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  • Acid/Base capacity analysis (DIN 38409 -H7); Acid/Base DIN 38409 -H7; Acid capacity 4.3; Acid capacity 8.2; Alloxanthin; Ammonium-nitrogen; Base capacity 4.3; Base capacity 8.2; beta-Carotene; Calcium; Carbon, inorganic, dissolved; Carbon, inorganic, total; Carbon, organic, dissolved; Carbon, organic, total; Carbon analyzer; CFA; Chl (DIN 38412 L16); Chloride; Chlorophyll a; Chlorophyll b; Chlorophyll determination (DIN 38412 L16); Continuous Flow Analysis; Date/Time of event; Diadinoxanthin; Diatoxanthin; DIMA-IC; Echinenone; Event label; Filtered (QF20); Filtration basic analysis - quartz fiber round filter (QF20); Fucoxanthin; Germany; HPLCO; ICP-AES; Inductively coupled plasma atomic emission spectroscopy; Inland Water Remote Sensing Validation Campaign 2017; Iron; IWRSVC-2017; Kelbra-1_WS_28; Kelbra-1_WS_30; Liquid ion chromatography (DIN EN ISO 10304-1); Location; Lutein; Magnesium; Manganese; Nitrate-nitrogen; Nitrite-nitrogen; Nitrogen, total; Optional event label; Peridinin; Pheophytin a; Pheophytin b; Phosphorus, reactive soluble; Phosphorus, total; Phosphorus, total dissolved; Photometric; Photometry; Pigments analysis by HPLC (UV and FLD); Potassium; Principal investigator; Sample comment; Sample ID; Silicon; Sodium; Sulfate; Suspended matter, total; TSK-1_WS_28; TSK-1_WS_30; Violaxanthin; Water sample; WS; Zeaxanthin  (1)
  • Area/locality; Binary Object; Data type; DATE/TIME; Digital surface model; DSM; Event label; Geiseltalsee_DOM; Geiseltalsee_HYPSPEC; Geiseltalsee_ORTHO; HSCAM; Hyperspectral camera; IWRSVC-17_GTS_DOM; IWRSVC-17_GTS_HYPSPEC; IWRSVC-17_GTS_ORTHO; IWRSVC-17_KELB_DOM; IWRSVC-17_KELB_HYPSPEC; IWRSVC-17_KELB_ORTHO; IWRSVC-17_SUESS_DOM; IWRSVC-17_SUESS_HYPSPEC; IWRSVC-17_SUESS_ORTHO; Kelbra_DOM; Kelbra_HYPSPEC; Kelbra_ORTHO; LATITUDE; LONGITUDE; ORTHO; Orthoimagery/Orthophotography; Suessersee_DOM; Suessersee_HYPSPEC; Suessersee_ORTHO; Transect  (1)
  • Lake Victoria  (1)
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  • 1
    Publication Date: 2023-11-18
    Description: Lake Victoria is the second largest freshwater lake and the largest tropical lake in the world. The transboundary lake has the fastest growing population in its catchment, which can impact the water and sediment quality. To determine the extent of anthropogenic effects on sediment quality in the Ugandan part of Lake Victoria, the contents and binding behaviour of trace elements were analysed, as well as organic matter and phosphorus in different sediment layers of both deep and coastal sediments near the coastal cities of Entebbe, Kampala and Jinja. The data were assessed using the German LAWA criteria for trace-element pollution, the Geo-Index, Cluster- and Factor analyses. Mostly, no critical trace-element contamination in the sediments of the investigated area was observed. However, changes in element distributions caused by anthropogenic influences from around the lake were detected, like higher contents of Cu, Ti and V in near shore sediments with urban surrounding. Near Jinja, industrial wastewaters caused particularly elevated contents of Cu in the sediments (70–121 mg/kg, 3.5–6 times the geogenic background), exceeding the LAWA criteria and potentially harming the aquatic habitat. In addition, temporally growing organic matter contents in the lake sediments near the estuary of River Nzoia (from 4.2 to 17.6% in around 60 years) due to increased soil erosion in the river’s catchment area and blooms of the water hyacinth became visible. This study demonstrates that the whole catchment area is responsible to ensure a healthy aquatic ecosystem in Lake Victoria.
