À propos de cet article

Citez

Basiak E. 2008. Aktualizacja programu rozwoju kanalizacji deszczowej dla miasta Rzeszowa z uwzględnieniem przyłączonych do Rzeszowa - Załęża, Słociny, Przybyszówki.Search in Google Scholar

Bennion H., Kelly M. G., Juggins S., Yallop M. L., Burgess A., Jamieson J. & Krokowski J. 2014. Assessment of ecological status in UK lakes using benthic diatoms. Freshwater Science 33(2): 639-654.10.1086/675447Search in Google Scholar

Bernat P. & Noga T. 2012. Różnorodność zbiorowisk okrzemek potoku Trzcianka. Rocznik Przemyski 47(3): 29-44.Search in Google Scholar

Blanco S., Bécares E., Cauchie H. M., Hoffmann L. & Ector L. 2007. Comparison of biotic indices for water quality diagnosis in the Duero Basin (Spain). Arch. Hydrobiol. Suppl. 16(3-4): 267-286.10.1127/lr/17/2007/267Search in Google Scholar

Bogaczewicz-Adamczak B. & Dziengo M. 2003. Rusing benthic diatom communities and diatom indices to assess water pollution in the Pucka Bay (Southern Baltics Sea) littoral zone. Oceanol. Hydrobiol. St. 32(4): 131-157.Search in Google Scholar

Cemagref 1982. Etude des methods biologiques quantitative d’appréciation de la qualité des eaux - Rapport Division Qualité des Eaux Lyon - Agence financiére de Bassin Rhone - Méditerranée - Corse, Pierre-Bénite, 218 pp.Search in Google Scholar

Coste M. & Ayphassorho H. 1991. Étude de la qualité des eaux du Bassin Artois-Picardie a l’aide des communautés de diatomées benthiques (Application des indicesdiatomiques). Raport Cemagref. Bordeaux - Agence de l’Eau Artois-Picardie. Douai, 277 pp.Search in Google Scholar

Descy J. P. & Coste M. 1990. Utilisation des diatomées benthiques pour l’évaluation de la qualité des eaux courantes. In: CEE Contract B-71-23. Rapport Final. UNECED, FVDP, Namur (Belgium) and CEMAGREF, Bordeaux (France), 64 pp.Search in Google Scholar

Dumnicka E., Jelonek M., Kwadrans J., Wojtal A. & Żurek R. 2006. Ichtiofauna i status ekologiczny wód Wisły, Raby, Dunajca i Wisłoki. 220 pp. Institute of Nature Conservation, Polish Academy of Science, Kraków.Search in Google Scholar

Eloranta P. & Kwandrans J. 1996. Testing the use of diatoms and macroalgae for river monitoring in Finland. In: B. A. Whitton & E. Rott (eds.). Use of algae for monitoring rivers II, 119-124 pp. Institut für Botanik, Universität Innsbruck Search in Google Scholar

Gołdyn R. 1989. Algae in the seston of the middle section of the River Radunia, its tributaries and dam reservoirs (northern Poland). Fragm. Florist. Geobot. 34(1-2): 201-245.Search in Google Scholar

Gołdyn R. & Szeląg-Wasielewska E. 2004. Changes in the phytoseston of a river-lake system in Drawieński National Park. Oceanol. Hydrob. Studies 33(2): 17-28.Search in Google Scholar

Gomà J., Rimet F., Cambra J., Hoffmann L. & Ector L. 2005. Diatom communities and water assessment in mountain riverso f the upper Segre basin (La Cerdanya, Oriental Pyrenees). Hydrobiologia 551: 219-225.Search in Google Scholar

Hofmann G., Werum M. & Lange-Bertalot H. 2011. Diatomeen im Süβwasser - Benthos von Mitteleuropa. Bestimmungsflora Kieselalgen für die ökologische Praxis. Über 700 der häugfisten Arten und ihre Ökologie. 908 pp. A. R. G. Gantner Verlag K. G., Rugell.Search in Google Scholar

Kawecka B. 1980. Sessile algae in European mountains streams. 1. The ecological characteristics of communities. Acta Hydrobiol. 22: 361-420.Search in Google Scholar

