Szymczycha B, Vogler S, Pempkowiak J (2012) Nutrient fluxes via submarine groundwater
discharge to the Bay of Puck, southern Baltic Sea. J Total Environ 438:86–93
Szymczycha B, Miotk M, Pempkowiak J (2013) Submarine groundwater discharge as a source of
mercury in the Bay of Puck, the Southern Baltic Sea. Water Air Soil Pollut 224. doi:10.1007/
s11270-013-1542-0
Szymczycha B, Maciejewska A, Winogradow A, Pempkowiak J (2014) Could the submarine
groundwater discharge be a significant carbon source to the southern Baltic Sea? Oceanologia
56:327–347
Taniguchi M (2000) Evaluation of the saltwater–groundwater interface from borehole temperature
in a coastal region. Geophys Res Lett 27(5):713–716
Taniguchi M, Burnett WC, Ness GD (2008) Integrated research on subsurface environments in
Asian urban areas. Sci Total Environ 404(2–3):377–392
Thoning KW, Tans PP, Komhyr WD (1989) Atmospheric carbon dioxide at Mauna Loa
observatory. 2. Analysis of the NOAA GMCC data, 1974–1985. J Geophys Res 94(D6):8549–
8565
Uścinowicz Sz, Miotk-Szpiganowicz G (2011) The Baltic Sea: location, division and catchment
area: geochemistry of Baltic Sea surface and sediments. Edited by Uścinowicz Sz, 2011. Polish
Geological Institute-National Research Institute, Warsaw, pp 13–17
Voipio A (1981) The Baltic Sea. Elsevier Scientific Publishing Company, Amsterdam, p 148
Viventsowa EA, Voronow AN (2003) Groundwater discharge to the Gulf of Finland (Baltic Sea):
ecological aspects. Environ Ecol 45:221–225
Windom HL, Moore WS, Niencheski LFH, Jahnke RA (2006) Submarine groundwater discharge:
a large, previously unrecognized source of dissolved iron to the south Atlantic ocean. Mar
Chem 102:252–266
Zektser IS, Loaiciga HA (1993) Groundwater fluxes in the global hydrologic cycle: past, present
and future. J Hydrol 144(1–4):405–427
Submarine Groundwater Discharge to the Bay of Puck …
73
discharge to the Bay of Puck, southern Baltic Sea. J Total Environ 438:86–93
Szymczycha B, Miotk M, Pempkowiak J (2013) Submarine groundwater discharge as a source of
mercury in the Bay of Puck, the Southern Baltic Sea. Water Air Soil Pollut 224. doi:10.1007/
s11270-013-1542-0
Szymczycha B, Maciejewska A, Winogradow A, Pempkowiak J (2014) Could the submarine
groundwater discharge be a significant carbon source to the southern Baltic Sea? Oceanologia
56:327–347
Taniguchi M (2000) Evaluation of the saltwater–groundwater interface from borehole temperature
in a coastal region. Geophys Res Lett 27(5):713–716
Taniguchi M, Burnett WC, Ness GD (2008) Integrated research on subsurface environments in
Asian urban areas. Sci Total Environ 404(2–3):377–392
Thoning KW, Tans PP, Komhyr WD (1989) Atmospheric carbon dioxide at Mauna Loa
observatory. 2. Analysis of the NOAA GMCC data, 1974–1985. J Geophys Res 94(D6):8549–
8565
Uścinowicz Sz, Miotk-Szpiganowicz G (2011) The Baltic Sea: location, division and catchment
area: geochemistry of Baltic Sea surface and sediments. Edited by Uścinowicz Sz, 2011. Polish
Geological Institute-National Research Institute, Warsaw, pp 13–17
Voipio A (1981) The Baltic Sea. Elsevier Scientific Publishing Company, Amsterdam, p 148
Viventsowa EA, Voronow AN (2003) Groundwater discharge to the Gulf of Finland (Baltic Sea):
ecological aspects. Environ Ecol 45:221–225
Windom HL, Moore WS, Niencheski LFH, Jahnke RA (2006) Submarine groundwater discharge:
a large, previously unrecognized source of dissolved iron to the south Atlantic ocean. Mar
Chem 102:252–266
Zektser IS, Loaiciga HA (1993) Groundwater fluxes in the global hydrologic cycle: past, present
and future. J Hydrol 144(1–4):405–427
Submarine Groundwater Discharge to the Bay of Puck …
73
