Abstract
Abstract. Phosphorus (P) species in colloidal and dissolved soil fractions may have different distributions. To understand which P species are potentially involved, we obtained water extracts from the surface soils of a gradient from Cambisol, Stagnic Cambisol to Stagnosol from temperate grassland in Germany. These were filtered to < 450 nm, and divided into three procedurally defined fractions: small-sized colloids (20–450 nm), nano-sized colloids (1–20 nm), and dissolved P (< 1 nm), using asymmetric flow field-flow fractionation (AF4), as well as filtration for solution 31P-nuclear magnetic resonance (NMR) spectroscopy. The total P of soil water extracts increased in the order Cambisol < Stagnic Cambisol < Stagnosol due to increasing contributions from the dissolved P fraction. Associations of C–Fe/Al–PO43−/pyrophosphate were absent in nano-sized (1–20 nm) colloids from the Cambisol but not in the Stagnosol. The 31P-NMR results indicated that this was accompanied by elevated portions of organic P in the order Cambisol > Stagnic Cambisol > Stagnosol. Across all soil types, elevated proportions of inositol hexakisphosphate (IHP) species (e.g., myo-, scyllo- and D-chiro-IHP) were associated with soil mineral particles (i.e., bulk soil and small-sized soil colloids), whereas other orthophosphate monoesters and phosphonates were found in the dissolved P fraction. We conclude that P species composition varies among colloidal and dissolved soil fractions after characterization using advanced techniques, i.e., AF4 and NMR. Furthermore, stagnic properties affect P speciation and availability by potentially releasing dissolved inorganic and ester-bound P forms as well as nano-sized organic matter–Fe/Al–P colloids.
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference52 articles.
1. Cade-Menun, B. J.: Characterizing phosphorus in environmental and agricultural samples by 31P nuclear magnetic resonance spectroscopy, Talanta, 66, 359–371, 2005.
2. Cade-Menun, B. J.: Characterizing phosphorus in animal waste with solution 31P NMR spectroscopy, in: Environmental Chemistry of Animal Manure, edited by: He, Z., 275–299, Nova Science Publishers, Inc. New York, 2011.
3. Cade-Menun, B. J.: Improved peak identification in 31P-NMR spectra of environmental samples with a standardized method and peak library, Geoderma, 257–258, 102–114, 2015.
4. Cade-Menun, B. J. and Liu, C. W.: Solution 31P-NMR spectroscopy of soils from 2005–2013, A review of sample preparation and experimental parameters, Soil Sci. Soc. Am. J., 78, 19–37, 2014.
5. Cade-Menun, B. J. and Preston, C. M.: A comparison of soil extraction procedures for 31P NMR spectroscopy, Soil Sci., 161, 770–785, 1996.
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