The Selenga River delta: a geochemical barrier protecting Lake Baikal waters
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Yosef Akhtman | Galina Shinkareva | Mikhail Tarasov | Nikolay Kasimov | Sergey Chalov | Daniel Karthe | D. Karthe | S. Chalov | J. Thorslund | J. Jarsjö | J. Nittrouer | Y. Akhtman | Jerker Jarsjö | M. Lychagin | N. Kasimov | M. Tarasov | Denis Aybullatov | E. Ilyicheva | A. Kositsky | M. Pavlov | J. Pietroń | G. Shinkareva | E. Garmaev | Josefin Thorslund | Denis Aybullatov | Elena Ilyicheva | Alexey Kositsky | Mikhail Lychagin | Jeff Nittrouer | Maxim Pavlov | Jan Pietron | Endon Garmaev
[1] S. Chalov,et al. Model analyses of the contribution of in-channel processes to sediment concentration hysteresis loops , 2015 .
[2] T. Potemkina. Sediment runoff formation trends of major tributaries of Lake Baikal in the 20th century and at the beginning of the 21st century , 2011 .
[3] N. A. Logatchev. HISTORY AND GEODYNAMICS OF THE LAKE BAIKAL RIFT IN THE CONTEXT OF THE EASTERN SIBERIA RIFT SYSTEM ' A REVIEW , 2004 .
[4] E. Sholkovitz,et al. Flocculation of dissolved organic and inorganic matter during the mixing of river water and seawater , 1976 .
[5] Kyoung-Woong Kim,et al. Geochemical distribution of trace element concentrations in the vicinity of Boroo gold mine, Selenge Province, Mongolia , 2011, Environmental geochemistry and health.
[6] D. Karthe,et al. Investigating arsenic (As) occurrence and sources in ground, surface, waste and drinking water in northern Mongolia , 2014, Environmental Earth Sciences.
[7] S. Kroonenberg,et al. Heavy Metals in the Water, Plants, and Bottom Sediments of the Volga River Mouth Area , 2013 .
[8] S. Sarkar,et al. An assessment of trace element contamination in intertidal sediment cores of Sunderban mangrove wetland, India for evaluating sediment quality guidelines , 2009, Environmental monitoring and assessment.
[9] S. Chalov,et al. SUSPENDED AND DISSOLVED MATTER FLUXES IN THE UPPER SELENGA RIVER BASIN , 2012 .
[10] D. Tillitt,et al. Environmental survey in the Tuul and Orkhon River basins of north-central Mongolia, 2010: metals and other elements in streambed sediment and floodplain soil , 2013, Environmental Monitoring and Assessment.
[11] S. Chalov,et al. Water resources assessment of the Selenga-Baikal river system , 2013 .
[12] C. Vörösmarty,et al. Fluvial filtering of land-to-ocean fluxes: from natural Holocene variations to Anthropocene , 2005 .
[13] S. Chalov,et al. Braided rivers: structure, types and hydrological effects , 2015 .
[14] D. Doxaran,et al. Spectral signature of highly turbid waters: Application with SPOT data to quantify suspended particulate matter concentrations , 2002 .
[15] S. Chalov,et al. Channel changes in largest Russian rivers: natural and anthropogenic effects , 2013 .
[16] Bertrand Lubac,et al. Toward Sentinel-2 High Resolution Remote Sensing of Suspended Particulate Matter in Very Turbid Waters: SPOT4 (Take5) Experiment in the Loire and Gironde Estuaries , 2015, Remote. Sens..
[17] R. Rudnick,et al. 3.01 – Composition of the Continental Crust , 2003 .
[18] G. Postma. Sea-level-related architectural trends in coarse-grained delta complexes , 1995 .
[19] J. Khim,et al. Large-scale monitoring and assessment of metal contamination in surface water of the Selenga River Basin (2007–2009) , 2015, Environmental Science and Pollution Research.
[20] M. Berg,et al. Arsenic and manganese contamination of drinking water resources in Cambodia: coincidence of risk areas with low relief topography. , 2007, Environmental science & technology.
[21] G. Destouni,et al. Evolution of the hydro-climate system in the Lake Baikal basin , 2014 .
[22] Wei Gao,et al. Characterizing land condition variability in Northern China from 1982 to 2011 , 2014, Environmental Earth Sciences.
[23] G. Destouni,et al. Dissecting the ecosystem service of large-scale pollutant retention: The role of wetlands and other landscape features , 2015, AMBIO.
[24] J. Milliman,et al. Flux and fate of Yangtze River sediment delivered to the East China Sea , 2007 .
[25] S. Chalov,et al. Gold mining impact on riverine heavy metal transport in a sparsely monitored region: the upper Lake Baikal Basin case. , 2012, Journal of environmental monitoring : JEM.
[26] M. Allison,et al. Punctuated sand transport in the lowermost Mississippi River , 2011 .
[27] M. Shaban,et al. Detection and mapping of water pollution variation in the Nile Delta using multivariate clustering and GIS techniques. , 2010, Journal of environmental management.
[28] H. Kaufmann,et al. Variation in Lake Baikal's phytoplankton distribution and fluvial input assessed by SeaWiFS satellite data , 2005 .
[29] B. Klecker,et al. On the divergence of the auroral electrojets , 2011 .
[30] Hongbo Ma,et al. Controls on gravel termination in seven distributary channels of the Selenga River Delta, Baikal Rift basin, Russia , 2016 .
[31] D. Karthe,et al. IWRM in a country under rapid transition: lessons learnt from the Kharaa River Basin, Mongolia , 2014, Environmental Earth Sciences.
[32] L. Demina. Estimation of the role of global biological filters in the geochemical migration of trace elements in the ocean: The marginal filter of the ocean , 2011 .
[33] Dietrich Borchardt,et al. Water resources and their management in central Asia in the early twenty first century: status, challenges and future prospects , 2014, Environmental Earth Sciences.
[34] S. Chalov,et al. Spatio-temporal variation of sediment transport in the Selenga River Basin, Mongolia and Russia , 2014, Environmental Earth Sciences.
[35] T. Wade,et al. Historical contamination of PAHs, PCBs, DDTs, and heavy metals in Mississippi River Delta, Galveston Bay and Tampa Bay sediment cores. , 2001, Marine environmental research.
[36] E. A. Ajao,et al. Land-based Sources of Pollution in the Niger Delta, Nigeria , 2002 .
[37] G. I. Popovskaya,et al. The Selenga River water quality on the border with Mongolia at the beginning of the 21st century , 2013, Russian Meteorology and Hydrology.
[38] S. Chalov,et al. Speciation and hydrological transport of metals in non-acidic river systems of the Lake Baikal basin: Field data and model predictions , 2017, Regional Environmental Change.
[39] A. I. Perel’man. Geochemical barriers: theory and practical applications , 1986 .
[40] Albert J. Kettner,et al. Distributary channels and their impact on sediment dispersal , 2005 .
[41] R. Rudnick,et al. Composition of the Continental Crust , 2014 .
[42] Jürgen Hofmann,et al. Science-Based IWRM Implementation in a Data-Scarce Central Asian Region: Experiences from a Research and Development Project in the Kharaa River Basin, Mongolia , 2015 .
[43] F. Wimmer,et al. The consequences of land-use change and water demands in Central Mongolia , 2011 .
[44] E. Chebykin,et al. Elemental composition of suspended particles from the surface waters of Lake Baikal in the zone affected by the Selenga River , 2010 .