Kawecka B., Kwandrans J. & Szyjkowski A. 1999. Use of algae for monitoring rivers of Poland - situation and development. In: J. Prygiel, B. A. Whitton & J. Bukowska (eds.). Use of algae for monitoring rivers III, 57-65 pp. Agence de l’Eau Artois-Picardie.Search in Google Scholar

Kelly M. G. 2003. Short term dynamics of diatoms in an upland stream and implications for monitoring eutrophication. Environmental Pollution 125: 117-122.10.1016/S0269-7491(03)00075-7Search in Google Scholar

Kelly M. G. 2013. Data rich, information poor? Phytobenthos assessment and the Water Framework Directive. European Journal of Phycology 48: 437-450. http://dx.doi.org/10.1080/09670262.2013.85269410.1080/09670262.2013.852694Search in Google Scholar

Kelly M. G. & Whitton B. A. 1995. The Trophic Diatom Index: a new index for monitoring eutrophication in rivers. J. Appl. Phycol. 7: 433-444. http://dx.doi.org/10.1007/BF0000380210.1007/BF00003802Search in Google Scholar

Kelly M. G., Adams C., Graves A. C., Jamieson J., Krokowski J., Lycett E. B., Murray-Bligh J., Pritchard S. & Wilkins C. 2001. The Trophic Diatom Index: A User’s Manual. Revised Edition, 1-74 pp. Environment Agency, Bristol, BS32 4UD.Search in Google Scholar

Kelly M. G., Juggins S., Guthrie R., Pritchard S., Jamieson J., Rippey B., Hirst H. & Yallop M. 2008. Assessment of ecological status in U.K. rivers using diatoms. Freshwater Biology 53: 403-422. http://dx.doi.org/10.1111/j.1365-2427.2007.01903.x 10.1111/j.1365-2427.2007.01903.xSearch in Google Scholar

Kocielska-Streb M., Pajączek A., Peszek Ł., Kochman N., Noga T. & Stanek-Tarkowska J. 2014. Okrzemki (Bacillariophyceae) Zalewu Rzeszowskiego. Rocznik Przemyski 50(4): 21-40.Search in Google Scholar

Kołodziejczyk A., Koperski P. & Kam iński M. 1998. Klucz do oznaczania słodkowodnej makrofauny bezkręgowej. Biblioteka monitoringu środowiska, Państwowa Inspekcja Ochrony Środowiska, Warszawa.Search in Google Scholar

Kondracki J. 2001. Geografia regionalna Polski. 441 pp. Wyd. Nauk. PWN, Warszawa.Search in Google Scholar

Krammer K. 2000. The genus Pinnularia. Vol. 1. In: H. Lange-Bertalot (ed.). Diatoms of Europe, 1-703 pp. A. R. G. Gantner Verlag K. G., Königstein-Germany.Search in Google Scholar

Krammer K. 2002. Cymbella. In: H. Lange-Bertalot (ed.). Diatoms of Europe, 3, 584 pp. A. R. G., Gantner Verlag K. G., Rugell.Search in Google Scholar

Krammer K. 2003. Cymbopleura, Delicata, Navicymbula, Gomphocymbellopsis, Afrocymbella. In: H. Lange- Bertalot (ed.). Diatoms of Europe, 530 pp. A. R. G., Gantner Verlag K.G., Rugell.Search in Google Scholar

Krammer K. & Lange-Bertalot H. 1986. Bacillariophyceae. 1. Naviculaceae. In: H. Ettl, J. Gerloff , H. Heyning & D. Mollenhauer (eds.). Süsswasserflora von Mitteleuropa 2(1): 1-876. G. Fischer Verlag, Stuttgart-New York.Search in Google Scholar

Krammer K. & Lange-Bertalot H. 1988. Bacillariophyceae. 2. Bacillariaceae, Epithemiaceae, Surirellaceae. In: H. Ettl, J. Gerloff , H. Heyning & D. Mollenhauer (eds.). Süsswasserflora von Mitteleuropa 2(2): 1-596. G. Fischer Verlag, Stuttgart-New York.Search in Google Scholar

