4.7 Article

Occurrence and geochemical behavior of arsenic in a coastal aquifer-aquitard system of the Pearl River Delta, China

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 427, 期 -, 页码 286-297

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2012.04.006

关键词

Arsenic; Occurrence; Geochemical behavior; Coastal; Aquifer-aquitard system; The Pearl River Delta

资金

  1. Research Grants Council
  2. Hong Kong Special Administrative Region, China [HKU 702707P, HKU 703109P, HKU 703010P]
  3. China Geological Survey
  4. Guangdong Geological Survey
  5. Sustainable Water Environment Strategic Research Sub-Theme in HKU

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Elevated concentrations of arsenic, up to 161 mu g/L., have been identified in groundwater samples from the confined basal aquifer underlying the aquitard of the Pearl River Delta (PRD). Both aquatic arsenic in pore water and solid arsenic in the sediments in the basal aquifer and aquitard were identified. Arsenic speciation of groundwater in the basal aquifer was elucidated on a pH-Eh diagram. In the PRO, arsenic is enriched in groundwater having both low and high salinity, and arsenic enriched groundwater is devoid of dissolved oxygen, has negative Eh values, is slightly alkaline, and has abnormally high concentrations of ammonium and dissolved organic carbon, but low concentrations of nitrate and nitrite. Results of geochemical and hydrochemical analyses and sequential extraction analysis suggest that reductive dissolution of iron oxyhydroxide could be one of the important processes that mobilized solid arsenic. We speculate that mineralization of sedimentary organic matter could also contribute to aquatic arsenic. Scanning electron microscope analysis confirms that abundant authigenic pyrite is present in the sediments. Sulphate derived from paleo-seawater served as the important sulfur source for authigenic pyrite formation. Co-precipitation of arsenic with authigenic pyrite significantly controlled concentrations of aquatic arsenic in the coastal aquifer-aquitard system. (C) 2012 Elsevier B.V. All rights reserved.

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