GSTDTAP  > 资源环境科学
DOI10.1073/pnas.2020315117
Bioavailable soil Pb minimized by in situ transformation to plumbojarosite
Ranju R. Karna; Matt R. Noerpel; Clay Nelson; Brittany Elek; Karen Herbin-Davis; Gary Diamond; Karen Bradham; David J. Thomas; Kirk G. Scheckel
2020-12-21
发表期刊Proceedings of the National Academy of Sciences
出版年2020
英文摘要

Exposure to lead (Pb) during early life has persistent adverse health effects. During childhood, ingestion of bioavailable Pb in contaminated soils can be a major route of Pb absorption. Remediation to alter physiochemical properties of soil-borne Pb can reduce Pb bioavailability. Our laboratory-based approach for soil Pb remediation uses addition of iron (Fe) sulfate and application of heat to promote formation of plumbojarosite (PLJ), a sparingly soluble Pb-Fe hydroxysulfate mineral. We treated two soils with anthropogenic Pb contamination and samples of clean topsoil spiked with various Pb compounds (i.e., carbonate, chloride, phosphate [P], or sulfate) to convert native Pb species to PLJ and used a mouse assay to assess relative bioavailability (RBA) of Pb in untreated (U) and remediated soils. Bone and blood Pb levels were significantly lower (P < 0.001, Student's t test) in mice that consumed diets amended with remediated soils than with U soils. Estimated RBA for Pb in both remediated natural soils and Pb-mineral spiked soils were reduced by >90% relative to Pb RBA for U soils, which is substantially more effective than other soil amendments, including P. X-ray absorption spectroscopy showed that >90% of all Pb species in remediated soils were converted to PLJ, and ingested PLJ was not chemically transformed during gastrointestinal tract transit. Post treatment neutralization of soil pH did not affect PLJ stability, indicating the feasibility in field conditions. These results suggest that formation of PLJ in contaminated soils can reduce the RBA of Pb and minimize this medium’s role as a source of Pb exposure for young children.

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被引频次:32[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/309063
专题资源环境科学
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Ranju R. Karna,Matt R. Noerpel,Clay Nelson,et al. Bioavailable soil Pb minimized by in situ transformation to plumbojarosite[J]. Proceedings of the National Academy of Sciences,2020.
APA Ranju R. Karna.,Matt R. Noerpel.,Clay Nelson.,Brittany Elek.,Karen Herbin-Davis.,...&Kirk G. Scheckel.(2020).Bioavailable soil Pb minimized by in situ transformation to plumbojarosite.Proceedings of the National Academy of Sciences.
MLA Ranju R. Karna,et al."Bioavailable soil Pb minimized by in situ transformation to plumbojarosite".Proceedings of the National Academy of Sciences (2020).
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