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首页> 外文期刊>European Journal of Soil Science >Phosphorus speciation in temperate basaltic grassland soils by solution pdp#P NMR spectroscopy
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Phosphorus speciation in temperate basaltic grassland soils by solution pdp#P NMR spectroscopy

机译:溶液pdp#P NMR光谱分析温带玄武质草地土壤中的磷形态

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Phosphorus (P) speciation in 21 basaltic and four non-basaltic Irish grassland soils was determined by NaOH-EDTA extraction and pdp#P NMR spectroscopy. Organic P in basaltic soils ranged between 30 and 697 mg P kgp# and consisted of phosphate monoesters (84-100%), DNA (0-16%) and phosphonates (0-5%). Inorganic P was mainly phosphate (83-100%) with small concentrations of pyrophosphate (0-17%). Phosphate monoesters were more important as a proportion of extracted P in basaltic soils, probably because of their greater oxalate-extractable Fe and Al contents. Phosphate monoesters appeared to be strongly associated with non-crystalline Al and increased with total soil P concentration, indicating that they do accumulate in grassland soils. In non-basaltic soils myo-inositol hexakisphosphate constituted between 20 and 52% of organic P, while scyllo-inositol hexakisphosphate constituted between 12 and 17%. These compounds were not quantified separately in basaltic soils because of poor NMR resolution in the phosphate monoester region, but appeared to represent a considerable proportion of the organic P in most samples. DNA concentrations were greater in basaltic soils compared with non-basaltic soils and were associated with acidic pH and large total C contents. The inability of the Olsen P test to assess effectively the P status of basaltic soils may result from strong phosphate sorption to Fe and Al oxides, inducing plant utilization of soil organic P. Phosphorus nutrient management should account for this to avoid over-application of P and associated financial and environmental costs.
机译:通过NaOH-EDTA萃取和pdp#P NMR光谱法测定了21种玄武岩和4种非玄武岩爱尔兰草原土壤中的磷(P)形态。玄武质土壤中的有机磷含量在30至697 mg P kgp#之间,由磷酸单酯(84-100%),DNA(0-16%)和膦酸酯(0-5%)组成。无机磷主要是磷酸盐(83-100%)和少量的焦磷酸盐(0-17%)。磷酸单酯作为玄武岩土壤中所提取P的比例更为重要,这可能是因为它们可通过草酸盐提取的Fe和Al含量更高。磷酸单酯似乎与非晶态铝密切相关,并随土壤总磷浓度增加而增加,表明它们确实在草地土壤中积累。在非碱性土壤中,肌醇六磷酸酯占有机磷的20%至52%,而鞘氨醇六磷酸酯占12%至17%。由于在磷酸盐单酯区域的NMR分辨率较差,因此无法在玄武质土壤中对这些化合物进行单独定量,但在大多数样品中,这些化合物似乎占有机磷的相当比例。与非碱性土壤相比,碱性土壤中的DNA浓度更高,并且与酸性pH和大量的总C含量相关。 Olsen P测试无法有效评估玄武质土壤的P状况,可能是由于磷酸盐对Fe和Al氧化物的强烈吸附,从而导致植物对土壤有机P的利用。磷素养分管理应对此加以考虑,以避免过量施用P以及相关的财务和环境成本。

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