Below you will find a collection of published journal articles by researchers that have made use of Durridge instruments. The papers are sorted by category in reverse chronological order.
For more than two decades our products have served scientists working in diverse research fields ranging from deep underground dark matter experiments to the peaks of active volcanoes (and all kinds of places in-between!). Please contact us if you have used Durridge products in your research and would like to submit an article to our collection.
Biehler, A., Buffin-Bélanger, T., Baudron, P., & Chaillou, G. (2023). Groundwater discharge contribution to dissolved inorganic carbon and riverine carbon emissions in a subarctic region. Biogeochemistry, 165(2), 129–150. [View]
Chen, X., Zhu, P., Zhang, Y., & Li, L. (2023). Plum rain enhances porewater greenhouse gas fluxes and weakens the acidification buffering potential in saltmarshes. Journal of Hydrology, 616(November 2022), 128686. [View]
Jiang, Y., Du, Y., Sun, X., Deng, Y., Xu, J., Tian, H., … Wang, Y. (2023). Quantification of groundwater-borne greenhouse gases (CH4, CO2, N2O) fluxes to an oxbow lake in a subtropical alluvial-lacustrine plain. Applied Geochemistry, 155(May), 105743. [View]
Liang, W., Chen, X., Zhao, C., Li, L., & He, D. (2023). Seasonal changes of dissolved organic matter chemistry and its linkage with greenhouse gas emissions in saltmarsh surface water and porewater interactions. Water Research, 245(August), 120582. [View]
Liu, J., Chen, Y., Wang, Y., Du, M., & Wu, Z. (2023). Greenhouse gases emissions and dissolved carbon export affected by submarine groundwater discharge in a maricultural bay, Hainan Island, China. Science of the Total Environment, 857(October 2022), 159665. [View]
Lizotte, M., Juhls, B., Matsuoka, A., Massicotte, P., Mével, G., Anikina, D. O. J., … Babin, M. (2023). Nunataryuk field campaigns: understanding the origin and fate of terrestrial organic matter in the coastal waters of the Mackenzie Delta region. Earth System Science Data, 15(4), 1617–1653. [View]
Yan, F., Du, Z., Pu, T., Xu, Q., Wang, L., Ma, R., … Kang, S. (2023). Isotopic composition and emission characteristics of CO2 and CH4 in glacial lakes of the Tibetan Plateau. Environmental Research Letters, 18(9). [View]
Akhand, A., Chanda, A., Watanabe, K., Das, S., Tokoro, T., Hazra, S., & Kuwae, T. (2022). Drivers of inorganic carbon dynamics and air–water CO2 fluxes in two large tropical estuaries: Insights from coupled radon (222Rn) and pCO2 surveys. Limnology and Oceanography, 67(S2), S118–S132. [View]
Koschorreck, M., Knorr, K. H., & Teichert, L. (2022). Temporal patterns and drivers of CO2 emission from dry sediments in a groyne field of a large river. Biogeosciences, 19(22), 5221–5236. [View]
Li, X., Qi, M., Gao, D., Liu, M., & Hou, L. (2022). Switches of methane production pathways and emissions with human activity intensity in subtropical estuaries. Journal of Hydrology, 612(PA), 128061. [View]
Taillardat, P., Bodmer, P., Deblois, C. P., Ponçot, A., Prijac, A., Riahi, K., … Garneau, M. (2022). Carbon Dioxide and Methane Dynamics in a Peatland Headwater Stream: Origins, Processes and Implications. Journal of Geophysical Research: Biogeosciences, 127(7), 1–27. [View]
Wang, Z. lin, Sadat-Noori, M., & Glamore, W. (2022). Groundwater discharge drives water quality and greenhouse gas emissions in a tidal wetland. Water Science and Engineering, 15(2), 141–151. [View]
Yau, Y. Y. Y., Xin, P., Chen, X., Zhan, L., Call, M., Conrad, S. R., … Santos, I. R. (2022). Alkalinity export to the ocean is a major carbon sequestration mechanism in a macrotidal saltmarsh. Limnology and Oceanography, 67(S2), S158–S170. [View]
