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Published: 01 January 2005
Figure 3 . Pb concentration in sediment cores from along the Illinois River as complied from several studies. The Probable Effects Concentration (PEC; MacDonald et al, 2000 ) for Pb, and the background concentration range for Illinois soils and sediments are given by the dotted line, and bar More
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Published: 01 January 2005
Figure 3. Depth distribution of excess 210 Pb activity in X-cores. The different core lengths depend on the penetration of the piston corer in the sediment of the canal bottom. Error bars are based on 1 sigma counting uncertainties. More
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Published: 01 January 2005
Figure 4. Depth distribution of 137 Cs activity in X-cores. The different core lengths depend on the penetration of the piston corer in the sediment of the canal bottom. Error bars are based on 1 sigma counting uncertainties. More
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Published: 01 January 2005
Figure 5. Vertical profiles in X-cores. Concentration ranges are shown by means of a gray scale. The positions of the 137 Cs maximum from the Chernobyl accident (dots) are connected by a dashed line. (A) As, (B) Cd, (C) Cu, (D) Pb, (E) Zn. More
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Published: 01 April 2005
Figure 4. Loss on ignition (LOI), porosity and water content in sediment cores from Chedoke Creek (CC), Boathouse (BH) and West Pond (WP) sites. More
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Published: 01 April 2005
Figure 6. Phosphorus forms in sediment cores from Chedoke Creek (CC), Boathouse (BH) and West Pond (WP) sites. More
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Published: 01 July 2011
Figure 2. (A) Depth profiles of redox potential values of long sediment cores from subtidal Bolinao Bay sites characterized by most extensive sulfidic mud surface layers at (site 2) and near fish cages (sites 1,4), and bioturbated sediment without impact of fish farming (site 3); (B) depth More
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Published: 02 January 2013
Figure 4. Depth profiles of PCDD/Fs (ng kg −1 as TEQs) and As (mg kg −1 ) in cores 1 and 5 (from the Nord Industrial Canal). The data are from MAV and Port Authority of Venice (1999). (Color figure available online.) More
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Published: 02 October 2017
Figure 2. Profiles of 137 Cs in sediment cores A and B of Lake Qionghai. More
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Published: 02 October 2017
Figure 3. Sedimentation rate in sediment cores A and B of Lake Qionghai. More
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Published: 02 October 2017
Figure 4. Arsenic profiles in sediment cores A and B of Lake Qionghai. More
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Published: 01 September 2006
Figure 7. Total phosphorus profiles for cores 4 and 8. For comparison, profile of NAM-7 is included. Concentrations for cores 4 and 8 determined by ICP-ES and for NAM-7 by ignition. More
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Published: 01 September 2006
Figure 8. Down-core variations in Mn and Total P in cores 4 and 8. Determinations made by ICP-ES. More
Journal Article
Aquatic Ecosystem Health & Management (2020) 23 (3): 341–349.
Published: 02 July 2020
...Kun-Xiu Xie; Zheng Li; Chao Li; Yan-Shan Liu; Wen-Tao Li; Pei-Dong Zhang In this study, a protective seed core method for planting seeds of the common eelgrass Zostera marina was developed and evaluated through laboratory and field experiments. We studied the suitable desiccation period...
FIGURES
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Published: 01 September 2006
Figure 1. Lake Winnipeg coring sites. More
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Published: 01 September 2006
Figure 3. Phosphorus forms in uppermost 40 cm of NAM-7, core 4 and core 8. Determinations made using sequential extraction. More
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Published: 01 September 2006
Figure 4. Phosphorus forms in NAM-7, core 4 and core 8. Determinations made using sequential extraction. More
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Published: 01 September 2006
Figure 2. Total phosphorus in uppermost 30 cm of NAM-7, core 4 and core 8. Total phosphorus determined by ignition for NAM-7 and by ICP-ES for cores 4 and 8. More
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Published: 08 June 2007
Figure 7. Radiograph with bulk density measurement of the sediment core taken at the Scheldt midstream station (Kallo) at slack tide. Unit of Y-axis is centimetre. More
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Published: 01 March 2007
Figure 7. Radiograph with bulk density measurement of the sediment core taken at the Scheldt midstream station (Kallo). Unit of Y-axis is centimetre. More