首页> 外文期刊>Geoderma: An International Journal of Soil Science >Phosphorus forms and related soil chemistry in preferential flowpaths and the soil matrix of a forested podzolic till soil profile.
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Phosphorus forms and related soil chemistry in preferential flowpaths and the soil matrix of a forested podzolic till soil profile.

机译:坡地至土壤剖面的优先流径和土壤基质中的磷形态及相关的土壤化学。

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Preferential flow affects subsurface flow and solute transport processes in forested glacial till soils. Preferential flowpaths (PFPs) have been detected in forest soils, with higher microbial biomass, organic carbon content and increased nitrogen cycling compared with the soil matrix. However, the role of preferential flow in phosphorus (P) cycling in forest soils is still unknown. This study characterised the P forms of a forested podzolic till soil profile in Southern Finnish Lapland using P extraction and ignition procedures, fractionation and solution 31P nuclear magnetic resonance (NMR) spectroscopy. PFPs were identified by introducing the dye tracer Acid Blue 9 at the surface of a 1.25 m2 study plot. The soil profile was vertically sliced and samples were collected from the unstained soil matrix and the dye-stained PFPs of each horizon of the podzol. Amorphous metal sesquioxides, naturally bound P (Pox), total P (Pt), inorganic P (Pin), organic P (Po), different inorganic P fractions (soluble P, Al-P, Fe-P, Ca-P, occluded P) and organic and inorganic P forms (31P-NMR spectroscopy) were analysed in the samples. The concentrations of different forms of P and amorphous metal sesquioxides varied between the different PFPs and the soil matrix within the podzol soil horizons. The PFPs in soils on stone surfaces contained less amorphous metal sesquioxides, Pox and Pt than the other flow regions. The PFPs related to coarse grains and roots contained equivalent or higher Pox and Pt concentrations than the soil matrix. Inorganic P was present as orthophosphates and pyrophosphates, and was mainly bound with Al and Ca oxides in PFPs, but also with Fe oxides in the soil matrix. PFPs contained more occluded P than the soil matrix, especially on stone surfaces. The results indicate increased mobilisation and P losses in PFPs on stone surfaces due to enhanced mineral weathering, root uptake and leaching of P adsorbed by the sesquioxides. The results of the 31P NMR study also showed higher proportions of pyrophosphate, orthophosphate diesters and monoesters other than phytic acid in the PFPs on stone surfaces than in the other flow regions, indicating higher amounts of labile forms of inorganic and organic P on stone surfaces than in other flow regions. To conclude, PFPs seem to have a twofold role in P dynamics: P can leach through PFPs on stone surfaces and accumulate on PFPs related to coarse grains and roots.
机译:优先流量会影响森林冰山土壤中的地下流量和溶质运移过程。与土壤基质相比,在森林土壤中发现了优先流动路径(PFP),具有较高的微生物量,有机碳含量和增加的氮循环。但是,尚不清楚优先流在森林土壤中磷(P)循环中的作用。利用磷提取和引燃程序,分馏和溶液 31 P核磁共振波谱法,研究了芬兰南部拉普兰地区森林中直至土壤剖面的P型形态。通过在1.25 m 2 研究区的表面引入染料示踪剂酸性蓝9来鉴定PFP。垂直切片土壤剖面,并从未染色的土壤基质和Podzol各个层级的染料染色的PFP中收集样品。非晶态金属倍半氧化物,天然结合的P(P ox ),总P(P t ),无机P(P in ),有机P( P o ),不同的无机P组分(可溶性P,Al-P,Fe-P,Ca-P,闭塞P)以及有机和无机P形式( 31 P -NMR光谱)在样品中进行了分析。在Podzol土壤环境中,不同的PFP和土壤基质之间,不同形式的P和无定形金属倍半氧化物的浓度不同。石头表面土壤中的PFPs比其他流动区域包含更少的非晶态金属倍半氧化物P ox 和P t 。与粗粒和根相关的PFP的P ox 和P t 浓度等于或高于土壤基质。无机磷以正磷酸盐和焦磷酸盐的形式存在,主要与PFP中的Al和Ca氧化物结合,但与土壤基质中的Fe氧化物结合。 PFP比土壤基质中的P含量更高,尤其是在石材表面。结果表明,由于矿物风化作用增强,根吸收和倍半氧化物吸附的磷浸出,石材表面PFP中的动员和磷损失增加。 31 NMR研究的结果还表明,在石头表面的PFP中,除植酸以外的焦磷酸盐,正磷酸盐二酯和单酯的比例高于其他流动区域,表明不稳定形式的石材表面上的无机和有机磷比其他流动区域要高。总而言之,PFP在P动力学中似乎起着双重作用:P可以通过PFP在石材表面上浸出并积累在与粗粒和根相关的PFP上。

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