Krammer K. & Lange-Bertalot H. 1991a. Bacillariophyceae. 3. Centrales, Fragilariaceae, Eunotiaceae. In: H. Ettl, J. Gerloff , H. Heyning & D. Mollenhauer (eds.). Süsswasserflora von Mitteleuropa 2(3): 1-576. G. Fischer Verlag, Stuttgart-Jena.Search in Google Scholar

Krammer K. & Lange-Bertalot H. 1991b. Bacillariophyceae. 4. Achnanthaceae, Kritische Ergänzungen zu Navicula (Lineolate) und Gomphonema, Gesamtliteraturverzeichnis. In: H. Ettl, J. Gerloff , H. Heyning & D. Mollenhauer (eds.). Süsswasserflora von Mitteleuropa 2(4): 1-437. G. Fischer Verlag, Stuttgart-Jena.Search in Google Scholar

Kwandrans J. 2000. The benthic flora in small forest streams with different water trophy level and pH status (Pogórze Wielickie Hills, Southern Poland). Acta Hydrobiol. 42(3-4): 241-255.Search in Google Scholar

Krebs Ch. J. 1997. Ekologia. 734 pp. PWN, Warszawa.Search in Google Scholar

Kwandrans J. 2002. Upper Vistula River: Response of aquatic communities on pollution and impoundment. IX. Benthic diatom communities. Pol. J. Ecol. 50(2): 223-236.Search in Google Scholar

Kwandrans J., Eloranta P., Kawecka B. & Wojtan K. 1998. Use of benthic diatom communities to evaluate water quality in rivers of southern Poland. J. Appl. Phycol. 10: 193-201. http://dx.doi.org/10.1023/A:100808711425610.1023/A:1008087114256Search in Google Scholar

Kwandrans J., Eloranta P., Kawecka B. & Wojtan K. 1999. Use of benthic diatom communities to evaluate water quality in rivers of southern Poland. In: J. Prygiel, B. A. Witton & J. Bukowska (eds.). Use of algae for monitoring rivers III, pp. 154-156. Agence de l’Eau Artois-Picardie.Search in Google Scholar

Lange-Bertalot H. 1993. 83 New taxa and much more than 100 taxonomic clarifications supplementary to Süβwasserflora von Mitteleuropa. Vol. 2/1-4. J. Cramer, Berlin-Stuttgart Search in Google Scholar

Lange-Bertalot H. 2001. Diatoms of the European inland waters and comparable habitats. Navicula sensu stricto, 10 genera separated from Navicula sensu lato, Frustulia. In: H. Lange-Bertalot (ed.). Diatoms of Europe, 2: 1-526. A. R. G. Gartner Verlag K. G., Vaduz.Search in Google Scholar

Lecointe C., Coste M. & Prygiel J. 1993. OMNIDIA, a software for taxonomy, calculation of diatom indices and inventory management. Hydrobiologia 269/270: 509-513. http://dx.doi.org/10.1007/BF0002804810.1007/BF00028048Search in Google Scholar

Messyasz B., Szczuka E., Kaznowski A. & Burchardt L. 2010. The spatial changes of phytoseston and microbiological parameters in lowland rivers during the summer period. Polish J. Environ. Stud. 1(6): 1269-1277.Search in Google Scholar

Messyasz B., Staniszewski R. & Jusik S. 2014. Algae assemblagesand dominant macrophytes in small lowland rivers of Poland in relation to water quality and hydromorphology. Fresenius Environmental Bulletin 23(2A): 581-588.Search in Google Scholar

Noga T. 2012. Diversity of diatom communities in the Wisłok River (SE Poland). In: K.Wołowski, I. Kaczmarska, J. M. Ehrma n & A. Z. Wojtal (eds.). Current advances in algal taxonomy and its applications: phylogenetic, ecological and applied perspective, pp. 109-128. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.Search in Google Scholar

