Acceso abierto

Plant balls from a Pomeranian lake, their invertebrate and microplastic components


Cite

Barnes, D. K. A., Galgani, F., Thompson, R. C., & Barlaz, M. (2009). Accumulation and fragmentation of plastic debris in global environments. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences, 364 (1526), 1985–1998. https://doi.org/10.1098/rstb.2008.0205 PMID: 19528051 Barnes D. K. A. Galgani F. Thompson R. C. Barlaz M. ( 2009 ). Accumulation and fragmentation of plastic debris in global environments . Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences , 364 ( 1526 ), 1985 1998 . https://doi.org/10.1098/rstb.2008.0205 PMID: 19528051 Search in Google Scholar

Bellincampi, S. (2016). No matter the name, having a sea ball. Vineyard Gazette, 175. https://vineyardgazette.com/news/2016/03/09/no-matter-name-having-sea-ball (access: 2.02.2023) Bellincampi S. ( 2016 ). No matter the name, having a sea ball . Vineyard Gazette , 175 . https://vineyardgazette.com/news/2016/03/09/no-matter-name-having-sea-ball (access: 2.02.2023) Search in Google Scholar

Browne, M. A., Crump, P., Niven, S. J., Teuten, E., Tonkin, A., Galloway, T., & Thompson, R. (2011). Accumulation of microplastic on shorelines woldwide: Sources and sinks. Environmental Science & Technology, 45(21), 9175–9179. https://doi.org/10.1021/es201811s PMID:21894925 Browne M. A. Crump P. Niven S. J. Teuten E. Tonkin A. Galloway T. Thompson R. ( 2011 ). Accumulation of microplastic on shorelines woldwide: Sources and sinks . Environmental Science & Technology , 45 ( 21 ), 9175 9179 . https://doi.org/10.1021/es201811s PMID: 21894925 Search in Google Scholar

Cannon, J. F. M. (1979). An experimental investigation of Posidonia balls. Aquatic Botany, 6, 407–410. https://doi.org/10.1016/0304-3770(79)90080-9 Cannon J. F. M. ( 1979 ). An experimental investigation of Posidonia balls . Aquatic Botany , 6 , 407 410 . https://doi.org/10.1016/0304-3770(79)90080-9 Search in Google Scholar

Ganong, W. F. (1905). On balls of vegetable matter from sandy shores. Rhodora, 7 (75), 41–47. Ganong W. F. ( 1905 ). On balls of vegetable matter from sandy shores . Rhodora , 7 ( 75 ), 41 47 . Search in Google Scholar

Golubić, S. (1961). Die “Seeballe” Ein seltsamer Standort der Blaualgen. Hydrobiologia. 18: 109–120. https://doi/https://doi.org/10.1007/BF00731366 Golubić S. ( 1961 ). Die “Seeballe” Ein seltsamer Standort der Blaualgen . Hydrobiologia . 18 : 109 120 . https://doi/https://doi.org/10.1007/BF00731366 Search in Google Scholar

Gerbeaux, P., & Ward, J. (1986). The disappearance of macrophytes and its importance in the management of shallow lakes in New Zealand. In Proceedings of the 7th International Symposium on Aquatic Weeds, European Weed Research Society and Association of Applied Biologists. September: 15–19. Loughborough University of Technology, Loughborough, Leicestershire, England. Gerbeaux P. Ward J. ( 1986 ). The disappearance of macrophytes and its importance in the management of shallow lakes in New Zealand . In Proceedings of the 7th International Symposium on Aquatic Weeds, European Weed Research Society and Association of Applied Biologists. September: 15–19 . Loughborough University of Technology , Loughborough, Leicestershire, England . Search in Google Scholar

Jambeck, J. R., Geyer, R., Wilcox, C., Siegler, T. R., Perryman, M., Andrady, A., Narayan, R., & Law, K. L. (2015). Marine pollution. Plastic waste inputs from land into the ocean. Science, 347 (6223), 768–771. https://doi.org/10.1126/science.1260352 PMID:25678662 Jambeck J. R. Geyer R. Wilcox C. Siegler T. R. Perryman M. Andrady A. Narayan R. Law K. L. ( 2015 ). Marine pollution. Plastic waste inputs from land into the ocean . Science , 347 ( 6223 ), 768 771 . https://doi.org/10.1126/science.1260352 PMID: 25678662 Search in Google Scholar

Kornijów, R., Vakkilainen, K., Horppila, J., Luokkanen, E., & Kairesalo, T. (2005). Impacts of a submerged plant (Elodea canadensis) on interactions between roach (Rutilus rutilus) and its invertebrate prey communities in a lake littoral zone. Freshwater Biology, 50 (2), 262–276. https://doi.org/10.1111/j.1365-2427.2004.01318.x Kornijów R. Vakkilainen K. Horppila J. Luokkanen E. Kairesalo T. ( 2005 ). Impacts of a submerged plant (Elodea canadensis) on interactions between roach (Rutilus rutilus) and its invertebrate prey communities in a lake littoral zone . Freshwater Biology , 50 ( 2 ), 262 276 . https://doi.org/10.1111/j.1365-2427.2004.01318.x Search in Google Scholar

Kornijów, R., Measey, G. J., & Moss, B. (2016). The structure of the littoral: Effects of waterlily density and perch predation on sediment and plant-associated macroinvertebrate communities. Freshwater Biology, 61 (1), 32–50. https://doi.org/10.1111/fwb.12674 Kornijów R. Measey G. J. Moss B. ( 2016 ). The structure of the littoral: Effects of waterlily density and perch predation on sediment and plant-associated macroinvertebrate communities . Freshwater Biology , 61 ( 1 ), 32 50 . https://doi.org/10.1111/fwb.12674 Search in Google Scholar