Abuelnaga, H. S. O., Aboud, E., Alqahtani, F. A., Abdulfarraj, M., Almalki, S., Fallatah, O. A., & Qutub, M. M. T. (2021). Radiation hazards in selected areas in the Adham Governorate, southwest of Saudi Arabia. Arabian Journal of Geosciences, 14(23), 2656. [View]
Correa, R. E., Xiao, K., Conrad, S. R., Wadnerkar, P. D., Wilson, A. M., Sanders, C. J., & Santos, I. R. (2021). Groundwater Carbon Exports Exceed Sediment Carbon Burial in a Salt Marsh. Estuaries and Coasts, (Bratton 2010). [View]
Ray, R., Miyajima, T., Watanabe, A., Yoshikai, M., Ferrera, C. M., Orizar, I., … Nadaoka, K. (2021). Dissolved and particulate carbon export from a tropical mangrove-dominated riverine system. Limnology and Oceanography, 1–19. [View]
Dabrowski, J. S., Charette, M. A., Mann, P. J., Ludwig, S. M., Natali, S. M., Holmes, R. M., … Henderson, P. B. (2020). Using radon to quantify groundwater discharge and methane fluxes to a shallow, tundra lake on the Yukon-Kuskokwim Delta, Alaska. Biogeochemistry, 148(1), 69–89. [View]
Wells, N. S., Maher, D., Huang, P., Erler, D. V., Maxwell, P., Hipsey, M. R., & Eyre, B. D. (2020). Land-use intensity alters both the source and fate of CO2 within eight sub-tropical estuaries. Geochimica et Cosmochimica Acta, 268, 107–122. [View]
Diggle, R. M., Tait, D. R., Maher, D. T., Huggins, X., & Santos, I. R. (2019). The role of porewater exchange as a driver of CO2 flux to the atmosphere in a temperate estuary (Squamish, Canada). Environmental Earth Sciences, 78(11), 336. [View]
Sadat-Noori, M., Tait, D. R., Maher, D. T., Holloway, C., & Santos, I. R. (2018). Greenhouse gases and submarine groundwater discharge in a Sydney Harbour embayment (Australia). Estuarine, Coastal and Shelf Science, 207, 499–509. [View]
Storlazzi, C. D., Gingerich, S., Swarzenski, P., Cheriton, O., Voss, C., Oberle, J. L., … Zhang, C. (2017). The Impact of Sea-Level Rise and Climate Change on Pacific Ocean Atolls That House Department of Defense Installations. [View]
O’Reilly, C., Santos, I. R., Cyronak, T., McMahon, A., & Maher, D. T. (2015). Nitrous oxide and methane dynamics in a coral reef lagoon driven by pore water exchange: Insights from automated high-frequency observations. Geophysical Research Letters, 42(8), 2885–2892. [View]
Paytan, A., Lecher, A. L., Dimova, N., Sparrow, K. J., Kodovska, F. G. T., Murray, J., … Kessler, J. D. (2015). Methane transport from the active layer to lakes in the Arctic using Toolik Lake, Alaska, as a case study. Proceedings of the National Academy of Sciences of the United States of America, 112(17), E2263. [View]
Schroth, M. H., Eugster, W., Gómez, K. E., Gonzalez-Gil, G., Niklaus, P. A., & Oester, P. (2012). Above- and below-ground methane fluxes and methanotrophic activity in a landfill-cover soil. Waste Management, 32(5), 879–889. [View]
Liang, Y., Liao, F., Wang, G., Mao, H., Shi, Z., Zhou, P., … Fu, Y. (2024). Identifying the distribution of groundwater discharge in a curved river. Journal of Hydrology, 628(November 2023), 130531. [View]
Nakajima, T., Kuragano, M., Yamada, M., & Sugimoto, R. (2024). Comparing nearshore and embayment scale assessments of submarine groundwater discharge: Significance of offshore groundwater discharge as a nutrient pathway. Science of the Total Environment, 908(October 2023), 168068. [View]
Adyasari, D., Dimova, N. T., Dulai, H., Gilfedder, B. S., Cartwright, I., McKenzie, T., & Fuleky, P. (2023). Radon-222 as a groundwater discharge tracer to surface waters. Earth-Science Reviews, 238(July 2022), 104321. [View]
Banks, L. K., Lavoie, I., Robinson, C. E., Roy, J. W., & Yates, A. G. (2023). Effects of groundwater inputs on algal assemblages and cellulose decomposition differ based on habitat type in an agricultural stream. Hydrobiologia, 850(16), 3517–3537. [View]