Noga T. & Siry K. 2010. Różnorodność flory okrzemek w potoku Łubienka (Pogórze Dynowskie, Polska SE). Zeszyty naukowe PTIE i PTG 12: 75-86.Search in Google Scholar

Noga T., Stanek-Tarkowska J., Kocielska-Streb M., Kowalska S., Ligęzka R., Kloc U. & Peszek Ł. 2012. Endangered and rare species of diatoms in running and standing waters on the territory of Rzeszów and the surrounding area. In: J. Kostecka & J. Kaniuczak (eds.). Practical Applications of Environmental Research, pp. 331-340. Rzeszów. Search in Google Scholar

Noga T., Stanek-Tarkowska, Pajączek A., Peszek Ł. & Kochman N. 2013a. Ecological characteristics the diatoms of river Wisłok using their role of indicators for assessing water quality. Journal of Ecological Engineering 14(3): 18-27. http://dx.doi.org/10.5604/2081139X.106621910.5604/2081139X.1066219Search in Google Scholar

Noga T., Stanek-Tarkowska J., Peszek Ł., Pajączek A. & Kowalska S. 2013b. Use of diatoms to assess water quality of anthropogenically modified Matysówka stream. Journal of Ecological Engineering 14(2): 1-11. http://dx.doi.org/10.5604/2081139X.104316610.5604/2081139X.1043166Search in Google Scholar

Noga T., Stanek-Tarkowska J., Pajączek A., Peszek Ł., Kochman N., Woźniak K. 2013c. Application of diatoms to assess the quality of the waters of the Baryczka stream, left-side tributary of the River San. Journal of Ecological Engineering 14(2): 8-23. http://dx.doi.org/10.5604/2081139X.105581810.5604/2081139X.1055818Search in Google Scholar

Noga T., Kochman N., Peszek Ł., Stanek-Tarkowska J. & Pajączek A. 2014a. Diatoms (Bacillariophyceae) in rivers and streams and on cultivated soils of the Podkarpacie Region in the years 2007-2011. Journal of Ecological Engineering 15(1): 6-25. http://dx.doi.org/10.12911/22998993.1084168Search in Google Scholar

Noga T., Stanek-Tarkowska, Pajączek A., Kochman N. & Peszek Ł. 2014b. Ecological assessment of the San River water quality on the area of the San Valley Landscape Park. Journal of Ecological Engineering 15(4): 12-22. http://dx.doi.org/10.12911/22998993.112545310.12911/22998993.1125453Search in Google Scholar

Noga T., Stanek-Tarkowska J., Pajączek A., Peszek Ł., Kochman-Kędziora N. & Irlik E. 2015. Wykorzystanie okrzemek (Bacillariophyta) do oceny jakości wód rzeki Białej Tarnowskiej. Inżynieria Ekologiczna 42: 17-27. http://dx.doi.org/10.12912/23920629/197310.12912/23920629/1973Search in Google Scholar

Novais M. H, Jüttner I., Van de Vijver B., Morais M. M., Hoffmann L. & Ector L. 2015. Morphological variability within the Achnanthidium minutissimum species complex (Bacillariophyta): comparison between the type material of Achnanthes minutissima and related taxa, and new freshwater Achnanthidium species from Portugal. Phytotaxa 224: 101-139.Search in Google Scholar

Pajączek A., Musiałek M., Pelczar J. & Noga T. 2012. Diversity of diatoms Bacillariophyceae) in the Mleczka River, Morwawa River and Rożanka stream (tributaries of the Wisłok River, SE Poland), with particular reference to threatened species. In: K.Wołowski, I. Kaczmarska, J. M. Ehrman & A. Z. Wojtal (eds.). Current advances in algal taxonomy and its applications: phylogenetic, ecological and applied perspective, pp. 129-151. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.Search in Google Scholar

Panek P. 2011. Wskaźniki biotyczne stosowane w monitoringu wód od czasu implementacji w Polsce Ramowej Dyrektywy Wodnej. Przegląd Przyrodniczy 22(3): 111-123.Search in Google Scholar

