Citation: | Jing-yan Gao, Xue-jing Wang, Yan Zhang, Hai-long Li. 2018: Estimating submarine groundwater discharge and associated nutrient inputs into Daya Bay during spring using radium isotopes. Water Science and Engineering, 11(2): 120-130. doi: 10.1016/j.wse.2018.06.002 |
Beck, A.J., Rapaglia, J.P., Cochran, J.K., Bokuniewicz, H.J., 2007. Radium mass-balance in Jamaica Bay, NY: Evidence for a substantial flux of submarine groundwater. Marine Chemistry, 106(3–4), 419-441. https://doi.org/10.1016/j.marchem.2007.03.008.
|
Brooks, D.A., Baca, M.W., Lo, Y.T., 1999. Tidal circulation and residence time in a macrotidal estuary: Cobscook Bay, Maine. Estuarine, Coastal and Shelf Science, 49(5), 647–665. https://doi.org/10.1006/ecss.1999.0544.
|
Burnett, W.C., Bokuniewicz, H., Huettel, M., Moore, W.S., Taniguchi, M., 2003. Groundwater and pore water inputs to the coastal zone. Biogeochemistry, 66(1-2), 3-33. https://doi.org/10.1023/b:biog.0000006066.21240.53.
|
Burnett, W. C., Dulaiova, H., 2003. Estimating the dynamics of groundwater input into the coastal zone via continuous radon-222 measurements. Journal of Environmental Radioactivity, 69(1-2), 21-35. https://doi.org/10.1016/S0265-931X(03)00084-5.
|
Charette, M.A., Breier, C.F., Henderson, P.B., Pike, S.M., Jayne, S.R., Buesseler, K.O., 2013. Radium-based estimates of cesium isotope transport and total direct ocean discharges from the Fukushima Nuclear Power Plant accident. Biogeosciences, 10(3), 2159-2167. https://doi.org/10.5194/bg-10-2159-2013.
|
Chen, J.Y., Taniguchi, M., Liu, G.Q., Miyaoka, K., Onodera, S., Tokunaga, T., Fukushima, Y., 2007. Nitrate pollution of groundwater in the Yellow River Delta, China. Hydrogeol J, 15(8), 1605-1614.
|
Destouni, G., Hannerz, F., Prieto, C., Jarsjö, J., Shibuo, Y., 2008. Small unmonitored near‐coastal catchment areas yielding large mass loading to the sea. Global Biogeochemical Cycles, 22(4), 1429-1443. https://doi.org/10.1029/2008gb003287.
|
Du, W.C., He, Y.Q., Zhang, G.X., 1994. A study on the quantity of pollutants in the dustfall entering the sea in Daya Bay. Tropical Oceanography, (4), 92-96.
|
Environmental Protection Department (EPD), 2016. Marine Water Quality Data. Environmental Protection Department (EPD), Hong Kong.
|
Garcia-Solsona, E., Garcia-Orellana, J., Masqué, P., Dulaiova, H., 2008. Uncertainties associated with 223Ra and 224Ra measurements in water via a delayed coincidence counter (RaDeCC). Marine Chemistry, 109(3–4), https://doi.org/10.1016/j.marchem.2007.11.006.
|
Gonneea, M.E., Morris, P.J., Dulaiova, H., Charette, M.A., 2008. New perspectives on radium behavior within a subterranean estuary. Marine Chemistry, 109(3–4), 250-267. https://doi.org/10.1016/j.marchem.2007.12.002.
|
Gonneea, M.E.,Charette, M.A., 2014. Hydrologic controls on nutrient cycling in an unconfined coastal aquifer. Environmental Science & Technology, 48(24), 14178-14185. https://doi.org/10.1021/es503313t.
|
Hwang, D.W., Kim,G., Lee, W.C., Oh, H.T., 2010. The role of submarine groundwater discharge (SGD) in nutrient budgets of Gamak Bay, a shellfish farming bay, in Korea. Journal of Sea Research, 64(3), 224-230. https://doi.org/10.1016/j.seares.2010.02.006.
|
Kim, G., Ryu, J.W., Yang, H.S., Yun, S.T., 2005. Submarine groundwater discharge (SGD) into the Yellow Sea revealed by 228Ra and 226Ra isotopes: Implications for global silicate fluxes. Earth & Planetary Science Letters, 237(1-2), 156-166. https://doi.org/10.1016/j.epsl.2005.06.011.
|
Kiro, Y., Yechieli, Y., Voss, C.I., Starinsky, A., Weinstein, Y., 2012. Modeling radium distribution in coastal aquifers during sea level changes: The Dead Sea case. Geochimica Et Cosmochimica Acta, 88(7), 237-254. https://doi.org/10.1016/j.gca.2012.03.022.