Banks, L. K., Lavoie, I., Boreux, M. P., Kroeze, S. L., Gotkowski, N., Robinson, C. E., … Yates, A. G. (2023). Intra-annual patterns in biofilm communities and cellulose decomposition in a headwater stream network with spatially variable groundwater inputs. Aquatic Ecology, 57(3), 681–700. [View]
Buenavista, A. J., Wang, C., Xie, Y., Gilfedder, B., Frei, S., Masque, P., … McCallum, J. L. (2023). Analytical solutions for the advection-dispersion model for radon-222 production and transport in shallow porewater profiles. Journal of Hydrology, 623(April), 129575. [View]
Cheng, K. H., Luo, X., Jiao, J. J., & Yu, S. (2023). Storm accelerated subsurface Escherichia coli growth and exports to coastal waters. Journal of Hazardous Materials, 441(August 2022), 129893. [View]
Ghaffar, A., & Iqbal, N. (2023). Application of isotopic tools to understand the hydrological processes and groundwater dynamics of Mianwali area-Punjab, Pakistan. Water Supply, 23(1), 34–53. [View]
Guo, Y., Huang, F., Sun, P., Zhang, C., Xiao, Q., Wen, Z., & Yang, H. (2023). Hydrogeological Functioning of a Karst Underground River Basin in Southwest China. Groundwater, 61(6), 895–913. [View]
Haag, J., Dulai, H., & Burt, W. (2023). The Role of Submarine Groundwater Discharge to the Input of Macronutrients Within a Macrotidal Subpolar Estuary. Estuaries and Coasts, 46(7), 1740–1755. [View]
Hailu, K., Birhanu, B., Azagegn, T., & Kebede, S. (2023). Regional groundwater flow system characterization of volcanic aquifers in upper Awash using multiple approaches, central Ethiopia. Isotopes in Environmental and Health Studies, 59(3), 269–289. [View]
Haynes, A. B., Briggs, M. A., Moore, E., Jackson, K., Knighton, J., Rey, D. M., & Helton, A. M. (2023). Shallow and local or deep and regional? Inferring source groundwater characteristics across mainstem riverbank discharge faces. Hydrological Processes, 37(7), 1–19. [View]
Hofmann, H. (2023). Estimating the Role of Bank Flow to Stream Discharge Using a Combination of Baseflow Separation and Geochemistry. Water (Switzerland), 15(5), 844. [View]
Jiang, C., Liu, D., Jiang, C., Wang, Q., Sadat-Noori, M., & Li, H. (2023). Tracing groundwater discharge into a coal mining subsidence lake in eastern China: Observations from water stable (δD and δ18O) and radon (222Rn) isotopes. Applied Geochemistry, 156(1088), 105757. [View]
Kebede, S., Hailu, K., Siraj, A., & Birhanu, B. (2023). Environmental isotopes (δ18O–δ2H, 222Rn) and electrical conductivity in backtracking sources of urban pipe water, monitoring the stability of water quality and estimating pipe water residence time. Frontiers in Water, 5(March). [View]
Liao, F., Cardenas, M. B., Chen, X., & Wang, G. (2023). Riverine groundwater discharge estimation in a dynamic river corridor using 222Rn. Hydrological Processes, 37(1), 1–17. [View]
Martinez, D. E., Quiroz Londoño, O. M., Grondona, S., Calvi, C., & Dapena, C. (2023). A multi-tracer approach to quantifying groundwater discharge in flat areas. Groundwater for Sustainable Development, 23(April). [View]
Oberle, F. K. J., Cheriton, O. M., Swarzenski, P. W., Brown, E. K., & Storlazzi, C. D. (2023). Physicochemical coastal groundwater dynamics between Kauhakō Crater lake and Kalaupapa settlement, Moloka’i, Hawai’i. Marine Pollution Bulletin, 187(October 2022), 114509. [View]
Pall, I. A., Jeelani, G., & Noble, J. (2023). Estimation of Lacustrine Groundwater Discharge (LGD) to an urban Himalayan lake using environmental tracers (222Rn, δ18O, EC). Journal of Hydrology, 618(October 2022), 129145. [View]
Persaud, E., Levison, J., Ali, G., & Robinson, C. (2023). Using isotopic tracers to enhance routine watershed monitoring – Insights from an intensively managed agricultural catchment. Journal of Environmental Management, 344(April), 118364. [View]
