首页> 外文期刊>Communications in Soil Science and Plant Analysis >Phosphorus amendment of a lead-spiked soil with low phosphorus availability: roles of phosphorus on soil and plant lead.
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Phosphorus amendment of a lead-spiked soil with low phosphorus availability: roles of phosphorus on soil and plant lead.

机译:磷利用率低的掺铅土壤的磷改良剂:磷在土壤和植物铅上的作用。

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摘要

Phosphorus (P) is both a macronutrient for plants and an effective amendment to reduce lead (Pb) toxicity in soil. Thus, in Pb-polluted soil with low P availability, P will act as a nutrient as well as a Pb-immobilizing agent. However, this has not been fully investigated. A soil with 2.50 mg kg-1 Olsen P was spiked with soluble Pb and then amended with superphosphate to examine the effect of P on soil Pb availability and ryegrass (Lolium perenne L. cv. Aubisque) growth. It was found that P/Pb=2 increased ryegrass yield by 804% and decreased root Pb concentration and soil diethylenetriaminepentaacetic acid (DTPA)-extractable Pb concentration by 25.6% and 1.0%, respectively. As P amendment increased to P/Pb=4, both plant yield and root Pb concentration declined compared with P/Pb=2. Results of the sequential extraction indicated that the proportion of carbonate phase Pb decreased, while that of the manganese oxide phase increased as P was added. The proportion of residual Pb was little affected by the amendment. The results suggest that in soils with low P availability and high Pb availability, availability of soil Pb and root concentration of Pb are less affected, whereas the toxicity of Pb is greatly depressed by the P amendment; P/Pb=2 is high enough to alleviate the stresses of low P availability.
机译:磷(P)既是植物的重要营养素,又是减少土壤中铅(Pb)毒性的有效改良剂。因此,在P利用率低的Pb污染土壤中,P既可以作为养分,又可以作为Pb固定剂。但是,这尚未得到充分调查。将2.50 mg kg -1 Olsen P的土壤掺入可溶性Pb,然后用过磷酸钙修正,以检查P对土壤Pb利用率和黑麦草的影响(黑麦草 L cv。Aubisque)增长。研究发现,P / Pb = 2使黑麦草的产量增加804%,并使根部Pb浓度和土壤二乙烯三胺五乙酸(DTPA)可提取的Pb浓度分别降低25.6%和1.0%。当P修正值增加到P / Pb = 4时,与P / Pb = 2相比,植物产量和根部Pb浓度均下降。顺序萃取的结果表明,碳酸盐相Pb的比例减少,而锰氧化物相的比例随着P的添加而增加。修正案对残留铅的比例影响很小。结果表明,在低P有效性和高Pb有效性的土壤中,土壤Pb的有效性和Pb的根部浓度受到的影响较小,而P改良剂大大降低了Pb的毒性。 P / Pb = 2高到足以缓解低P可用性的压力。

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