Nomura Y., Hosomi M., (2006) Polychlorinated dibenzothiophenes in Japanese environmental samples and their photodegradability and dioxin-like endocrine-disruption potential, Chemosphere, 67, 1852-1857.
- [20] Peterson R.E., Theobald H.M., Kimmel K.M., (1993), Developmental and Reproductive Toxicity of Dioxins and Related Compounds: Cross-Species Comparisons, Critical Reviews in Toxicology 23, 283-335.
- [21] Pruell R.J., Rubinstein N.I., Taplin B.K., LiVolsi J.A., D.B.R., (1993), Accumulation of polychlorinated organic contaminants from sediment by three benthic marine species. Arch. Environ. Contam. Toxicol., 24, 290-297
- [22] Pruell R.J., Taplin B.K., McGovern D.G., McKinney R., Norton S.B., (2000), Organic contaminant distributions in sediments, polychaetes (Nereis virens) and American lobster (Homarus americanus) from a laboratory food chain experiment, Marine Environ. Res., 49, 19-36.
- [23] Rappe C, (1994), Dioxin, patterns and source identification, Fresenius J. Anal. Chem., 348,63-75.
- [24] Sinkkonen, S.; Kolehmainen, E.; Koistinen, J.; Lahtipera, (1993), M. High-resolution gas chromatographic - mass spectrometric determination of neutral chlorinated aromatic compounds in stack gas samples. J. Chromatogr. A, 641, 309-317.
- [25] Sinkkonen S., (1997), PCDTs in the environment, Chemosphere. 34, 2585-2594.
- [26] Sinkkonen S., Paasivirta J., Lahtipera M., (2001), Chlorinated and Methylated Dibenzothiophenes in Sediment Samples from a River Contaminated by Organochlorine Wastes, J. Soils & Sediments, 1,9-14.
- [27] Sinkkonen S., Lahtipera M., Vattulainen A., Takhistov V.V., Viktorovskii I.V., Utsal V.A., Paasivirta J., (2003), Analyses of known and new types of polyhalogenated aromatic substances in oven ash from recycled aluminum production, Chemosphere, 52, 761-775.
- [28] Seo J-S., Keum Y-S., Cho I-K. and Li Q.X., (2006), Degradation of dibenzothiophene and carbazole by Anhrobacter sp. Pl-1, International Biodeterioration & Biodegradation 58, 36-43.
- [29] Van Afferden M., Tappe D., Beyer M., Trupper H.G. and Klein J. (1993), Biochemical mechanism for the desulfurisation of coal-relevant organic sulfur compounds. Fuel, 72, 1635-1643.
- [30] Van Herwijnen R., Wattiau P., Bastiaens L., Daal L., Jonker L, Springael D., Govers H.A.J. and Parsons J.R., (2003), Elucidation of the metabolic pathway of fluorene and cometabolic pathways of phenanthrene, fluoranthene, anthracene and dibenzothiophene by Sphingomonas sp. LB126, Research in Microbiology, 154, 199-206
- [31] Wang, Z. Y.; Zhai, Z. C; Wang, L. S.; Chen, J. L.; Kikuchi, O.; Watanabe, T. Prediction of gas phase thermodynamic function of polychlorinated dibenzo-p-dioxins using DFT. J. Mol. Struct. (THEOCHEM), 672(1-3), 97-104.
- [32] Weber R., Hagenmaier H., Schrenk D., (1998), Elimination kinetics and toxicity of 2,3,7,8-tetrachlorothianthren, a thio analogue of 2,3,7,8-TCDD, Chemosphere. 36, 2635-2641.
- [33] Wiedmann, T.; Riehle, U.; Kurz, J.; Ballschmiter, K., (1997), HRGC-MS of polychlorinated phenanthrenes (PCPhen), dibenzothiophenes (PCDT), dibenzothianthrenes (PCTA), and phenoxathiins (PCPT). Fresenius J. Anal. Chem., 359, 176-188.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0013-0036