Peszek Ł., Noga T., Stanek-Tarkowska J., Pajączek A., Kochman-Kędziora N. & Pieniążek M. 2015. The effect of anthropogenic change in the structure of diatoms and water quality of the Żołynianka and Jagielnia streams. Journal of Ecological Engineering 16(2): 33-51. http://dx.doi.org/10.12911/22998993/185610.12911/22998993/1856Search in Google Scholar

Prygiel J. 2002. Mangement of the diatom monitoring network in France. J. App. Phycol. 14: 19-26. http://dx.doi.org/10.1023/A:101526822541010.1023/A:1015268225410Search in Google Scholar

Prygiel J. & Coste M. 1993. The assessment of water quality in the Artois-Picardie water basin (France) by the use of diatom indices. Hydrobiologia 269/270: 343-349. http://dx.doi.org/10.1007/BF0002803310.1007/BF00028033Search in Google Scholar

Prygiel J., Whitton B. A. & Bukowska J. (eds.). 1999. Use of the algae for monitoring rivers III. Agence de I’Eau Artis-Picardie.Search in Google Scholar

Raińczuk A. 2009. Uwarunkowania wynikające ze stanu i funkcjonowania środowiska przyrodniczego - rzeźba terenu. Załącznik nr 68 do uchwały nr XXXVII/ 113/2000 Rady Miasta Rzeszowa z dnia 4 lipca 2000 r., Rzeszów.Search in Google Scholar

Rakowska B. 2001. Studium różnorodności okrzemek ekosystemów wodnych Polski niżowej. 77 pp. Wyd. Uniw. Łódzkiego, Łódź.Search in Google Scholar

Rakowska B. & Szczepocka E. 2011. Demonstration of the Bzura River restoration using diatom indices. Biologia 66(3): 411-417. http://dx.doi.org/10.2478/s11756-011-0032-310.2478/s11756-011-0032-3Search in Google Scholar

Reichardt E. 1999. Taksonomy. Zur revission der Gattung Gomphonema. Die Arten um G. affine/insigne, G. angustum/micropus, G. acuminatum sowie gomphonemoide Diatomeen aus dem Oberoligozän in Böhmen In: H. Lange-Bertalot (ed.). Iconographia Diatomologica. Annotated Diatom Mocrographs 8: 1-203. A. R. G. Gantner Verlag K.G., Ruggell.Search in Google Scholar

Regulation 2011. Regulation of the Minister of Environment of 9 Nov 2011 on the way of classification of the condition of uniform parts of surface waters and environmental quality standards for priority substances. J. Laws 2011. No. 257, item 1545.Search in Google Scholar

Round F. E. 1962. The application of diatom ecology to water pollution and purification. Biological problems in water pollution, pp. 29-33. Dep. Health Educ. and Welfare, Publ. Health Serv. Div. Water Suppl. Pollut. Control, Cincinnati, Ohio.Search in Google Scholar

Siemińska J., Bąk M., Dziedzic J., Gąbka M., Gregorowicz P., Mrozińska T., Pełechaty M., Owsianny P. M., Pliński M. & Witkowski A. 2006. Red list the algae in Poland. In: Z. Mirek, K. Zarzycki, W. Wojewoda & Z. Szeląg (eds.). Red list of plants and fungi in Poland, pp. 35-52. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.Search in Google Scholar

Słysz K., Czerwieniec M., Schmager M., Wiatrak W., Zgud K. & Szalińska E. 2004. Programochrony środowiska z planem gospodarki odpadami miasta Rzeszowa, Rzeszów.Search in Google Scholar

Szczepocka E. & Szulc B. 2009. The use of benthic diatoms in estimating water quality of variously polluted rivers. Oceanol. Hydrobiol. St. 38(1): 17-26. http://dx.doi.org/10.2478/v10009-009-0012-x 10.2478/v10009-009-0012-xSearch in Google Scholar

Szczepocka E, Szulc K., Szulc B. & Żelazna-Wieczorek J. 2014. Diatom indices in the biological assessment of the water quality based on the example of a small lowland river. Oceanol. Hydrobiol. St. 43(3): 265-273. http://dx.doi.org/10.2478/s13545-014-0141-z 10.2478/s13545-014-0141-zSearch in Google Scholar

