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Αθανασάκη Κ:
"Mελέτη της Τοξικής Συµπεριφοράς του Diuron και του Μεταβολίτη του 3,4-Dichloroaniline στους Φυτοπλαγκτονικούς Οργανισµούς Dunaliella Τertiolecta και Navicula Forcipata",
MSc Thesis, Τμήμα Περιβάλλοντος, Πανεπιστήμιο Αιγαίου, (Sep 2004)


References included in article: 57 records found. (Records 1-50)      First page  Previous page   page 1/2    Next page  Last page

Order of appearence Full citation SRCosmos Link 
1Albanis TA, Readman JW, Hattum B,
van.,Barcelo D., Riemann B., Blank H., Gustarson K., Tronczynski J., Jacobson A.(2002) Assesment of antifouling Agents in coastal Environments (ACE) (MAS3-CT98-0178).
 
2ASTM (1993) ‘ASTM standards on aquatic toxicology and hazard evaluation’, ASTM, Philadelphia. 
3Biseli S, Bester K, Huhnerfuss H, Fent K,
(2000) Consentrantion of the antifouling Irgarol 1051 and of organotins in water and sediments of German North and Baltic Sea marinas. Mar Pollut Bull 40: 233-243.
 
4Brownlee BG, Garey JH, Maclinnis GA, Pellizzari IT (1992) Aquatic environmental chemistry of 2-(thiocyanomethylio)benzothiazole and related benzothiazoles, Environ Toxicol Chem 11:1153-1168. 
5Callow ME, Willingham GL,
(1996), Degradation of antifouling biocides, Biofouling 10: 239-249
 
6Champ MA,
2000. A Review of Organotin Regulatory Strategies, Pending Actions, Related Costs and Benefits, The Science of the Total Environment, 258: 21-71.
 
7Ciba Geigy (1995) Irgarol 1051 Material Safety Data Sheet 638/9501. Ciba Geicy Limited, Additives Division, Basel, Switzerland 
8Ciba specialty Chemicals Inc.(2001) 
9Claisse D,
and Alzieu Cl. (1993), "Copper Contamination as a Result of Antifouling Paint Regulations", Mar. Pollut. Bull., 26: 395-397.
 
10Crossland NO,
(1986), Predicting the hazards of chemicals to aquqtic environments, Chem. Ind 21:740-4;
 
11Crossland NO,
(1990), A review of the fate and toxicity of 3,4-dichloroaniline in aquatic environments, Chemosphere, Vol 21, No.12, pp 1489-1497
 
12Dahl B, Blank H,
(1996) Toxic effectw or the antifouling agent Irgarol 1051 on periphyton communities in coastal water microcosms. Mar Pollut Bull 32 :342-350.
 
13Daubert TE, Danner RP,
(1991), Physical and Thermodynamic Properties of Pure Chemicals: Data Compilation, Supplement 1, Design Institute for Physical Property Data, American Institute of Chemical Engineers, Hemisphere Pub. Corp., New York
 
14Davies PE (1987) Disappearance rates of chlorothalonil in the aquatic environment. Bull. Environ Contain Toxicol 4: 405-410. 
15EXTOXNET (Accessed 2000) www.ace.ace.orst.edu/info/extoxnet/pips/ thiram and Irgarol 1051 used in antifouling paints Mar Pollut Bull 32:335-341 
16Fernadez-Alba AR, Hernando MD, Piedra L, Chisti Y,
(2002) ‘ Toxicity evaluation of single and mixed antifouling biocides measured with acute toxicity bioassays’, Anal. Chim. Acta., 456, 303-312.
 
17Ferrer I, Barcelo D,
(1999) Simultaneous determination of antifouling herbicides in marina water samples by on line SPE followed by LC/MS. J Chromatog A854:197-206.
 
18Hanbook of phycological methods, culture methods and growth measurements, Stein , (1973)Janet R.. 
19Health and safety Database (1997) (HSDB-US National Library of Medicine) (database). Silver Platter Information, Norwood, MA, USA. 
20Health and safety Executive (HSE) Environmental modelling of antifoulents,Contract Research Report 342/2001. 
21Hunter JE, Evans LV (1991) Degradation of the biocide Zineb in marine culture medium. Biofouling 3:113-137. 
22Harold C,
Bold, Michael J.Wynne, Introduction to the Algae, 1993.
 
23Interlux (1999), "What is Fouling": www.yuachtpaint.com 
24J.C. Emberlin, 1983, Εισαγωγή στην Οικολογία. 
25Kenaga EE (1980) Predicted bioconsentration factors and soil sorption coefficients of pesticides and other chemicals, Ecotoxicol Environ Saf 4: 26-38. 
26Κlaasen C,
1986, Principles of toxicology, in: Klaasen C., Ambur M., Doull J., (eds), «Toxicology The basic Science of poisons», Mac Millan,New York, p.p 11-32.
 
