Green TR, Taniguchi M, Kooi H, Gurdak JJ, Allen DM, Hiscock KM, Treidel H, Aureli A (2011)
Beneath the surface of global change: impacts of climate change on groundwater. J Hydrol
405:532–560. doi:10.1016/j.jhydrol.2011.05.002
Hsu KC, Wang CH, Chen KC, Chen CT, Ma KW (2007) Climate-induced hydrological impacts
on the groundwater system of the Pingtung Plain, Taiwan. Hydrogeol J 15(5):903–913
IPCC 2007 (2007) Climate change 2007: the physical science basis. Contribution of working
group I to the fourth assessment report of the intergovernmental panel on climate change. In:
Solomon S et al (eds) Cambridge University Press, Cambridge, UK, and New York, USA
Keeling CD, Bacastow RB, Bainbridge AE (1976) Atmospheric carbon dioxide variations at
Mauna Loa observatory, Hawaii. TELLUS 28(6):538–551
Keeling CD, Brix H, Gruber N (2004) Seasonal and long-term dynamics of the upper ocean carbon
cycle at station ALOHA near Hawaii. Global Biogeochem Cycles 18(4):1–26
Kløve B, Ala-Aho P, Bertrand G, Gurdak JJ, Kupferberger H, Kværner J, Muotka T, Mykra H,
Preda E, Rossi P, Uvo BC, Velasco E, Pulido-Velazquea M (2013) Climate change impacts on
groundwater and dependent ecosystems. J Hydrol (in press)
Kolago C (1964) Wody mineralne województwa szczecińskiego i perspektywy ich wykorzystania.
Przegląd Zachodniopomorski 5:65–85
Korzeniewski K (1993) Zatoka Pucka. Instytut Oceanologii Uniwersytetu Gdanskiego, Gdynia
Kryza J, Kryza H (2006) The analytic and model estimation of the direct groundwater flow to
Baltic Sea on the territory of Poland. Geologos 10:154–165
Kundzewicz ZW, Mata LJ, Arnell NW, Doll P, Kabat P, Jimenez B, Miller KA, Oki T, Sen Z,
Shiklomanov IA (2007) Freshwater resources and their management. In: Parry ML, Canziani
OF, Palutikof JP, van der Linden PJ, Hanson CE (eds) Climate change 2007: impacts
adaptation and vulnerability. Cambridge University Press, Cambridge, pp 173–210
Lidzbarski M (2011) Groundwater discharge in the Baltic Sea Basin: geochemistry of Baltic Sea
surface and sediments. Edited by Uścinowicz Sz, 2011. Polish Geological Institute-National
Research Institute, Warsaw, pp 138–145
Moore WS (2010) The effect of submarine groundwater discharge on the ocean. Annu Rev Mar
Sci 2:59–88
Moustadraf J, Razack M, Sinan M (2008) Evaluation of the impacts of climate changes on the
coastal Chaouia aquifer, Morocco, using numerical modeling. Hydrogeol J 16(7):1411–1426
Nowacki J (1993) Termika, zasolenie i gęstość wody: Zatoka Pucka. In: Korzeniewski K (ed).
Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, Poland, pp 79–112
Pempkowiak J, Szymczycha B, Kotwicki L (2010) Submarine groundwater discharge (SGD) to
the Baltic Sea. Rocznik Ochrony Środowiska 12:17–32
Peltonen K (2002) Direct groundwater inflow to the Baltic Sea. TemaNord, Nordic Councils of
Ministers, Copenhagen, Holand, 79 pp
Petit JR, Jouzel J, Raynaud D, Barkov NI, Barnola JM, Basile I, Bender M, Chappellaz J, Davis
M, Delaygue G, Delmotte M, Kotlyakov VM, Legrand M, Lipenkov VY, Lorius C, Pepin L,
Ritz C, Saltzman E, Stievenard M (1999) Climate and atmospheric history of the past
420,000 years from the Vostok ice core, Antarctica. Nature 399(6735):429–436
Piekarek-Jankowska H (1994) Zatoka Pucka jako obszar drenażu wód podziemnych. Wydawnictwo Uniwersytetu Gdańskiego, Gdańsk, Poland
Pietrucień Cz (1983) Regionalne zróżnicowanie warunków dynamicznych i hydrodynamicznych
wód podziemnych w stresie brzegowej południowego i wschodniego Bałtyku. Turuń, Poland,
p 71
Sahagian DL, Schwartz FW, Jacobs DK (1994) Direct anthropogenic contributions to sea level rise
in the twentieth century. Nature 367:54–57
Schlüter M, Sauter EJ, Andersen CA, Dahlgaard H, Dando PR (2004) Spatial distribution and
budget for submarine groundwater discharge in Eckernförde Bay (Western Baltic Sea). Limnol
Oceanogr 49:157–167
Slomp CP, Van Cappellen P (2004) Nutrient inputs to the coastal ocean through submarine
groundwater discharge: controls and potential impact. J Hydrol 295(1–4):64–86