Rode, M., Tittel, J., Reinstorf, F., Schubert, M., Knöller, K., Gilfedder, B., … Musolff, A. (2023). Seasonal variation and release of soluble reactive phosphorus in an agricultural upland headwater in central Germany. Hydrology and Earth System Sciences, 27(6), 1261–1277. [View]
Sajeev, S., Muthukumar, P., & Selvam, S. (2023). Submarine groundwater discharge: An Asian overview. Chemosphere, 325(March), 138261. [View]
Schubert, M., Knoeller, K., Scholten, J., Daesslé, L. W., Bravo, M. M. R., & Solís, E. M. C. (2023). Quantification of groundwater discharge into a shallow coastal lagoon applying a multi-tracer approach. Environmental Monitoring and Assessment, 195(5), 601. [View]
Su, X., Lu, C., Li, M., Wang, Y., & Wang, N. (2023). Using 222Rn temporal and spatial distributions to estimate the groundwater discharge rate and associated nutrient fluxes into high salinity lakes in Badain Jaran Desert, Northwest China. Science of the Total Environment, 857(October 2022), 159359. [View]
Sukanya, S., & Sabu, J. (2023). Radon Distribution in Groundwater and River Water. In Environmental Radon. Springer. [View]
Sukanya, S., & Sabu, J. (2023). Radon in Surface Water–Groundwater Interaction Studies. In Environmental Radon (pp. 89–108). Springer. [View]
Sukanya, S., & Sabu, J. (2023). Radon in Hydrograph Separation and Water Balance Studies. In Environmental Radon (pp. 109–124). Springer. [View]
Sukanya, S., & Sabu, J. (2023). Radon in Submarine Groundwater Discharge Studies. In Environmental Radon (pp. 125–143). Springer. [View]
Sun, P., Du, Y., Sun, X., Deng, Y., Gan, Y., & Ma, T. (2023). Spatial variability of lacustrine groundwater discharge in the largest urban lake in Asia: Coupled influence from land use and hydrogeology. Hydrological Processes, 37(7). [View]
Tadesse, E., Azagegn, T., & Alemayehu, T. (2023). Characterizing groundwater and surface water interaction using geological, environmental tracers (222Rn, EC, δ18O, and δ2H) and baseflow index methods for part of the Upper Awash and the adjacent Blue Nile Basin, Ethiopia. Journal of African Earth Sciences, 205(May 2022), 104992. [View]
Tait, D. R., Reading, M. J., Maguire, K., Kirk, A., Maher, D. T., Moras, C. A., & Erler, D. (2023). Groundwater discharge and streams drive spatial alkalinity and pCO2 dynamics in two contrasting tropical lagoons. Marine Chemistry, 248(December 2022), 104205. [View]
von Gunten, K., Trew, D., Smerdon, B., & Alessi, D. S. (2023). Natural controls on phosphorus concentrations in small Lakes in Central Alberta, Canada. Canadian Water Resources Journal, 48(1), 1–17. [View]
Wang, H., Zhong, Q., Zhang, F., Chen, S., Bao, H., Lin, J., … Yu, T. (2023). Tracing surface seawater mixing and nutrient transport by 222Rn on the northern coast of Beibu Gulf, China. Acta Oceanologica Sinica, 42(8), 87–98. [View]
Wang, Q., Tang, G., Jiang, S., Wang, X., Xiao, K., Yu, S., … Li, H. (2023). Tracing terrestrial groundwater discharge and porewater exchange derived dissolved carbon export in a tropical estuary using multiple isotopes. Journal of Hydrology, 622, 129648. [View]
Wang, X., Zhang, F., Du, J., Hong, G. H., & Chen, X. (2023). Anthropogenic As pollution mediated by submarine groundwater discharge in a marine ranch. Marine Pollution Bulletin, 196(August), 115681. [View]
Wolfe, W. W., Murgulet, D., Gyawali, B., & Sterba-Boatwright, B. (2023). Long-term radon-222 (222Rn) and hydroclimatic dataset for a coastal estuary, Corpus Christi Bay, Texas. Data in Brief, 51, 109651. [View]