27Leo A, Hansch C,
(1971), Partition coefficients and their uses, Chem. Ref. 71: 525-616
 
28Meister Publishing Company, (1987), Farm Chemical Hnadbook, Meister Publishing Company (ed), Willoughby, O.H. 
29OECD GUIDELINES FOR TESTING OF CHEMICALS (1981) “Alga, Growth Inhibition Test” , Method201. 
30Readman JW, Kwong LLW, Grondin D, Bartocci J, Villeneuve JP, Mee LD (1993) Coastal water contamination for triazine herbicide used in antifouling paints, Environ Sci Technol 27:1940-1942. 
31Richardson, (1993), The Dictionary of Substances and Their Effects, Richardson (ed), Royal Society of Chemistry 
32Sorensen SR,
et al.,(2003), Microbial degradation of isoproturon an related phenylurea herbicides in and below agricultural fields, FEMS Microbiol. Ecol. 45: 1-11
 
33Thomas KV,
2001, “The Environmental Fate and Behaviour of antifouling Paint Booster Biocides: A Review”,Biofouling,17:73-86.
 
34Thomas KV, Walkom MJ, Readman J, Fileman TW (1999) Monitoring of antifouling paint booster biocides and tributyltin in UK marinas, estuaries and coastal waters. Afinal Report for the Department of Environment, Transport and the Regions and the Environment Agency (EPG 1/5/90 & P2-118). This report also constitutes the Environment Agency’s Technical Report No P313. 
35Thomas KV, Blake S, Waldock M (2000) Antifouling paint booster biocide contamination in UK marine sediments Mar Pollut Bull 40: 739-745. 
36Thomas KV, Fileman TW, Readman J, Waldock MJ (2001) Antifouling paint booster biocides in the UK coastal environment and potential risks of biological effects. Mar Pollut Bull (in press). 
37Tolosa I,
Readman JW, Blaevoet A, Ghilini S, Bartocci J, Horvat M (1996) Contamination of Mediterranean (Cote d΄Azur) coastal watersby organotins.
 
38Tomlin(1997), ThePesticideManual, Tomlin (ed),British Crop Protection Council, U.K. 
39Τόth S,
Becker-van Slooten K, Spack L, de Alencastro LF, Terradellas J (1996) Irgarol 1051, an antifouling compound in fresh water sediment and biota of lake Geneva. Bull Environ Contam Toxicol 57: 426-433.
 
40Turley PA, Fenn RJ, Figura PM, Ritter JC (2000) Pyriothiones as antifoulants: environmental chemistry and risk assessment. Biofouling 15: 175-182. 
41United States Environmental protection Agency Office of Drinking Water Health Advisories, 1991,Drinking Water Health Advisory: “Pesticides”, Lewis Publishers 
42Verschueren K,
(1996) Handbook of Environmental Data on Organic Chemicals, Van Norstrand & Reinhold, New York,USA.
 
43Voulvoulis MD,
Scrimshaw and J.N. Lester(1999), “Biocides from Antifouling Paints in the Aquatic environment”.
 
44Walker WW, Cripe CR, Prichard PH (1998) Biological and abiotic degradation of xenobiotic compounds in in-vitro estuarine water and sediment/ water systems. Chemosphere 17;2255-2271. 
45Wegman RCC, Korte GAL,
(1981), Aromatic amines in surface waters of the Netherlands, Water Res.15: 391-394
 
46Willingham GL, Jacobson AH (1996) Designing an environmentally safe marine Antifoulant. In: Devito SC, Garrett RL (eds) Designing Safer Chemicals, American Chemical Society, pp 224-223. 
47Ακριώτης Τ,
2001, Σημειώσεις Οικοτοξικολογίας , Μυτιλήνη.
 
48Ακριώτης Τ,
1990, Σημειώσεις Βιολογίας Ζώων, Μυτιλήνη.
 
49Αμπαρτζάκη ΓΕ, Βαγιάννη ΣΕ,
(1998), «Φυτοπροστασία στη Λέσβο: Καταγραφή και Παρουσίαση των Ευρέως Διακινούμενων Γεωργικών Φαρμάκων», Πτυχιακή Εργασία, Πανεπιστήμιο Αιγαίου, Τμήμα Περιβάλλοντος
 
50Γατίδου Γ,
2001 , «Μελέτη του φαινομένου της προσρόφησης στα συστατικά των υφαλοχρωμάτων irgalor 1051 και diuron και ανίχνευση τους στο θαλάσσιο περιβάλλον» ,Πρόταση διδακτορικής διατριβής, Πανεπιστήμιο Αιγαίου , Τμήμα Περιβάλλοντος ,Μυτιλήνη.
 
51Γιαννής Α, Γρηγορόπουλος Α,
2000 , «Ανίχνευση οργανικών ενώσεων κασσιτέρου στο υδατικό περιβάλλον της Ελλάδας και εκτίμηση τοξικότητας τους στη βιομάζα της ενεργούς ιλύος» , Πανεπιστήμιο Αιγαίου, Τμήμα Περιβάλλοντος, Μυτιλήνη .
 

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