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Pathways and determinations of organometallic compounds in the marine environment with a particular emphasis on organotin

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Organometallic compounds are widely used in almost all sectors of industry. Some organometallic compounds are very potent toxins. Human activity releases organometallic compounds into the natural environment where they undergo various changes through compoundenvironment interactions. These compounds have a negative impact on living organisms. The most widespread, man-made organometallic compounds present in the natural environment are those of tin, mercury and lead.
Rocznik
Strony
43--71
Opis fizyczny
Bibliogr. 53 poz., tab., wykr.
Twórcy
autor
  • University of Gdańsk, Department of Marine Chemistry and Marine Environmental Protection, Gdynia
  • Gdańsk University of Technology, Chemistry Department, Analytical Chemistry Faculty, Gdańsk
autor
  • University of Gdańsk, Department of Marine Chemistry and Marine Environmental Protection, Gdynia
Bibliografia
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  • [9]. Forsyth D.S., Weber D., Barlow L., 1999. The determination of organotin compounds in fruit juices using gas chromatography - atomic absorption spectrometry. Appl. Organometal. Chem., 6, 579-585.
  • [10]. Gomez-Ariza J.L., E. Morale E., Giraldez L., 1999. Uptake and elimination of tributyltin in clams, Venerupis decussata. Mar. Environ. Res., 47, 399-413.
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  • [25]. Lespes G., Carlier - Pinasseau C., Potin - Gautier M., Astruc M., 1996. Direct determination of butyl - and phenyltin compounds as chlorides using gas Chromatography and flame photometric detection. Analyst., 121, 1969-1973.
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  • [27]. Michel P., Averty B., Andral B., Chiffoleau J., Galgani F., 2001. Tributyltin along the Coasts of Corsica (Western Mediterranean): A persistent problem. Mar. Pollut. Bull., 42, 1128-1132.
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  • [29]. Namieśnik J., 2001. Modern trends in monitoring and analysis of environmental pollutants. Pol. J. Environ. Stud., 10, 6405-413.
  • [30]. Namieśnik J., Górecki T., 2001. Preparation of environmental samples for the determination of trace constituents. Pol. J. Environ.Stud., 10, 77-84.
  • [31]. Namieśnik J., Górecki T., 2001a. Quality of analytical results. Rev. Roum. Chem. 46, 953-962.
  • [32]. Namieśnik J., Jamrógiewicz Z., Pilarczyk M., Torres L., 2000. Przygotowanie próbek środowiskowych do analizy. WNT, Warszawa, 15 -91.
  • [33]. Obiols J., Devesa R., Garcia-Berro J., Serra J., 1987. Specjaction of chromium in waters by coprecipitation - AAS. Inter. J. Environ. Anal. Chem., 30, 197-207.
  • [34]. Pannier F., Astruc A., Astruc M., 1996. Determination of butyltin compounds in marine biological samples by enzymatic hydrolysis and HG-GC-QFAAS detection., Anal. Chim. Acta., 327, 287-293.
  • [35]. Pempkowiak J., 1997. Zarys geochemii morskiej. Wyd. UG, 155-158.
  • [36]. Pereiro I.R., Diaz A. C., 2002. Speciation of mercury, tin, and lead compounds by gas chromatography with microwave - induced plasma and atomic - emission detection (GC-MIP-AED). Anal. Bioanal. Chem., 372, 74-90.
  • [37]. Pruchnik F., 1993. Preparatyka związków metaloorganicznych: metale przejściowe. PWN, Warszawa, 15-47.
  • [38]. Pruchnik F., 1991. Chemia metaloorganiczna. PWN, Warszawa, 17-39.
  • [39]. Rajendran R.B, Tao H., Miyazaki A., Ramesh R., Ramachandran S., 2001. Determination of butyl-, phenyl-, octyl- and tributylmonomethyltin compounds in marine environment (Bay of Bengal, India) using gas chromatography - inductively coupled plasma mass spectrometry. J. Environ. Monit., 3, 627-634.
  • [40]. Randall L., Weber J.H, 1986. Adsorptive behavior of butyltin compounds under simulated estuarine conditions. Sci. Total. Environ., 57, 191-203.
  • [41]. Ritsema R., de Smaele T., Moens L., de Jong A.S., Donard O.F.X., 1998. Determination of butyltins in harbour sediment and water by aqueous phase ethylation GC-ICP-MS and hydride generation GC-AAS., Environ. Pollut., 99, 271-277.
  • [42]. Smedes F., de Jong A. S., Davies I. M., 2000. Determination of (mono-, di-and) tributyltin in sediments. Analytical methods. J. Environ. Monit., 2, 541-549.
  • [43]. Shim W.J, Hong S.H, Yim U.H., Yim N.S., Kim N.S., Oh J.R., 2002. Horizontal and vertical distribution of butyltin compounds in sediments from Shipyards in Korea. Environ. Contam. Toxicol., 43, 277-283.
  • [44]. Shim W., Oh J.R., Kahng S.H., Shim J.H, Lee S.H, 1999. Horizontal distribution of butyltins in surface from an enclosed bay system, Korea. Environ. Pollut., 106, 351-357.
  • [45]. Shoukry M.M, 1993. Equilibrium study of tibutyltin (IV) complexes with amino acids and related compounds. Bull. Soc. Chim. Fr. 1230, 117-120 [w:] Fent K., Looser P.W.1995. Bioaccumulation and bioavailability of tributyltin chloride: influence of pH and humit acids. Environ. Sci. Technol., 29, 1631-1637.
  • [46]. Steward C., De Mora S.J., 1990. A review of the degradation of tri(n-butyl)tin in marine environmental. Environ. Technol., 11, 565-570.
  • [47]. Tobias R.S., 1978. The chemistry of organometallic cations in aqueous media. [w:] Organometals and organometalloids. Occurrence and fate in the environment. (Edited by Brinckman P.E and Bellama J.M)., ACS Symposium Sedes, pp. 130-148 [w:] Fent K., Looser P.W.1995. Bioaccumulation and bioavailability of tributyltin chloride: influence ofpH and humit acids. Environ. Sci. Technol., 29, 1631-1637.
  • [48]. Tsang C.k., Lau P.S., Tam N.F.Y., Wong Y.S., 1999. Biodegradation capacity of tributyltin by two Chlorella species. Environ. Pollut., 105, 289-297.
  • [49]. Tselentis B.S., Tzannatos E.S., 2000. Butyltin compounds in coastal sediments of areas associated with maritime facilities in Greece. Fresenius Envir. Bull., 9, 499-507.
  • [50]. Tsuda T., Aoki S., Kojima M., Harada H., 1990. The influence of pH on the accumulation of tri-n-butyltin chloride and triphenyltin chloride in carp. Comp. Biochem. Physiol. 95, 151-153 [w:] Fent K., Looser P.W.1995. Bioaccumulation and bioavailability of tributyltin chloride: influence of pH and humit acids. Environ. Sci. Technol., 29, 1631-1637.
  • [51]. Wasik A., Namieśnik J., 2001. Speciation of organometallic compounds of tin, lead and mercury. Pol. J. Environ. Stud., 10, 405-413.
  • [52]. Vella A.J, Vassallo R., 2001. Emission to air of volatile organotins from tributyltin contaminated harbour sediments. Environ. Biol. Toxicol., 16, 239-244.
  • [53]. Vella A. J., Mintoff B., Axiak V., Agius D., Cassone R., 1998. Organotin pollution in Malta Coastal zone. Toxicol. Environ. Chem., 67, 491-510.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0013-0047
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