Xiong, L., Aldahan, A., Qian, R., Yi, P., Chen, X., Li, K., … He, P. (2023). Spatio-temporal patterns and quantification of lake–groundwater interaction determined in a large water transfer lake. Hydrological Processes, 37(4), 1–16. [View]
Xu, Y., Xiao, L., Gao, M., Yang, D., Zhao, S., Xu, H., … Zhang, X. (2023). Using Rn-222 to Study Human-Regulated River Water-Sediment Input Event in the Estuary. Journal of Ocean University of China, 22(6), 1464–1472. [View]
Xue, Y., Zhang, Y., Zhang, M., Wang, X., Xiao, K., Luo, M., & Li, H. (2023). Submarine groundwater discharge and associated metal elements into an urbanized bay. Marine Pollution Bulletin, 192(October 2022), 115092. [View]
Barua, S., Cartwright, I., Dresel, P. E., Morgenstern, U., McDonnell, J. J., & Daly, E. (2022). Sources and mean transit times of intermittent streamflow in semi-arid headwater catchments. Journal of Hydrology, 604(December 2020), 127208. [View]
Calvo-Martin, E., Teira, E., Álvarez-Salgado, X. A., Rocha, C., Jiang, S., Justel-Díez, M., & Ibánhez, J. S. P. (2022). On the hidden diversity and niche specialization of the microbial realm of subterranean estuaries. Environmental Microbiology, 24(12), 5859–5881. [View]
Hagedorn, B., & Tsuda, M. (2022). Radon and Salinity Mass Balance Constraints on Groundwater Recharge on a Semi‐Arid Island (Catalina, California). Water (Switzerland), 14(7), 1068. [View]
Han, J., Xu, J., Yi, L., Chang, Z., Wang, J., Ma, H., … Jiang, H. (2022). Seasonal Interaction of River Water-Groundwater-Salt Lake Brine and Its Influence on Water-Salt Balance in the Nalenggele River Catchment in Qaidam Basin, NW China. Journal of Earth Science, 33(5), 1298–1308. [View]
Hauer, F. R., Lorang, M. S., & Gonser, T. (2022). Remote Sensing to Characterize River Floodplain Structure and Function. Remote Sensing, 14(5), 1132. [View]
Hébert, A. J., Flamand, A., & Chaillou, G. (2022). Origins and transformations of terrigenous dissolved organic matter in a transgressive coastal system. Estuarine, Coastal and Shelf Science, 279(October). [View]
Iraola, N. D., Mallin, M. A., Cahoon, L. B., Gamble, D. W., & Zamora, P. B. (2022). Nutrient dynamics in a eutrophic blackwater urban lake. Lake and Reservoir Management, 38(1), 28–46. [View]
Jimenez‐Fernandez, O., Schwientek, M., Osenbrück, K., Glaser, C., Schmidt, C., & Fleckenstein, J. H. (2022). Groundwater‐surface water exchange as key control for instream and groundwater nitrate concentrations along a first‐order agricultural stream. Hydrological Processes, (August 2021), 1–16. [View]
Karisallen, J. J., Mohammed, A. A., Tamborski, J. J., Jamieson, R. C., Danielescu, S., & Kurylyk, B. L. (2022). Present and future thermal regimes of intertidal groundwater springs in a threatened coastal ecosystem. Hydrology and Earth System Sciences, 26(18), 4721–4740. [View]
Liao, F., Wang, G., Yang, N., Shi, Z., Li, B., & Chen, X. (2022). Groundwater discharge tracing for a large Ice-Covered lake in the Tibetan Plateau: Integrated satellite remote sensing data, chemical components and isotopes (D, 18O, and 222Rn). Journal of Hydrology, 609(August 2021), 127741. [View]
Martínez-Pérez, L., Luquot, L., Carrera, J., Marazuela, M. A., Goyetche, T., Pool, M., … Folch, A. (2022). A multidisciplinary approach to characterizing coastal alluvial aquifers to improve understanding of seawater intrusion and submarine groundwater discharge. Journal of Hydrology, 607, 127510. [View]
McNaughton, C., Cook, P. L. M., Wong, W. W., Koster, W. M., Reich, P., Jenkins, G. P., … Woodland, R. J. (2022). Environmental flows stimulate estuarine plankton communities by altered salinity structure and enhanced nutrient recycling. Estuarine, Coastal and Shelf Science, 279(August), 108157. [View]