72
B. Szymczycha
Beneath the surface of global change: impacts of climate change on groundwater. J Hydrol
405:532–560. doi:10.1016/j.jhydrol.2011.05.002
Hsu KC, Wang CH, Chen KC, Chen CT, Ma KW (2007) Climate-induced hydrological impacts
on the groundwater system of the Pingtung Plain, Taiwan. Hydrogeol J 15(5):903–913
IPCC 2007 (2007) Climate change 2007: the physical science basis. Contribution of working
group I to the fourth assessment report of the intergovernmental panel on climate change. In:
Solomon S et al (eds) Cambridge University Press, Cambridge, UK, and New York, USA
Keeling CD, Bacastow RB, Bainbridge AE (1976) Atmospheric carbon dioxide variations at
Mauna Loa observatory, Hawaii. TELLUS 28(6):538–551
Keeling CD, Brix H, Gruber N (2004) Seasonal and long-term dynamics of the upper ocean carbon
cycle at station ALOHA near Hawaii. Global Biogeochem Cycles 18(4):1–26
Kløve B, Ala-Aho P, Bertrand G, Gurdak JJ, Kupferberger H, Kværner J, Muotka T, Mykra H,
Preda E, Rossi P, Uvo BC, Velasco E, Pulido-Velazquea M (2013) Climate change impacts on
groundwater and dependent ecosystems. J Hydrol (in press)
Kolago C (1964) Wody mineralne województwa szczecińskiego i perspektywy ich wykorzystania.
Przegląd Zachodniopomorski 5:65–85
Korzeniewski K (1993) Zatoka Pucka. Instytut Oceanologii Uniwersytetu Gdanskiego, Gdynia
Kryza J, Kryza H (2006) The analytic and model estimation of the direct groundwater flow to
Baltic Sea on the territory of Poland. Geologos 10:154–165
Kundzewicz ZW, Mata LJ, Arnell NW, Doll P, Kabat P, Jimenez B, Miller KA, Oki T, Sen Z,
Shiklomanov IA (2007) Freshwater resources and their management. In: Parry ML, Canziani
OF, Palutikof JP, van der Linden PJ, Hanson CE (eds) Climate change 2007: impacts
adaptation and vulnerability. Cambridge University Press, Cambridge, pp 173–210
Lidzbarski M (2011) Groundwater discharge in the Baltic Sea Basin: geochemistry of Baltic Sea
surface and sediments. Edited by Uścinowicz Sz, 2011. Polish Geological Institute-National
Research Institute, Warsaw, pp 138–145
Moore WS (2010) The effect of submarine groundwater discharge on the ocean. Annu Rev Mar
Sci 2:59–88
Moustadraf J, Razack M, Sinan M (2008) Evaluation of the impacts of climate changes on the
coastal Chaouia aquifer, Morocco, using numerical modeling. Hydrogeol J 16(7):1411–1426
Nowacki J (1993) Termika, zasolenie i gęstość wody: Zatoka Pucka. In: Korzeniewski K (ed).
Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, Poland, pp 79–112
Pempkowiak J, Szymczycha B, Kotwicki L (2010) Submarine groundwater discharge (SGD) to
the Baltic Sea. Rocznik Ochrony Środowiska 12:17–32
Peltonen K (2002) Direct groundwater inflow to the Baltic Sea. TemaNord, Nordic Councils of
Ministers, Copenhagen, Holand, 79 pp
Petit JR, Jouzel J, Raynaud D, Barkov NI, Barnola JM, Basile I, Bender M, Chappellaz J, Davis
M, Delaygue G, Delmotte M, Kotlyakov VM, Legrand M, Lipenkov VY, Lorius C, Pepin L,
Ritz C, Saltzman E, Stievenard M (1999) Climate and atmospheric history of the past
420,000 years from the Vostok ice core, Antarctica. Nature 399(6735):429–436
Piekarek-Jankowska H (1994) Zatoka Pucka jako obszar drenażu wód podziemnych. Wydawnictwo Uniwersytetu Gdańskiego, Gdańsk, Poland
Pietrucień Cz (1983) Regionalne zróżnicowanie warunków dynamicznych i hydrodynamicznych
wód podziemnych w stresie brzegowej południowego i wschodniego Bałtyku. Turuń, Poland,
p 71
Sahagian DL, Schwartz FW, Jacobs DK (1994) Direct anthropogenic contributions to sea level rise
in the twentieth century. Nature 367:54–57
Schlüter M, Sauter EJ, Andersen CA, Dahlgaard H, Dando PR (2004) Spatial distribution and
budget for submarine groundwater discharge in Eckernförde Bay (Western Baltic Sea). Limnol
Oceanogr 49:157–167
Slomp CP, Van Cappellen P (2004) Nutrient inputs to the coastal ocean through submarine
groundwater discharge: controls and potential impact. J Hydrol 295(1–4):64–86
72
B. Szymczycha
