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Trace element solubility from land application of fly ash/organic waste mixtures with emphasis on arsenic and selenium speciation.

机译:来自粉煤灰/有机废物混合物在土地上施用的痕量元素溶解度,重点是砷和硒的形成。

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Mixing of coal fly ash with organic wastes to provide balanced soil amendments offers a potential viable utilization of this industrial by-product; however, trace element solubility needs to be evaluated. Soil solution speciation of As and Se from fly ash/organic waste mixtures is also of environmental concern. Coupling of ion chromatography with inductively coupled plasma mass spectrometry (IC-ICP-MS) has proved an effective method for determining As speciation at trace concentrations; however, ICP-MS has not previously been used for multi-element detection in As and Se speciation analysis. Two fly ashes mixed with either poultry litter or sewage sludge at ratios of 4:l and 2:1, respectively, were land-applied to a Cecil sandy loam at application rates of 80 Mg ha{dollar}sp{lcub}-1{rcub}{dollar} fly ash, 20 Mg ha{dollar}sp{lcub}-1{rcub}{dollar} poultry litter, and 40 Mg ha{dollar}sp{lcub}-1{rcub}{dollar} sewage sludge. Maize was planted on the amended field plots and tension lysimeters were used to collect soil solution. Increased soluble concentrations of P, C, Cu, As, Se, Mo, and Cr were determined in fly ash/poultry litter plots relative to fly ash/sewage sludge plots: Increased soluble P and organic C from the poultry litter may have increased soluble oxyanion concentrations from the fly ash. Increased soil solution concentrations were transient, decreasing to near control levels after approximately 30 days. A subsequent laboratory incubation study indicated that Cu was highly soluble from poultry litter, and that soluble Cu was highly correlated with soluble C. The poultry litter was also a significant source of soluble As. Mixing of fly ash with either organic waste increased soluble Se concentrations relative to land application of the fly ash alone. Soil solution speciation showed that Se was present as selenate, Se(VI), and increased soluble Se may have resulted from higher pH and increased sulfate concentrations of the fly ash/organic waste mixtures. Soluble As was present as As(V) in fly ash-amended soils, while dimethylarsinate (DMA) was the predominate species in fly ash/poultry litter-amended soils. IC-ICP-MS proved an effective technique for As and Se speciation analysis in environmental samples, yielding detection limits of {dollar}<{dollar}1{dollar}mu{dollar}g L{dollar}sp{lcub}-1{rcub}{dollar} for all species analyzed.
机译:将粉煤灰与有机废物混合以提供平衡的土壤改良剂,可以有效利用这种工业副产品。但是,痕量元素的溶解度需要评估。粉煤灰/有机废物混合物中砷和硒在土壤溶液中的形态形成也引起了环境方面的关注。离子色谱与电感耦合等离子体质谱法(IC-ICP-MS)的耦合已被证明是测定痕量浓度As形态的有效方法。但是,ICP-MS以前尚未用于As和Se形态分析中的多元素检测。将两种粉煤灰分别以4:l和2:1的比例与家禽垃圾或污水污泥混合,以80 Mg ha {dollar} sp {lcub} -1 {的施用量施用于塞西尔沙壤土。 rcub} {dollar}粉煤灰,20 Mg ha {dollar} sp {lcub} -1 {rcub} {dollar}家禽垃圾和40 Mg ha {dollar} sp {lcub} -1 {rcub} {dollar}污水污泥。将玉米种植在经过修改的田地上,并使用张力渗漏计收集土壤溶液。相对于粉煤灰/污水污泥图,测定了粉煤灰/家禽垫料区中P,C,Cu,As,Se,Mo和Cr的可溶性浓度增加:家禽垫料中可溶性P和有机C的增加可能增加了可溶性粉煤灰中的氧阴离子浓度。增加的土壤溶液浓度是短暂的,大约30天后降至接近控制水平。随后的实验室孵化研究表明,Cu从家禽垫料中高度可溶,而可溶性Cu与可溶性C高度相关。家禽垫料也是可溶性As的重要来源。与仅粉煤灰的土地施用相比,将粉煤灰与任何一种有机废物混合都会增加可溶性硒的浓度。土壤溶液形态分析表明,硒以硒酸盐,硒(VI)的形式存在,可溶性硒的增加可能是由于粉煤灰/有机废物混合物的较高pH和硫酸盐浓度引起的。在粉煤灰改良过的土壤中,可溶砷以As(V)的形式存在,而在粉煤灰/家禽凋落物改良的土壤中,二甲基砷酸酯(DMA)是主要的物质。 IC-ICP-MS被证明是一种用于环境样品中砷和硒形态分析的有效技术,检出限为{dollar} <{dollar} 1 {dollar} mu {dollar} g L {dollar} sp {lcub} -1 { rcub} {dollar},用于分析的所有物种。

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