| International Journal of Environmental Research and Public Health | |
| Bioavailability and Uptake of Lead by Coffeeweed ( |
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| Gloria Miller2  Gregorio Begonia1  Maria Begonia2  | |
| [1] id="af1-ijerph-05-00436">Plant Physiology/Microbiology Laboratory, Department of Biology, P.O. Box 18540, College of Science, Engineering and Technology, Jackson State University, 1000 Lynch Street, Jackson, Mississippi 39217, | |
| 关键词: Lead; Phytoextraction; Sequential extraction; Chelates; | |
| DOI : 10.3390/ijerph5050436 | |
| 来源: mdpi | |
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【 摘 要 】
Lead (Pb) is recognized as one of the most pervasive environmental health concerns in the industrialized world. While there has been a substantial reduction in the use of Pb in gasoline, water pipes, and Pb-based residential paint, residual Pb from their use is still in the environment and constitutes an important source of Pb in the atmosphere, water, and soil. Soil acts as a sink for these anthropogenic sources of Pb, accumulating the deposits over time in the upper 2 – 5 cm of undisturbed soil. Generally, Pb binds strongly to soil particles and renders a significant soil-metal fraction insoluble and largely unavailable for phytoremediation or plant uptake. A major objective of current phytoremediation research, therefore, is to induce desorption of Pb from the soil matrix into solution and increase the propensity for plant uptake. We hypothesized that the bioavailability of Pb for plant uptake can be increased through chelate amendments. To test this hypothesis, we mixed delta top soil and peat (2:1) and added lead nitrate [Pb (NO3)2] to generate a Pb-contaminated soil concentration of 2000 mg Pb/kg dry soil. After incubating the Pb-spiked soil in a greenhouse for 6 weeks,
【 授权许可】
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© 2008 MDPI
【 预 览 】
| Files | Size | Format | View |
|---|---|---|---|
| RO202003190057602ZK.pdf | 122KB |
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