Detrital phosphorus as a proxy of flooding events in the Changjiang River Basin.
暂无分享,去创建一个
Bin Zhao | Zhigang Yu | T. Bianchi | P. Yao | Bochao Xu | Dong Li | Jia Meng
[1] Bin Zhao,et al. Distribution, mixing behavior, and transformation of dissolved inorganic phosphorus and suspended particulate phosphorus along a salinity gradient in the Changjiang Estuary , 2015 .
[2] Bin Zhao,et al. Remineralization of sedimentary organic carbon in mud deposits of the Changjiang Estuary and adjacent shelf: Implications for carbon preservation and authigenic mineral formation , 2014 .
[3] Bin Zhao,et al. Organic carbon cycling in sediments of the Changjiang Estuary and adjacent shelf: Implication for the influence of Three Gorges Dam , 2014 .
[4] R. Tada,et al. Millennial-scale East Asian Summer Monsoon variability recorded in grain size and provenance of mud belt sediments on the inner shelf of the East China Sea during mid-to late Holocene , 2014 .
[5] Xiaoyong Shi,et al. Increased nutrient loads from the Changjiang (Yangtze) River have led to increased Harmful Algal Blooms , 2014 .
[6] Z. Dai,et al. Streamflow changes of the Changjiang (Yangtze) River in the recent 60 years: Impacts of the East Asian summer monsoon, ENSO, and human activities , 2014 .
[7] Bin Zhao,et al. Speciation, bioavailability and preservation of phosphorus in surface sediments of the Changjiang Estuary and adjacent East China Sea inner shelf , 2014 .
[8] Q. Ma,et al. Thorium isotopes (228Th, 230Th, 232Th) and applications in reconstructing the Yangtze and Yellow River floods , 2013 .
[9] R. Pancost,et al. Mechanistic controls on diverse fates of terrestrial organic components in the East China Sea , 2013 .
[10] M. Allison,et al. Historical reconstruction of organic carbon decay and preservation in sediments on the East China Sea shelf , 2013 .
[11] Chau‐Ron Wu. Interannual modulation of the Pacific Decadal Oscillation (PDO) on the low-latitude western North Pacific , 2013 .
[12] M. Macklin,et al. A geochemical record of flooding on the upper River Severn, UK, during the last 3750 years , 2012 .
[13] Zhigang Yu,et al. Distribution of sedimentary organic matter in estuarine–inner shelf regions of the East China Sea: Implications for hydrodynamic forces and anthropogenic impact , 2012 .
[14] Yu Yu,et al. Geochemical records of decadal variations in terrestrial input and recent anthropogenic eutrophication in the Changjiang Estuary and its adjacent waters , 2012 .
[15] T. Neumann,et al. Floodplain deposits: A geochemical archive of flood history – A case study on the River Rhine, Germany , 2012 .
[16] R. Blender,et al. Yangtze runoff, precipitation, and the East Asian monsoon in a 2800 years climate control simulation , 2011 .
[17] Jing Zhang,et al. Hypoxia off the Changjiang (Yangtze River) Estuary: Oxygen depletion and organic matter decomposition , 2011 .
[18] G. Gong,et al. Yangtze River floods enhance coastal ocean phytoplankton biomass and potential fish production , 2011 .
[19] Zineng Yuan,et al. Terrestrial and marine biomarker estimates of organic matter sources and distributions in surface sediments from the East China Sea shelf , 2011 .
[20] Yaofeng Jia,et al. Extraordinary floods related to the climatic event at 4200 a BP on the Qishuihe River, middle reaches of the Yellow River, China , 2011 .
[21] Minjie Wang,et al. A 600-year flood history in the Yangtze River drainage: Comparison between a subaqueous delta and historical records , 2011 .
[22] M. Macklin,et al. Flood series data for the later Holocene: Available approaches, potential and limitations from UK alluvial sediments , 2010 .
[23] P. McIntyre,et al. Global threats to human water security and river biodiversity , 2010, Nature.
[24] Rui Zhang,et al. Response of Variability in Water Discharges from Changjiang River on PDO in Past 50 Years , 2010, 2010 4th International Conference on Bioinformatics and Biomedical Engineering.
[25] E. Zhang,et al. A geochemical record of recent anthropogenic nutrient loading and enhanced productivity in Lake Nansihu, China , 2010 .
[26] L. Elleder,et al. Reconstruction of the 1784 flood hydrograph for the Vltava River in Prague, Czech Republic , 2010 .
[27] Xianyou Ren,et al. Analysis of historical floods on the Yangtze River, China: Characteristics and explanations , 2009 .
[28] Yan-wen Qin,et al. Behavior of different phosphorus species in suspended particulate matter in the Changjiang estuary , 2009 .
[29] S. Wakeham,et al. Partitioning of organic matter in continental margin sediments among density fractions , 2009 .
[30] Zhongbo Wang,et al. Heavy mineral compositions of the Changjiang (Yangtze River) sediments and their provenance-tracing implication , 2009 .
[31] S. Nodder,et al. Sources of organic matter in a coastal marine environment: Evidence from n-alkanes and their δ13C distributions in the Hauraki Gulf, New Zealand , 2009 .