    Description: International Foundation for Science (IFS)
    Description: Organisation for the Prohibition of Chemical Weapons http://dx.doi.org/10.13039/501100004766
    Description: Helmholtz-Zentrum für Umweltforschung GmbH - UFZ (4215)
    Keywords: ddc:551.9 ; Lake Victoria ; Sediments ; Trace elements and heavy metals ; BCR extraction ; Igeo and LAWA ; Chemometrical judge- and assessment
    Language: English
    Type: doc-type:article
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-03-31
    Keywords: Acid/Base capacity analysis (DIN 38409 -H7); Acid/Base DIN 38409 -H7; Acid capacity 4.3; Acid capacity 8.2; Alloxanthin; Ammonium-nitrogen; Base capacity 4.3; Base capacity 8.2; beta-Carotene; Calcium; Carbon, inorganic, dissolved; Carbon, inorganic, total; Carbon, organic, dissolved; Carbon, organic, total; Carbon analyzer; CFA; Chl (DIN 38412 L16); Chloride; Chlorophyll a; Chlorophyll b; Chlorophyll determination (DIN 38412 L16); Continuous Flow Analysis; Date/Time of event; Diadinoxanthin; Diatoxanthin; DIMA-IC; Echinenone; Event label; Filtered (QF20); Filtration basic analysis - quartz fiber round filter (QF20); Fucoxanthin; Germany; HPLCO; ICP-AES; Inductively coupled plasma atomic emission spectroscopy; Inland Water Remote Sensing Validation Campaign 2017; Iron; IWRSVC-2017; Kelbra-1_WS_28; Kelbra-1_WS_30; Liquid ion chromatography (DIN EN ISO 10304-1); Location; Lutein; Magnesium; Manganese; Nitrate-nitrogen; Nitrite-nitrogen; Nitrogen, total; Optional event label; Peridinin; Pheophytin a; Pheophytin b; Phosphorus, reactive soluble; Phosphorus, total; Phosphorus, total dissolved; Photometric; Photometry; Pigments analysis by HPLC (UV and FLD); Potassium; Principal investigator; Sample comment; Sample ID; Silicon; Sodium; Sulfate; Suspended matter, total; TSK-1_WS_28; TSK-1_WS_30; Violaxanthin; Water sample; WS; Zeaxanthin
    Type: Dataset
    Format: text/tab-separated-values, 152 data points
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2024-05-11
    Description: The dataset is composed of hyperspectral imagery HySpex VNIR 1600 acquired during gyrocopter overflights on August 28th, 2017 consisting of 80 spectral bands in the wavelength range from 400 – 1.000 nm. The data were acquired in the framework of Inland Water Remote Sensing Validation Campaign 2017. The hyperspectral data represents the at sensor radiance in W/nm sr m² converted from DN. Furthermore, the data was georeferenced and rectified with the software PARGE. From a flight altitude of about 2,800 m the resulting GSD is 2.5 m. The listed data consists of a Band Sequential Image File [*] and a file header [*.hdr]. The first file can easily import to the opensource GIS QGIS. The digital surface model (ger. digitales Oberflächenmodell (DOM)) was captured during gyrocopter overflights on August 28th, 2017 acquired in the framework of Inland Water Remote Sensing Validation Campaign 2017. The flight altitude was about 2,800 m. Each pixel value represents the surface height. The GSD is about 0,52 m. The digital orthophoto were captured during gyrocopter overflights on August 28th, 2017 acquired in the framework of Inland Water Remote Sensing Validation Campaign 2017. The flight altitude was about 2,800 m. The GSD is about 0,25 m.
    Keywords: Area/locality; Binary Object; Data type; DATE/TIME; Digital surface model; DSM; Event label; Geiseltalsee_DOM; Geiseltalsee_HYPSPEC; Geiseltalsee_ORTHO; HSCAM; Hyperspectral camera; IWRSVC-17_GTS_DOM; IWRSVC-17_GTS_HYPSPEC; IWRSVC-17_GTS_ORTHO; IWRSVC-17_KELB_DOM; IWRSVC-17_KELB_HYPSPEC; IWRSVC-17_KELB_ORTHO; IWRSVC-17_SUESS_DOM; IWRSVC-17_SUESS_HYPSPEC; IWRSVC-17_SUESS_ORTHO; Kelbra_DOM; Kelbra_HYPSPEC; Kelbra_ORTHO; LATITUDE; LONGITUDE; ORTHO; Orthoimagery/Orthophotography; Suessersee_DOM; Suessersee_HYPSPEC; Suessersee_ORTHO; Transect
    Type: Dataset
    Format: text/tab-separated-values, 92 data points
    Location Call Number Expected Availability
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