|
Knee, K.L., Crook, E.D., Hench, J.L., Leichter, J.J., Paytan, A., 2016. Assessment of submarine groundwater discharge (SGD) as a source of dissolved radium and nutrients to Moorea (French Polynesia) coastal waters. Estuaries & Coasts, 39(6), 1651-1668. https://doi.org/10.1007/s12237-016-0108-y.
|
Konikow, L.F., Akhavan, M., Langevin, C.D., Michael, H.A., Sawyer, A.H., 2013. Seawater circulation in sediments driven by interactions between seabed topography and fluid density. Water Resources Research, 49(3), 1386–1399. https://doi.org/10.1002/wrcr.20121.
|
Lee, C.M., Jiao, J.J., Luo, X., Moore, W.S., 2012. Estimation of submarine groundwater discharge and associated nutrient fluxes in Tolo Harbour, Hong Kong. Science of the Total Environment, 433, 427-433. https://doi.org/10.1016/j.scitotenv.2012.06.073.
|
Lee, Y.W., Kim, G., 2007. Linking groundwater-borne nutrients and dinoflagellate red-tide outbreaks in the southern sea of Korea using a Ra tracer. Estuarine Coastal & Shelf Science, 71(1–2), 309-317. https://doi.org/10.1016/j.ecss.2006.08.004.
|
Lee, Y.W., Hwang, D.W., Kim, G., Lee, W.C., Oh, H.T., 2009. Nutrient inputs from submarine groundwater discharge (SGD) in Masan Bay, an embayment surrounded by heavily industrialized cities, Korea. Science of the Total Environment, 407(9), 3181-3188. https://doi.org/10.1016/j.scitotenv.2008.04.013.
|
Li, H.L., Jiao, J.J., 2003. Tide-induced seawater–groundwater circulation in a multi-layered coastal leaky aquifer system. Journal of Hydrology, 274(1–4), 211-224. https://doi.org/10.1016/S002-1694(02)00413-4.
|
Li, H.L., Boufadel, M.C., Weaver, J.W., 2008. Tide-induced seawater-groundwater circulation in shallow beach aquifers. Journal of Hydrology, 352(1-2), 211-224. https://doi.org/10.1016/j.jhydrol.2008.01.013.
|
Li, H.L., Jiao, J.J., 2013. Quantifying tidal contribution to submarine groundwater discharges: A review. Chinese Science Bulletin, 58(25), 3053-3059. https://doi.org/10.1007/s11434-013-5951-7.
|
Li, L., Barry, D.A., Stagnitti, F., Parlange, J.Y., 1999. Submarine groundwater discharge and associated chemical input to a coastal sea. Water Resources Research, 35(11), 3253-3259. https://doi.org/10.1029/1999wr900189.
|
Li, L., Barry, D.A., 2000. Wave-induced beach groundwater flow. Advances in Water Resources, 23(4), 325-337. https://doi.org/10.1016/s0309-1708(99)00032-9.
|
Liu, Z., Wei, H., Jiang, S.N., 2003. Characteristics of seasonal variation of monthly mean temperature and salinity fields in the Bohai Sea and analysis of the related dynamics. Journal of Ocean University of Qingdao, 33(1), 7-14 (in Chinese).
|
Luo, S., Ku, T.L., Roback, R., Murrell, M., Mcling, T.L., 2000. In-situ radionuclide transport and preferential groundwater flows at INEEL (Idaho): Decay-series disequilibrium studies. Geochimica Et Cosmochimica Acta, 64(5), 867-881. https://doi.org/10.2172/827120.
|
Luo, X., Jiao, J.J., Moore, W.S., Lee, C.M., 2014. Submarine groundwater discharge estimation in an urbanized embayment in Hong Kong via short-lived radium isotopes and its implication of nutrient loadings and primary production. Marine Pollution Bulletin, 82(1–2), 144-154. https://doi.org/10.1016/j.marpolbul.2014.03.005.
|
Mackenzie, F.T., Ver, L.M., Lerman, A., 2002. Century-scale nitrogen and phosphorus controls of the carbon cycle. Chemical Geology, 190(1–4), 13-32. https://doi.org/10.1016/s0009-2541(02)00108-0.
|
Moore, W.S., 1976. Sampling 228Ra in the deep ocean. Deep Sea Research & Oceanographic Abstracts, 23(7), 647-651. https:// doi.org/10.1016/0011-7471(76)90007-3.
|
Moore, W.S., Arnold, M.P., 1996. Measurement of 223Ra and 224Ra in coastal waters using a delayed coincidence counter. Journal of Geophysical Research Atmospheres, 101(C1), 1321-1329. https://doi.org/10.1029/95JC03139.