Szabó K., Kiss K.T., Ector L., Kecskés M. & Ács E. 2004. Benthic diatom flora in a small Hungarian tributary of River Danube (Rákos-stream). Arch. Hydrobiol. Suppl. Algolog. St. 111: 79-94.10.1127/1864-1318/2004/0111-0079Search in Google Scholar

Szeląg-Wasielewska E. 2004. Dynamic of autotrophic picoplankton communities in the epilimnion of a eutrophic Lake (Strzeszyńskie Lake, Poland). Ann. Limnol. Int. J. Limn. 40(2): 13-120.Search in Google Scholar

Śliwa-Dominiak J. & Deptuła W. 2012. Przepisy dotyczące monitoringu wód powierzchniowych w Polsce. Ochrona Środowiska i zasobów naturalnych 54: 39-50.Search in Google Scholar

Tambor A. & Noga T. 2011. Różnorodność flory okrzemek w rzece Lubcza i potoku Lubenia (Podgórze Rzeszowskie, Polska SE). Rocznik Przemyski 47(3): 105-118.Search in Google Scholar

Ter Braak C.J.F. & Šmilauer P. 2012. Canoco reference manual and user’s guide. Software for ordination (version 5.0). Microcomputer Power, Ithaca, NY, USA. 496 pp.Search in Google Scholar

Werum M. & Lange-Bertalot H. 2004. Diatoms in springs from Central Europe and elsewhere dunder the influence of hydrogeology and antrophogenic impacts. 480 pp. A. R. G. Gantner Verlag K. G., Germany.Search in Google Scholar

Whitton B. A., Rott E. & Friendrich G. (eds.). 1991. Use of the algae for monitoring Rivers I. 193 pp. Institut für Botanik, Universität Insbruck.Search in Google Scholar

Whitton B. A. & Rott E. (eds.). 1996. Use of Algae for Monitoring Rivers 2. 196 pp. Institut für Botanic, Uniwersität Innsbruck.Search in Google Scholar

Witak M. 2013. Diatom biofacies in the SW Gulf of Gdańsk and the Vistula Lagoon (the southern Baltic Sea) as indicators of the basin evolution in the Middle and Late Holocene. Oceanol. Hydrobiol. St. 42(1): 70-88. http://dx.doi.org/10.2478/s13545-013-0052-410.2478/s13545-013-0052-4Search in Google Scholar

Witkowski A., Radziejewska T., Wawrzyniak-Wydrowska B., Lange-Bertalot H., Bąk M. & Gelbrecht J. 2011. Living on the pH Edge: Diatom Assemblages of Low - pH Lakes in Western Pomerania (NW Poland). Cellular Orgin, Life in Extreme Habitats and Astrobiology 19: 365-384. http://dx.doi.org/10.1007/978-94-007-1327-7_1610.1007/978-94-007-1327-7_16Search in Google Scholar

Wojtal A. 2013. Species composition and distribution of diatom assemblages in spring waters from various geological formations in southern Poland. Bibliotheca Diatomologica 59: 1-436.Search in Google Scholar

Van Dam H., Martens A. & Sinkeldam J. 1994. A coded checklist and ecological indicator values of freshwater diatoms from the Netherlands. Netherlands J. Aquatic Ecol. 28: 117-133. http://dx.doi.org/10.1007/BF0233425110.1007/BF02334251Search in Google Scholar

Żelazna-Wieczorek J. 2011. Diatom flora in springs of Łódź Hills (Central Poland). Biodiversity, taxonomy and temporal changes of epipsammic diatom assemblages in springs affected by human impact. Diatom Monographs 13: 1-420. A. R. G. Gantner Verlag K.G.Search in Google Scholar

Żelazowski E., Magiera M., Kawecka B., Kwadrans J. & Kotowicz J. 2004. Use of algae for monitoring rivers in Poland - In the light of a new law for environmental protection. Oceanol. Hydrobiol. St. 33(4): 27-39.Search in Google Scholar

eISSN:
1897-2810
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Life Sciences, Zoology, Ecology