Uptake and Reduction of Cr(VI) to Cr(III) by Mesquite (Prosopis spp.): Chromate−Plant Interaction in Hydroponics and Solid Media Studied Using XAS
- 2 April 2003
- journal article
- research article
- Published by American Chemical Society (ACS) in Environmental Science & Technology
- Vol. 37 (9) , 1859-1864
- https://doi.org/10.1021/es0208916
Abstract
Chromium (Cr) is a well-established carcinogen that is a contaminant at half of the EPA Superfund sites in the United States. Two separate studies were performed to investigate the possibility that mesquite (Prosopis spp.), which is an indigenous desert plant species, can remove Cr from the environment via active transport systems to the aerial portions of the plant. The first study was performed by growing mesquite on solid media (agar) at Cr(VI) concentrations of 75 and 125 ppm. The accumulation found in the leaves under the present conditions indicated that mesquite could be classified as a hyperaccumulator of chromium. The second study was conducted to investigate the differences between the type of Cr ligand involved in Cr uptake with agar and hydroponic cultures. We used X-ray absorption spectroscopy (XAS) to determine the mechanisms involved in the uptake and binding of Cr(VI) in live mesquite tissue. The XAS results for this study showed that some of the supplied Cr(VI) was uptaken by the mesquite roots; however, the data analyses of the plant tissues demonstrated that it was fully reduced to Cr(III) in the leaf tissues. Experiments are currently being performed to evaluate the behavior of the Mesquite plant using lower Cr concentrations.Keywords
This publication has 36 references indexed in Scilit:
- Interactions by carcinogenic metal compounds with DNA repair processes: toxicological implicationsPublished by Elsevier ,2001
- Containment landfills: the myth of sustainabilityEngineering Geology, 2001
- Relationships between chromium biomagnification ratio, accumulation factor, and mycorrhizae in plants growing on tannery effluent-polluted soilEnvironment International, 2001
- Phytochelatin biosynthesis and function in heavy-metal detoxificationCurrent Opinion in Plant Biology, 2000
- Life-cycle phases of a zinc- and cadmium-resistant ecotype of Silene vulgaris in risk assessment of polymetallic mine soilsPublished by Elsevier ,2000
- Impact of Los Frailes mine spill on riverine, estuarine and coastal waters in southern SpainWater Research, 1999
- Heavy metal tolerance genes: prospective tools for bioremediationResources, Conservation and Recycling, 1996
- Studies on removal and recovery of Cr(VI) from electroplating wastesWater Research, 1996
- Review of the allergic contact dermatitis hazard posed by chromium‐contaminated soil: Identifying a “safe” concentrationJournal of Toxicology and Environmental Health, 1992
- Hematologic Effects of Heavy Metal PoisoningSouthern Medical Journal, 1988