|
Moore, W.S., 1997. High fluxes of radium and barium from the mouth of the Ganges-Brahmaputra River during low river discharge suggest a large groundwater source. Earth & Planetary Science Letters, 150(1-2), 141-150. https://doi.org/10.1016/s0012-821x(97)00083-6.
|
Moore, W.S., 2000. Ages of continental shelf waters determined from Ra-223 and Ra-224. Journal of Geophysical Research-Oceans, 105(C9), 22117-22122.
|
Moore, W.S., Wilson, A.M., 2005. Advective flow through the upper continental shelf driven by storms, buoyancy, and submarine groundwater discharge. Earth & Planetary Science Letters, 235(3-4), 564-576. https://doi.org/10.1016/j.epsl.2005.04.043.
|
Moore, W.S., 2006. The role of submarine groundwater discharge in coastal biogeochemistry. Journal of Geochemical Exploration, 88(1–3), 389-393. https://doi.org/10.1016/j.gexplo.2005.08.082.
|
Moore, W.S., Blanton, J.O., Joye, S.B., 2006. Estimates of flushing times, submarine groundwater discharge, and nutrient fluxes to Okatee Estuary, South Carolina. Journal of Geophysical Research Oceans, 111(C9), 141-152. https://doi.org/10.1029/2005jc003041.
|
Moore, W.S., Sarmiento, J.L., Key, R.M., 2008. Submarine groundwater discharge revealed by 228Ra distribution in the upper Atlantic Ocean. Nature Geoscience, 1(5), 309-311. https://doi.org/10.1038/ngeo183.
|
Moore, W.S., 2010. The effect of submarine groundwater discharge on the ocean. Annual Review of Marine Science, 2(2), 59. https://doi.org/10.1146/annurev-marine-120308-081019.
|
Moore, W.S., Beck, M., Riedel, T., Loeff, M.R.V.D., Dellwig, O., Shaw, T.J., Schnetger, B., Brumsack, H.J., 2011. Radium-based pore water fluxes of silica, alkalinity, manganese, DOC, and uranium: A decade of studies in the German Wadden Sea. Geochimica Et Cosmochimica Acta, 75(21), 6535-6555. https://doi.org/10.1016/j.gca.2011.08.037.
|
Moore, W.S., Cai, P., 2013. Calibration of RaDeCC systems for 223Ra measurements. Marine Chemistry, 156, 130-137. https://doi.org/10.1016/j.marchem.2013.03.002.
|
Moran, S.B., Stachelhaus, S.L., Kelly, R.P., Brush, M.J., 2014. Submarine groundwater discharge as a source of dissolved inorganic nitrogen and phosphorus to coastal ponds of Southern Rhode Island. Estuaries & Coasts 37(1), 104-118. https://doi.org/10.1007/s12237-013-9663-7.
|
Peterson, R.N., Burnett, W.C., Makoto, T., Chen, J.Y., Santos, I.R., Ishitobi, T., 2008. Radon and radium isotope assessment of submarine groundwater discharge in the Yellow River Delta. Journal of Geophysical Research: Oceans, 113(C9), 233-241. https://doi.org/10.1029/2008jc004776.
|
Peterson, R.N., Burnett, W.C., Glenn, C.R., Johnson, A.G., 2009. Quantification of point-source groundwater discharges to the ocean from the shoreline of the Big Island, Hawaii. Limnology & Oceanography, 54(3), 890-904. https://doi.org/10.4319/lo.2009.54.3.0890.
|
Peterson, R.N., Burnett, W.C., Opsahl, S.P., Santos, I.R., Misra, S., Froelich, P.N., 2013. Tracking suspended particle transport via radium isotopes (226Ra and 228Ra) through the Apalachicola-Chattahoochee-Flint River system. Journal of Environmental Radioactivity, 116, 65-75. https://doi.org/10.1016/j.jenvrad.2012.09.001.
|
Rabouille, C., Mackenzie, F.T., Ver, L.M., 2001. Influence of the human perturbation on carbon, nitrogen, and oxygen biogeochemical cycles in the global coastal ocean. Geochimica Et Cosmochimica Acta, 65(21), 3615-3641. https://doi.org/10.1016/s0016-7037(01)00760-8.
|
Santosa, I.R., Eyre, B.D., Huettel, M., 2012. The driving forces of porewater and groundwater flow in permeable coastal sediments: A review. Estuarine Coastal & Shelf Science, 98(1), 1-15. https://doi.org/10.1016/j.ecss.2011.10.024.
|
Stewart, B.T., Bryan, K.R., Pilditch, C.A., Santos, I.R. 2018. Submarine groundwater discharge estimates using radium isotopes and related nutrient inputs into Tauranga Harbour (New Zealand). Estuaries & Coasts, 41(2), 384-403. https://doi.org/10.1007/s12237-017-0290-6.
