Literature DB >> 29429112

Suspended particulate matter determines physical speciation of Fe, Mn, and trace metals in surface waters of Loire watershed.

Mohamed Baalousha1, Serge Stoll2, Mikaël Motelica-Heino3, Nathalie Guigues4, Gilles Braibant5, Frédéric Huneau6,7, Philippe Le Coustumer8,9,10.   

Abstract

This study investigates the spatiotemporal variability of major and trace elements, dissolved organic carbon (DOC), total dissolved solids (TDS), and suspended particulate matter (SPM) in surface waters of several hydrosystems of the Loire River watershed in France. In particular, this study aims to delineate the impact of the abovementioned water physicochemical parameters on natural iron and manganese physical speciation (homoaggregation/heteroaggregation) among fine colloidal and dissolved (< 10 nm), colloidal (10-450 nm) and particulate (> 450 nm) phases in Loire River watershed. Results show that the chemistry of the Loire River watershed is controlled by two end members: magmatic and metamorphic petrographic context on the upper part of the watershed; and sedimentary rocks for the middle and low part of the Loire. The percentage of particulate Fe and Mn increased downstream concurrent with the increase in SPM and major cations concentration, whereas the percentage of colloidal Fe and Mn decreased downstream. Transmission electron microscopy analyses of the colloidal and particulate fractions (from the non-filtered water sample) revealed that heteroaggregation of Fe and Mn rich natural nanoparticles and natural organic matter to the particulate phase is the dominant mechanism. The heteroaggregation controls the partitioning of Fe and Mn in the different fractions, potentially due to the increase in the ionic strength, and divalent cations concentration downstream, and SPM concentration. These findings imply that SPM concentration plays an important role in controlling the fate and behavior of Fe and Mn in various sized fractions. Graphical abstract Physical speciation by heteroaggregation of (Fe-Mn) compounds: high [SPM] → [Fe-Mn] particulate faction; low {SPM] → [Fe-Mn] colloid-dissolved fraction.

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Keywords:  Colloids; Hetero-aggregation; Loire River watershed; Natural iron and manganese; Natural nanoparticles; Physical speciation; Surface waters; Suspended particle matter

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Year:  2018        PMID: 29429112     DOI: 10.1007/s11356-018-1416-5

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  2 in total

1.  Health Risk Analysis of Elemental Components of an Industrially Emitted Respirable Particulate Matter in an Urban Area.

Authors:  Oyewale Mayowa Morakinyo; Murembiwa Stanley Mukhola; Matlou Ingrid Mokgobu
Journal:  Int J Environ Res Public Health       Date:  2021-04-01       Impact factor: 3.390

2.  Challenges of Measuring Soluble Mn(III) Species in Natural Samples.

Authors:  Bohee Kim; Usha Farey Lingappa; John Magyar; Danielle Monteverde; Joan Selverstone Valentine; Jaeheung Cho; Woodward Fischer
Journal:  Molecules       Date:  2022-03-03       Impact factor: 4.411

  2 in total

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