Moody, A. A., Santos, I. R., & Shiller, A. M. (2022). Groundwater-derived U and Ba exports from a coastal acid sulfate soil (CASS) catchment following rain events. Estuarine, Coastal and Shelf Science, 270(April), 107838. [View]
Muthukumar, P., Selvam, S., Babu, D. S. S., Roy, P. D., Venkatramanan, S., Chung, S. Y., & Elzain, H. E. (2022). Measurement of submarine groundwater discharge (SGD) into Tiruchendur coast at southeast India using 222Rn as a naturally occurring tracer. Marine Pollution Bulletin, 174(June 2021), 113233. [View]
Nakajima, T., & Sugimoto, R. (2022). Groundwater-surface water exchange affects nitrogen and phosphorus exports from tideless rivers to a ria coast in the sea of Japan. Journal of Hydrology, 612(PA), 128045. [View]
Oberle, F. K. J., Prouty, N. G., Swarzenski, P. W., & Storlazzi, C. D. (2022). High-resolution observations of submarine groundwater discharge reveal the fine spatial and temporal scales of nutrient exposure on a coral reef: Faga’alu, AS. Coral Reefs, 41(4), 849–854. [View]
Schubert, M., Scholten, J., Kreuzburg, M., Petermann, E., de Paiva, M. L., Köhler, D., … Schlüter, M. (2022). Radon (222Rn) as tracer for submarine groundwater discharge investigation—limitations of the approach at shallow wind-exposed coastal settings. Environmental Monitoring and Assessment, 194(10), 798. [View]
Selvam, S., Muthukumar, P., Roy, P. D., Venkatramanan, S., Chung, S. Y., Elzain, H. E., … Jesuraja, K. (2022). Submarine groundwater discharge and associated nutrient influx in surroundings of the estuary region at Gulf of Mannar coast, Indian Ocean. Chemosphere, 305(February), 135271. [View]
Shi, X., Luo, X., Jiao, J. J., & Zuo, J. (2022). Dominance of evaporation on lacustrine groundwater discharge to regulate lake nutrient state and algal blooms. Water Research, 219(February), 118620. [View]
Silva, B. J., Ibánhez, J. S. P., Pinheiro, B. R., Ladle, R. J., Malhado, A. C., Pinto, T. K., & Flores-Montes, M. J. (2022). Seasonal influence of surface and underground continental runoff over a reef system in a tropical marine protected area. Journal of Marine Systems, 226, 103660. [View]
Smerdon, B. D., & Gardner, W. P. (2022). Characterizing groundwater flow paths in an undeveloped region through synoptic river sampling for environmental tracers. Hydrological Processes, 36(1). [View]
Sukanya, S., Noble, J., & Joseph, S. (2022). Application of radon (222Rn) as an environmental tracer in hydrogeological and geological investigations: An overview. Chemosphere, 303(P3), 135141. [View]
Sun, X., Du, Y., Deng, Y., Fan, H., Ma, T., & Gan, Y. (2022). Contrasting nutrients input along with groundwater discharge to east Dongting Lake, central China: A geological perspective. Ecological Indicators, 145(June), 109658. [View]
Sun, X., Du, Y., Deng, Y., Fan, H., Zhou, Z., Gan, Y., … Wang, Y. (2022). Spatial Patterns and Quantification of Lacustrine Groundwater Discharge Determined Based on 222Rn. Water Resources Research, 58(7), 1–15. [View]
Threndyle, R. E., Kurylyk, B. L., Huang, Y., Johnston, L. H., & Jamieson, R. C. (2022). CrAssphage as an indicator of groundwater-borne pollution in coastal ecosystems. Environmental Research Communications, 4(5), 1–13. [View]
Vital, M., Grondona, S., Dimova, N., & Martinez, D. E. (2022). Factors affecting the radon (222Rn) emanation from aquifer rock materials: Implications for radiological and groundwater tracer studies. Applied Radiation and Isotopes, 189(March), 110433. [View]
Yu, J., Tian, Y., Wang, X., Wang, X., Lancia, M., Li, H., … Zheng, C. (2022). A New Simulation-Optimization Framework for Estimation of Submarine Groundwater Discharge Based on Hydrodynamic Modeling and Isotopic Data. Geophysical Research Letters, 49(23). [View]