[32] Yan Wang,et al. Reconstruction of sediment flux from the Changjiang (Yangtze River) to the sea since the 1860s , 2008 .
[33] Gwo-Ching Gong,et al. Hypoxia in the East China Sea: one of the largest coastal low-oxygen areas in the world. , 2007, Marine environmental research.
[34] Zhiyu Liu,et al. Summer hypoxia adjacent to the Changjiang Estuary , 2007 .
[35] C. Huh,et al. Sedimentary phosphorus species and sedimentation flux in the East China Sea , 2007 .
[36] J. Milliman,et al. Flux and fate of Yangtze River sediment delivered to the East China Sea , 2007 .
[37] M. Allison,et al. Carbon burial on river‐dominated continental shelves: Impact of historical changes in sediment loading adjacent to the Mississippi River , 2007 .
[38] L. Langone,et al. Source, transport and fate of terrestrial organic carbon on the western Mediterranean Sea, Gulf of Lions, France , 2006 .
[39] Anchun Li,et al. Sedimentary features of the Yangtze River-derived along-shelf clinoform deposit in the East China Sea , 2006 .
[40] J. Rowan,et al. Use of multi-proxy flood records to improve estimates of flood risk: Lower River Tay, Scotland , 2006 .
[41] Yoshiki Saito,et al. Dam impacts on the Changjiang (Yangtze) River sediment discharge to the sea: The past 55 years and after the Three Gorges Dam , 2006 .
[42] Jiang Tong,et al. Yangtze floods and droughts (China) and teleconnections with ENSO activities (1470–2003) , 2006 .
[43] R. Hall,et al. Impacts of climate and river flooding on the hydro-ecology of a floodplain basin, Peace-Athabasca Delta, Canada since A.D. 1700 , 2005, Quaternary Research.
[44] Mansik Choi,et al. Early diagenetic redistribution and burial of phosphorus in the sediments of the southwestern East Sea (Japan Sea) , 2005 .
[45] C. Revenga,et al. Fragmentation and Flow Regulation of the World's Large River Systems , 2005, Science.
[46] R. Benner,et al. What happens to terrestrial organic matter in the ocean , 2004 .
[47] Steven E. Lohrenz,et al. Transformation of Dissolved and Particulate Materials on Continental Shelves Influenced by Large Rivers: Plume Processes , 2004 .
[48] Changsheng Chen,et al. Physical‐biological sources for dense algal blooms near the Changjiang River , 2003 .
[49] N. Harris,et al. Geochemical facies analysis of fine-grained siliciclastics using Th/U, Zr/Rb and (Zr+Rb)/Sr ratios , 2001 .
[50] G. Helz,et al. Reconstructing the rise of recent coastal anoxia; molybdenum in Chesapeake Bay sediments , 2001 .
[51] D. M. Nelson,et al. A review of the Si cycle in the modern ocean: recent progress and missing gaps in the application of biogenic opal as a paleoproductivity proxy , 2000 .
[52] S. M. Liu,et al. Human impacts on the large world rivers: Would the Changjiang (Yangtze River) be an illustration? , 1999 .
[53] S. Vink,et al. Distribution of phosphorus in sediments from Tomales Bay, California , 1997 .
[54] J. Robbins,et al. Records of nutrient-enhanced coastal ocean productivity in sediments from the Louisiana continental shelf , 1994 .
[55] K. Ruttenberg. Development of a sequential extraction method for different forms of phosphorus in marine sediments , 1992 .
[56] Guosen Zhang,et al. Reconstruction of anthropogenic eutrophication in the region off the Changjiang Estuary and central Yellow Sea: From decades to centuries , 2014 .
[57] Zuosheng Yang,et al. Sources, dispersal and preservation of sedimentary organic matter in the Yellow Sea: The importance of depositional hydrodynamic forcing , 2013 .
[58] W. Cai,et al. Biogeochemical dynamics at major river-coastal interfaces : linkages with global change , 2013 .
[59] N. Blair,et al. The fate of terrestrial organic carbon in the marine environment. , 2012, Annual review of marine science.
[60] P. Bierman,et al. Holocene paleostorms identified by particle size signatures in lake sediments from the northeastern United States , 2010 .
[61] Li Hongliang. VARIATION OF ELEMENTS IN SEDIMENTS FROM THE HYPOXIA ZONE OF THE YANGTZE ESTUARY AND ITS RESPONSE TO SEDIMENTARY ENVIRONMENT OVER THE LAST 100 YEARS , 2009 .
[62] Qiang Zhang,et al. Climate changes and flood/drought risk in the Yangtze Delta, China, during the past millennium , 2008 .
[63] C. Papucci,et al. Intercomparison of alpha and gamma spectrometry techniques used in (210)Pb geochronology. , 2007, Journal of environmental radioactivity.
[64] B. Lehner,et al. River Basin Management to Conserve Wetlands and Water Resources , 2006 .
[65] R. Macdonald,et al. The supply and preservation of ancient and modern components of organic carbon in the Canadian Beaufort Shelf of the Arctic Ocean , 2005 .
[66] S. Buda,et al. Preliminary Analysis on the Relation Between the Evolution of Heavy Floods in the Yangtze River Catchment and the Climate Changes since 1840 , 2004 .