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- W2414664630 abstract "Trace element solubility and availability in land-applied residuals is governed by fundamental chemical reactions between metal constituents, soil, and residual components. Iron, aluminum, and manganese oxides; organic matter; and phosphates, carbonates, and sulfides are important sinks for trace elements in soil-residual systems. The pH of the soil-residual system is often the most important chemical property governing trace element sorption, precipitation, solubility, and availability. Trace element phytoavailability in residual-treated soils is often estimated using soil extraction methods. However, spectroscopic studies show that sequential extraction methods may not be accurate in perturbed soil-residual systems. Plant bioassay is the best method to measure the effect of residuals on phytoavailability. Key concepts used to describe phytoavailability are (i) the salt effect, (ii) the plateau effect, and (iii) the soil-plant barrier. Metal availability in soil from metal-salt addition is greater than availability in soil from addition of metal-containing residuals. Plant metal content displays plateaus at high residual loadings corresponding to the residual's metal concentration and sorption capacity. The soil-plant barrier limits transmission of many trace elements through the food chain, although Cd (an important human health concern) can bypass the soil-plant barrier. Results from many studies that support these key concepts provide a basis of our understanding of the relationship between trace element chemistry and phytoavailability in residual-treated soils. Research is needed to (i) determine mechanisms for trace element retention of soil-residual systems, (ii) determine the effect of residuals on ecological receptors and the ability of residuals to reduce ecotoxicity in metal-contaminated soil, and (iii) predict the long-term bioavailability of trace elements in soil-residual systems." @default.
- W2414664630 created "2016-06-24" @default.
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- W2414664630 creator A5084857922 @default.
- W2414664630 date "2005-01-01" @default.
- W2414664630 modified "2023-10-16" @default.
- W2414664630 title "Trace Element Chemistry in Residual-Treated Soil: Key Concepts and Metal Bioavailability" @default.
- W2414664630 cites W1590016244 @default.
- W2414664630 cites W1964279456 @default.
- W2414664630 cites W1966156158 @default.
- W2414664630 cites W1966175774 @default.
- W2414664630 cites W1970046170 @default.
- W2414664630 cites W1973597092 @default.
- W2414664630 cites W1974894315 @default.
- W2414664630 cites W1977391471 @default.
- W2414664630 cites W1977794746 @default.
- W2414664630 cites W198049466 @default.
- W2414664630 cites W1980700527 @default.
- W2414664630 cites W1982957677 @default.
- W2414664630 cites W1989477387 @default.
- W2414664630 cites W1992690207 @default.
- W2414664630 cites W1993614550 @default.
- W2414664630 cites W1995807015 @default.
- W2414664630 cites W1995824183 @default.
- W2414664630 cites W1999581938 @default.
- W2414664630 cites W2003372050 @default.
- W2414664630 cites W2007941982 @default.
- W2414664630 cites W2008886249 @default.
- W2414664630 cites W2009670513 @default.
- W2414664630 cites W2010804058 @default.
- W2414664630 cites W2012621192 @default.
- W2414664630 cites W2016965724 @default.
- W2414664630 cites W2016983083 @default.
- W2414664630 cites W2019230062 @default.
- W2414664630 cites W2019537158 @default.
- W2414664630 cites W2020460351 @default.
- W2414664630 cites W2026875653 @default.
- W2414664630 cites W2031735918 @default.
- W2414664630 cites W2034545493 @default.
- W2414664630 cites W2037028415 @default.
- W2414664630 cites W2037979341 @default.
- W2414664630 cites W2039099953 @default.
- W2414664630 cites W2039585977 @default.
- W2414664630 cites W2041700529 @default.
- W2414664630 cites W2044666997 @default.
- W2414664630 cites W2046708955 @default.
- W2414664630 cites W2049159561 @default.
- W2414664630 cites W2050015812 @default.
- W2414664630 cites W2052393515 @default.
- W2414664630 cites W2052835856 @default.
- W2414664630 cites W2054698952 @default.
- W2414664630 cites W2055639049 @default.
- W2414664630 cites W2058566602 @default.
- W2414664630 cites W2060955206 @default.
- W2414664630 cites W2067522552 @default.
- W2414664630 cites W2068649870 @default.
- W2414664630 cites W2068744818 @default.
- W2414664630 cites W2072184239 @default.
- W2414664630 cites W2072393258 @default.
- W2414664630 cites W2073221036 @default.
- W2414664630 cites W2074321736 @default.
- W2414664630 cites W2075059851 @default.
- W2414664630 cites W2077108560 @default.
- W2414664630 cites W2085704499 @default.
- W2414664630 cites W2091565315 @default.
- W2414664630 cites W2143974056 @default.
- W2414664630 cites W2150014785 @default.
- W2414664630 cites W2161700201 @default.
- W2414664630 cites W2163489894 @default.
- W2414664630 cites W2163761899 @default.
- W2414664630 cites W2223390873 @default.
- W2414664630 cites W2236396008 @default.
- W2414664630 cites W2605726364 @default.
- W2414664630 cites W2901065930 @default.
- W2414664630 cites W4296976267 @default.
- W2414664630 cites W560011511 @default.
- W2414664630 cites W89206824 @default.
- W2414664630 cites W97377992 @default.
- W2414664630 doi "https://doi.org/10.2134/jeq2005.0049dup" @default.
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