Kumar, A. (2014). Origin and distribution of “Beach Balls” (Egagropili) of Brega, Libya, “Kedron Balls” of New Brunswick, Canada, and Carboniferous “Coal Balls”. Earth Science India, 7, 1–12. Kumar A. ( 2014 ). Origin and distribution of “Beach Balls” (Egagropili) of Brega, Libya, “Kedron Balls” of New Brunswick, Canada, and Carboniferous “Coal Balls” . Earth Science India , 7 , 1 12 . Search in Google Scholar

McAtee, W. L. (1925). Notes on drift, vegetable balls, and aquatic insects as a food product of inland waters. Ecology, 6 (3), 288–302. https://doi.org/10.2307/1929203 McAtee W. L. ( 1925 ). Notes on drift, vegetable balls, and aquatic insects as a food product of inland waters . Ecology , 6 ( 3 ), 288 302 . https://doi.org/10.2307/1929203 Search in Google Scholar

MBDL app. Mobile Forest Data Bank. https://www.bdl.lasy.gov.pl/portal/mbdl (access: 12.01.2023) MBDL app . Mobile Forest Data Bank . https://www.bdl.lasy.gov.pl/portal/mbdl (access: 12.01.2023) Search in Google Scholar

Morton, F. (1953). Die Larchennadelseeballe der Hallstattersees. Archiv für Hydrobiologie, 48, 121. Morton F. ( 1953 ). Die Larchennadelseeballe der Hallstattersees . Archiv für Hydrobiologie , 48 , 121 . Search in Google Scholar

Nakazawa, S., & Abe, M. (1973). Artificial globing of algae. Bulletin of the Japanese Society of Phycology, 21, 53–57. Nakazawa S. Abe M. ( 1973 ). Artificial globing of algae . Bulletin of the Japanese Society of Phycology , 21 , 53 57 . Search in Google Scholar

Nakazawa, S. (1974). The time and the cause of extermination of lake balls from Lake Zeller. Bulletin of the Japanese Society of Phycology, 22 (3), 101–103. Nakazawa S. ( 1974 ). The time and the cause of extermination of lake balls from Lake Zeller . Bulletin of the Japanese Society of Phycology , 22 ( 3 ), 101 103 . Search in Google Scholar

Napper, I. E., & Thompson, R. C. (2016). Release of synthetic microplastic plastic fibres from domestic washing machines: Effects of fabric type and washing conditions. Marine Pollution Bulletin, 112 (1-2), 39–45. https://doi.org/10.1016/j.marpolbul.2016.09.025 PMID:27686821 Napper I. E. Thompson R. C. ( 2016 ). Release of synthetic microplastic plastic fibres from domestic washing machines: Effects of fabric type and washing conditions . Marine Pollution Bulletin , 112 ( 1-2 ), 39 45 . https://doi.org/10.1016/j.marpolbul.2016.09.025 PMID: 27686821 Search in Google Scholar

O’Malley, I. (2021). Seagrass ‘Neptune balls’ sieve millions of plastic particles from water, study finds. https://www.theweathernetwork.com/en/news/climate/solutions/seagrass-neptune-balls-trap-millions-of-plastics-from-the-ocean-study-finds O’Malley I. ( 2021 ). Seagrass ‘Neptune balls’ sieve millions of plastic particles from water, study finds . https://www.theweathernetwork.com/en/news/climate/solutions/seagrass-neptune-balls-trap-millions-of-plastics-from-the-ocean-study-finds Search in Google Scholar

Olson, R. W., Schmutz, J. K., & Hammer, T. (2005). Occurrence, composition and formation of Ruppia, Widgeon Grass, balls in Saskatchewan Lakes. Canadian Field Naturalist, 119(1), 114–117. https://doi.org/10.22621/cfn.v119i1.89 Olson R. W. Schmutz J. K. Hammer T. ( 2005 ). Occurrence, composition and formation of Ruppia, Widgeon Grass, balls in Saskatchewan Lakes . Canadian Field Naturalist , 119 ( 1 ), 114 117 . https://doi.org/10.22621/cfn.v119i1.89 Search in Google Scholar

Sanchez-Vidal, A., Canals, M., de Haan, W. P., Romero J., Veny M. (2021). Seagrasses provide a novel ecosystem service by trapping marine plastics. Scientific Reports, 11. https://https://doi.org/10.1038/s41598-020-79370-3 Sanchez-Vidal A. Canals M. de Haan W. P. Romero J. Veny M. ( 2021 ). Seagrasses provide a novel ecosystem service by trapping marine plastics . Scientific Reports , 11 . https://https://doi.org/10.1038/s41598-020-79370-3 Search in Google Scholar

Schloesser, D. W., Hiltunen, J. K., & Owens, R. W. (1983). Rediscovery of lake balls in Lake Michigan. Journal of Freshwater Ecology, 2(2), 159–163. https://doi.org/10.1080/02705060.1983.9664588 Schloesser D. W. Hiltunen J. K. Owens R. W. ( 1983 ). Rediscovery of lake balls in Lake Michigan . Journal of Freshwater Ecology , 2 ( 2 ), 159 163 . https://doi.org/10.1080/02705060.1983.9664588 Search in Google Scholar

eISSN:
1897-3191
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Chemistry, other, Geosciences, Life Sciences