Literature DB >> 29451383

Arsenic Speciation in Mekong Delta Sediments Depends on Their Depositional Environment.

Yuheng Wang1, Pierre Le Pape2, Guillaume Morin2, Maria P Asta1, Georgina King3, Barbora Bártová1, Elena Suvorova1, Manon Frutschi1, Maya Ikogou2, Vu Hoai Cong Pham4, Phu Le Vo4, Frédéric Herman5, Laurent Charlet6, Rizlan Bernier-Latmani1.   

Abstract

Arsenic contamination in groundwater is pervasive throughout deltaic regions of Southeast Asia and threatens the health of millions. The speciation of As in sediments overlying contaminated aquifers is poorly constrained. Here, we investigate the chemical and mineralogical compositions of sediment cores collected from the Mekong Delta in Vietnam, elucidate the speciation of iron and arsenic, and relate them to the sediment depositional environment. Gradual dissolution of ferric (oxyhydr)oxides with depth is observed down to 7 m, corresponding to the establishment of reducing conditions. Within the reduced sediment, layers originating from marine, coastal or alluvial depositional environments are identified and their age is consistent with a late Holocene transgression in the Mekong Delta. In the organic matter- and sulfur-rich layers, arsenic is present in association with organic matter through thiol-bonding and in the form of arsenian pyrite. The highest arsenic concentration (34-69 ppm) is found in the peat layer at 16 m and suggests the accumulation of arsenic due to the formation of thiol-bound trivalent arsenic (40-55%) and arsenian pyrite (15-30%) in a paleo-mangrove depositional environment (∼8079 yr BP). Where sulfur is limited, siderite is identified, and oxygen- and thiol-bound trivalent arsenic are the predominant forms. It is also worth noting that pentavalent arsenic coordinated to oxygen is ubiquitous in the sediment profile, even in reduced sediment layers. But the identity of the oxygen-bound arsenic species remains unknown. This work shows direct evidence of thiol-bound trivalent arsenic in the Mekong Delta sediments and provides insight to refine the current model of the origin, deposition, and release of arsenic in the alluvial aquifers of the Mekong Delta.

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Year:  2018        PMID: 29451383     DOI: 10.1021/acs.est.7b05177

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  5 in total

1.  Regulation of groundwater arsenic concentrations in the Ravi, Beas, and Sutlej floodplains of Punjab, India.

Authors:  Anand Kumar; Chander Kumar Singh; Benjamin Bostick; Athena Nghiem; Brian Mailloux; Alexander van Geen
Journal:  Geochim Cosmochim Acta       Date:  2020-03-12       Impact factor: 5.010

2.  Hydrogeochemical characteristics of a multi-layered coastal aquifer system in the Mekong Delta, Vietnam.

Authors:  Dang An Tran; Maki Tsujimura; Le Phu Vo; Van Tam Nguyen; Dwight Kambuku; Thanh Duc Dang
Journal:  Environ Geochem Health       Date:  2019-08-20       Impact factor: 4.609

3.  Arsenic concentration, speciation, and risk assessment in sediments of the Xijiang River basin, China.

Authors:  Hai-Bo Wang; Jia-Ming Xu; Mario Alberto Gomez; Zhong-Liang Shi; Shi-Feng Li; Shu-Yan Zang
Journal:  Environ Monit Assess       Date:  2019-10-24       Impact factor: 2.513

4.  Mediation of arsenic mobility by organic matter in mining-impacted sediment from sub-Arctic lakes: implications for environmental monitoring in a warming climate.

Authors:  Clare B Miller; Michael B Parsons; Heather E Jamieson; Omid H Ardakani; R Timothy Patterson; Jennifer M Galloway
Journal:  Environ Earth Sci       Date:  2022-02-16       Impact factor: 2.784

5.  A multi-technique study of altered granitic rock from the Krunkelbach Valley uranium deposit, Southern Germany.

Authors:  Ivan Pidchenko; Stephen Bauters; Irina Sinenko; Simone Hempel; Lucia Amidani; Dirk Detollenaere; Laszlo Vinze; Dipanjan Banerjee; Roelof van Silfhout; Stepan N Kalmykov; Jörg Göttlicher; Robert J Baker; Kristina O Kvashnina
Journal:  RSC Adv       Date:  2020-07-06       Impact factor: 4.036

  5 in total

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