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首页> 外文期刊>Archives of Agronomy and Soil Science >Temporal variation of total and DTPA-extractable heavy metal contents as influenced by sewage sludge and perlite in a calcareous soil
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Temporal variation of total and DTPA-extractable heavy metal contents as influenced by sewage sludge and perlite in a calcareous soil

机译:污水污泥和钙质土壤中受影响的总和DTPA可提取的重金属含量的时间变化

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摘要

Continuous application of sewage sludge (SS) as a source of organic matter, may increase available heavy metals (HMs) up to their critical levels. As a consequence their uptake by plants, risks of accumulation in food chain and groundwater pollution increases. To evaluate the effects of perlite and SS on total content and available fraction of iron (Fe), manganese (Mn), lead (Pb), copper (Cu), nickel (Ni), cadmium (Cd) and zinc (Zn) over 45 and 90 days a completely randomized pot experiment was conducted. Treatments consisted of SS (0, 2 and 4%) and combined SS and perlite levels (1:1, 1.5:0.5 and 0.5:1.5% SS:perlite). Mean available Fe, Ni, Cd, Mn and Zn fractions decreased over time by 7-27%, whereas, total contents did not change. Available HMs in SS-treated soils increased by 0.5-25%; whereas, only total Zn, Cu and Pb concentrations increased with SS application (although concentrations fall in the range of critical levels). The lowest (1.6 fold) and highest (22.1 fold) increases obtained for available Cu and Zn, respectively. Perlite could mitigate the adverse effect of high rate application of SS on amplification of HMs extractability. Therefore, their concomitant applications can be suggested considering the perlite durability and its positive effects on soil physical properties.
机译:连续应用污水污泥(SS)作为有机物质来源,可以将可用的重金属(HMS)增加至其临界水平。因此,植物的吸收,食物链和地下水污染积累的风险增加。为了评估珍珠岩和SS对总含量和可用的铁(Fe),锰(Mn),铅(Pb),铜(Cu),镍(Ni),镉(CD)和锌(Zn)的效果45和90天进行完全随机化的盆栽实验。治疗由SS(0,2和4%)和SS和珍珠岩水平组成(1:1,1.5:0.5和0.5:1.5%SS:Perlite)。平均可用的Fe,Ni,Cd,Mn和Zn馏分随着时间的推移降低7-27%,而总含量没有变化。 SS处理的土壤中的可用HMS增加0.5-25%;虽然,SS应用只有总Zn,Cu和Pb浓度增加(尽管浓度下降在临界水平范围内)。对于可用的Cu和Zn,分别获得最低(1.6倍)和最高(22.1倍)的增加。珍珠岩可以减轻SS对HMS可提取性扩增的高速率应用的不利影响。因此,考虑到珍珠岩耐久性及其对土壤物理性质的积极影响,可以提出它们的伴随应用。

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