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dc.contributor.authorWang, Dan
dc.contributor.authorGong, Mengdan
dc.contributor.authorLi, Yangyang
dc.contributor.authorXu, Lv
dc.contributor.authorWang, Yan
dc.contributor.authorJing, Rui
dc.contributor.authorDing, Shiming
dc.contributor.authorZhang, Chaosheng
dc.date.accessioned2018-09-20T16:28:04Z
dc.date.available2018-09-20T16:28:04Z
dc.date.issued2016-09-06
dc.identifier.citationWang, Dan; Gong, Mengdan; Li, Yangyang; Xu, Lv; Wang, Yan; Jing, Rui; Ding, Shiming; Zhang, Chaosheng (2016). In situ, high-resolution profiles of labile metals in sediments of lake taihu. International Journal of Environmental Research and Public Health 13 (9),
dc.identifier.issn1660-4601
dc.identifier.urihttp://hdl.handle.net/10379/14363
dc.description.abstractCharacterizing labile metal distribution and biogeochemical behavior in sediments is crucial for understanding their contamination characteristics in lakes, for which in situ, high-resolution data is scare. The diffusive gradient in thin films (DGT) technique was used in-situ at five sites across Lake Taihu in the Yangtze River delta in China to characterize the distribution and mobility of eight labile metals (Fe, Mn, Zn, Ni, Cu, Pb, Co and Cd) in sediments at a 3 mm spatial resolution. The results showed a great spatial heterogeneity in the distributions of redox-sensitive labile Fe, Mn and Co in sediments, while other metals had much less marked structure, except for downward decreases of labile Pb, Ni, Zn and Cu in the surface sediment layers. Similar distributions were found between labile Mn and Co and among labile Ni, Cu and Zn, reflecting a close link between their geochemical behaviors. The relative mobility, defined as the ratio of metals accumulated by DGT to the total contents in a volume of sediments with a thickness of 10 mm close to the surface of DGT probe, was the greatest for Mn and Cd, followed by Zn, Ni, Cu and Co, while Pb and Fe had the lowest mobility; this order generally agreed with that defined by the modified BCR approach. Further analyses showed that the downward increases of pH values in surface sediment layer may decrease the lability of Pb, Ni, Zn and Cu as detected by DGT, while the remobilization of redox-insensitive metals in deep sediment layer may relate to Mn cycling through sulphide coprecipitation, reflected by several corresponding minima between these metals and Mn. These in situ data provided the possibility for a deep insight into the mechanisms involved in the remobilization of metals in freshwater sediments.
dc.publisherMDPI AG
dc.relation.ispartofInternational Journal of Environmental Research and Public Health
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Ireland
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/3.0/ie/
dc.subjectmetals
dc.subjecthigh resolution
dc.subjectdiffusive gradient in thin films
dc.subjectrelative mobility
dc.subjectsediment
dc.subjectin-situ
dc.subjectsequential extraction procedure
dc.subjectacid volatile sulfides
dc.subjectthin-films dgt
dc.subjectecological risk-assessment
dc.subjectfine-scale remobilization
dc.subjectfresh-water sediments
dc.subjectheavy-metals
dc.subjectdiffusive gradients
dc.subjecttrace-metals
dc.subjectmarine sediment
dc.titleIn situ, high-resolution profiles of labile metals in sediments of lake taihu
dc.typeArticle
dc.identifier.doi10.3390/ijerph13090884
dc.local.publishedsourcehttp://www.mdpi.com/1660-4601/13/9/884/pdf
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