Diego-Feliu, M., Rodellas, V., Saaltink, M. W., Alorda-Kleinglass, A., Goyetche, T., Martínez-Pérez, L., … Garcia-Orellana, J. (2021). New perspectives on the use of 224Ra/228Ra and 222Rn/226Ra activity ratios in groundwater studies. Journal of Hydrology, 596(September 2020). [View]
Strydom, T., Nel, J. M., Nel, M., Petersen, R. M., & Ramjukadh, C. L. (2021). The use of radon (Rn222) isotopes to detect groundwater discharge in streams draining table mountain group (tmg) aquifers. Water SA, 47(2), 194–199. [View]
Tan, H., Zhang, Y., Rao, W., Guo, H., Ta, W., Lu, S., & Cong, P. (2021). Rapid groundwater circulation inferred from temporal water dynamics and isotopes in an arid system. Hydrological Processes, 35(6). [View]
Zahajská, P., Olid, C., Stadmark, J., Fritz, S. C., Opfergelt, S., & Conley, D. J. (2021). Modern silicon dynamics of a small high-latitude subarctic lake. Biogeosciences, 18(7), 2325–2345. [View]
Bejannin, S., Tamborski, J. J., van Beek, P., Souhaut, M., Stieglitz, T., Radakovitch, O., … Estournel, C. (2020). Nutrient Fluxes Associated With Submarine Groundwater Discharge From Karstic Coastal Aquifers (Côte Bleue, French Mediterranean Coastline). Frontiers in Environmental Science, 7(February), 1–21. [View]
Neupane, R. P., & Kumar, S. (2020). Water 222Rn for evaluating the variation in groundwater inflows to discharge of the Big Sioux River in different flow periods. Sustainable Water Resources Management, 6(1), 1–16. [View]
Burnett, W. C., Sola, P., Chanyotha, S., Bidorn, B., Kritsananuwat, R., & Chinfak, N. (2019). Tracing underground sources of pollution to coastal waters off Map Ta Phut, Rayong, Thailand. Marine Pollution Bulletin, 148(August), 75–84. [View]
Chen, X., Cukrov, N., Santos, I. R., & Rodellas, V. (2019). Karstic submarine groundwater discharge into the Mediterranean : Radon-based nutrient fluxes in an anchialine cave and a basin-wide upscaling. Geochimica et Cosmochimica Acta. [View]
David, M., Bailly-Comte, V., Munaron, D., Fiandrino, A., & Stieglitz, T. C. (2019). Groundwater discharge to coastal streams – A significant pathway for nitrogen inputs to a hypertrophic Mediterranean coastal lagoon. Science of the Total Environment, 677, 142–155. [View]
Lucía, S., Romina, S., Eleonora, C., Esteban, V., & Héctor, P. (2019). Using H, O, Rn isotopes and hydrometric parameters to assess the surface water-groundwater interaction in coastal wetlands associated to the marginal forest of the Río de la Plata. Continental Shelf Research, 186, 104–110. [View]
McKenzie, T., Dulai, H., & Chang, J. (2019). Parallels between stream and coastal water quality associated with groundwater discharge. PloS One, 14(10), e0224513. [View]
Sadat-Noori, M., & Glamore, W. (2019). Porewater exchange drives trace metal, dissolved organic carbon and total dissolved nitrogen export from a temperate mangrove wetland. Journal of Environmental Management, 248, 109264. [View]
Wang, Y., Dong, R., Zhou, Y., & Luo, X. (2019). Characteristics of groundwater discharge to river and related heavy metal transportation in a mountain mining area of Dabaoshan, Southern China. Science of the Total Environment, 679, 346–358. [View]
Xiao, K., Li, G., Li, H., Zhang, Y., Wang, X., Hu, W., & Zhang, C. (2019). Combining hydrological investigations and radium isotopes to understand the environmental effect of groundwater discharge to a typical urbanized estuary in China. Science of the Total Environment, 695, 133872. [View]
Montiel, D., Dimova, N., Andreo, B., Prieto, J., García-Orellana, J., & Rodellas, V. (2018). Assessing submarine groundwater discharge (SGD) and nitrate fluxes in highly heterogeneous coastal karst aquifers: Challenges and solutions. Journal of Hydrology, 557, 222–242. [View]
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