|
Sturchio, N.C., Banner, J.L., Binz, C.M., Heraty, L.B., Musgrove, M., 2001. Radium geochemistry of ground waters in Paleozoic carbonate aquifers, midcontinent, USA. Applied Geochemistry, 16(1), 109-122. https://doi.org/10.1016/s0883-2927(00)00014-7.
|
Swarzenski, P.W., Reich, C., Kroeger, K.D., Baskaran, M., 2007. Ra and Rn isotopes as natural tracers of submarine groundwater discharge in Tampa Bay, Florida. Marine Chemistry, 104(1-2), 69-84. https://doi.org/10.1016/j.marchem.2006.08.001.
|
Taniguchi, M., Burnett, W.C., Cable, J.E., Turner, J.V., 2002. Investigation of submarine groundwater discharge. Hydrological Processes, 16(11),2115-2129. https://doi.org/10.1002/hyp.1145.
|
Tse, K.C., Jiao, J.J., 2008. Estimation of submarine groundwater discharge in Plover Cove, Tolo Harbour, Hong Kong by Rn-222. Marine Chemistry, 111(3/4), 160-170. https://doi.org/10.1016/j.marchem.2008.04.012.
|
Wang, H.J., Yang, Z.S., Saito, Y., Liu, J.P., Sun, X.X., 2006. Interannual and seasonal variation of the Huanghe (Yellow River) water discharge over the past 50 years: Connections to impacts from ENSO events and dams. Global & Planetary Change, 50(3–4), 212-225. https://doi.org/10.1016/j.gloplacha.2006.01.005.
|
Wang, Q., Guo, X.Y., Takeoka, H., 2008. Seasonal variations of the Yellow River plume in the Bohai Sea: A model study. Journal of Geophysical Research Oceans, 113(C8), 2092-2112. https://doi.org/10.1029/2007jc004555.
|
Wang, X., Li, H., Jiao, J.J., Barry, D.A., Li, L., Luo, X., Wang, C., Wan, L., Wang, X., Jiang, X., 2015. Submarine fresh groundwater discharge into Laizhou Bay comparable to the Yellow River flux. Scientific Reports, 5, 8814. https://doi.org/10.1038/srep08814.
|
Wang, X.J., Li, H.L., Yang, J.Z., Zheng, C.M., Zhang, Y., An, A., Zhang, M., Xiao, K., 2017. Nutrient inputs through submarine groundwater discharge in an embayment: A radon investigation in Daya Bay, China. Journal of Hydrology, 551, 784-792. https://doi.org/10.1016/j.jhydrol.2017.02.036.
|
Waska, H., Kim, G., 2011. Submarine groundwater discharge (SGD) as a main nutrient source for benthic and water-column primary production in a large intertidal environment of the Yellow Sea. Journal of Sea Research, 65(1), 103-113. https://doi.org/10.1016/j.seares.2010.08.001.
|
Wilson, A.M., Moore, W.S., Joye, S.B., Anderson, J.L., Schutte, C.A., 2011. Storm‐driven groundwater flow in a salt marsh. Water Resources Research, 47 (2), 247-255. https://doi.org/10.1029/2010wr009496.
|
Wudtisin, W., Boyd, C.E., 2005. Determination of the phosphorus fertilization rate for bluegill ponds using regression analysis. Aquaculture Research, 36(6), 593-599. https://doi.org/10.1111/j.1365-2109.2005.01261.x.
|
Xin, P., Robinson, C., Li, L., Barry, D.A., Bakhtyar, R., 2010. Effects of wave forcing on a subterranean estuary. Water Resources Research, 46(12), 439-445. https://doi.org/10.1029/2010wr009632.
|
Xu, B., Burnett, W., Dimova, N., Diao, S.B., Mi, T.Z., Jiang, X.Y., Yu, Z.G., 2013. Hydrodynamics in the Yellow River Estuary via radium isotopes: Ecological perspectives. Continental Shelf Research, 66(1), 19-28. https://doi.org/10.1016/j.csr.2013.06.018.
|
Zhang, Y., 2016. Estimation of submarine groundwater discharge and associated nutrient fluxes in eastern Laizhou Bay, China using 222Rn. Journal of Hydrology, 533, 103-113. https://doi.org/10.1016/j.jhydrol.2015.11.027.
|
Zhou, L., Boyd, C.E., 2015. Bluegill yield in response to nitrogen and phosphorus versus phosphorus-only fertilization in ponds at different times since sediment removal. Aquaculture, 446, 7-11. https://doi.org/10.1016/j.aquaculture.2015.04.019.
|