PDF

Speciation of dissolved chromium and the mechanisms controlling its concentration in natural water

Sulistyo Saputro, Kazuhisa Yoshimura

2014enchromiumnatural watersolid-phase spectrophotometryoxidationenvironment

Abstract

Language:

The circulation of chromium at naturally occurring concentration levels (i.e., 1μgd m−3 or lower) was examined using solid-phase spectrophotometry and inductively coupled plasma-mass spectrophotometry (ICP-MS) to determine the Cr(VI) and Cr(Total) concentrations, respectively. Natural water and stream sediments were collected from areas with various types of geologic features, such as metamorphic rocks, volcanic rocks, and limestone in Japan and Indonesia. Cr(VI) was predominant in weakly alkaline natural waters, and the Cr(III) concentration was less than 1μgd m−3, which was considerably lower than that expected based on the solubility of Cr(OH)3. The dissolution of chromium in natural water was described by the leaching of Cr(VI) from Cr(III)-containing minerals under oxic conditions. The Cr(VI) concentration in a solution that was in contact with chromite, FeCr2O4, linearly increased with the reaction time. The results indicated that under oxic conditions at PO2 = 0.21 atm, the leaching rate of Cr(VI) was pseudo zero-order at a fixed pH and was higher in alkaline than in acidic solutions. The removal of Cr from natural waters was due to the reduction of Cr(VI) to Cr(III) by organic matter, such as humic substances, as well as to the adsorption of bacterially produced hydrogen sulfide in a marine environment.

Download

Cite This Work

@article{b15ade7c-abf5-432b-b7e3-871e30072e9c,
  title={Speciation of dissolved chromium and the mechanisms controlling its concentration in natural water},
  author={Sulistyo Saputro and Kazuhisa Yoshimura},
  year={2014},
  language={en}
}
TY  - JOUR
TI  - Speciation of dissolved chromium and the mechanisms controlling its concentration in natural water
AU  - Sulistyo Saputro
AU  - Kazuhisa Yoshimura
PY  - 2014
LA  - en
ER  -

Similar Items

Speciation of dissolved chromium and the mechanisms controlling its concentration in natural water

Sulistyo Saputro, Kazuhisa Yoshimura

The circulation of chromium at naturally occurring concentration levels (i.e., 1 μg d m−3 or lower) was examined using solid-phase spectrophotometry a

2009enPDF

Chapter 20 Electronic Waste

Jirang Cui, Hans Jørgen Roven

Rapid growth in electronic equipment consumption has generated large quantities of electronic waste containing hazardous substances and high-value met

2026enPDF

Speciation of uranium: Compilation of a thermodynamic database and its experimental evaluation using different analytical techniques

Elena L. Mühr-Ebert, Frank Wagner

Environmental hazards are caused by uranium mining legacies and enhanced radioactivity in utilized groundwater and surface water resources. Knowledge

2019enPDF

Phosphogypsum and clay mineral/phosphogypsum ceramic composites as useful adsorbents for uranium uptake

Marcin D. Syczewski, Andrzej Borkowski

We analyzed the sorption capacity of phosphogypsum and clay mineral-based ceramic composites. Phosphogypsum is a waste by-product generated from apati

2020enPDF

Bacterial interactions with uranium: An environmental perspective

Mohamed L. Merroun, Sonja Selenska-Pobell

The presence of actinides in radioactive wastes is a significant environmental concern due to their potential for migration from repositories and long

2008enPDF

E-WASTE IN TRANSITION FROM POLLUTION TO RESOURCE

Florin-Constantin Mihai

E-waste in Transition: From Pollution to Resource examines the dual nature of waste electrical and electronic equipment as both a major pollution sour

2016enPDF