A method to isolate soil organic phosphorus from other soil organic matter to determine its carbon isotope ratio

被引:0
作者
Tian, Ye [1 ]
Spohn, Marie [1 ]
机构
[1] Swedish Univ Agr Sci SLU, Dept Soil & Environm, Lennart Hjelms Vag 9,POB 7014, S-75007 Uppsala, Sweden
基金
欧洲研究理事会;
关键词
Soil organic phosphorus; Method development; Soil phosphorus isolation; delta; 13C; Coprecipitation and adsorption; pH adjustment; Metal hydroxide; EXTRACELLULAR POLYMERIC SUBSTANCES; BACTERIAL EXOPOLYMERS; INORGANIC PHOSPHORUS; PHOSPHATE REMOVAL; IRON-OXIDE; ADSORPTION; WATER; GOETHITE; NITROGEN; COPRECIPITATION;
D O I
10.1016/j.soilbio.2025.109911
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Despite the importance of soil organic phosphorus (OP) for plant nutrition, its dynamics in soil remain elusive due to the lack of multiple stable P isotopes. Here, we developed a method that isolates the soil OP pool from other soil organic matter to measure its carbon isotope signature to elucidate soil OP decomposition. We tested three extractants (H2SO4, HCl, and NaOH in 0.5 M) for their capacity to preferentially extract OP. For isolating OP from the extract, we evaluated different pH adjustments (pH 1.5-10) and iron-or aluminum hydroxide additions. Finally, we determined the carbon isotope ratio (S13C) of the isolated OP pool. We found that the H2SO4 extracts had the highest OP content and the lowest organic carbon (OC):OP ratio compared to the HCl and NaOH extracts. The pH adjustments of the H2SO4 extracts to pH 4-7.5 removed >= 93 % of the extracted OP from the solution. The OC:OP ratio of the precipitates was the lowest (11-16) at pH 7.5, showing a strong preferential OP precipitation caused by the pH alteration. Metal hydroxide addition (combined with pH treatment) did not improve the preferential OP removal. The S13C of the OP reflected differences in the vegetation (C3/C4) that grows at the soil sampling sites. Overall, this method provides a simple and effective approach to isolate the soil OP pool from other soil organic matter and determine its carbon isotope ratio, which opens new avenues to study soil OP dynamics.
引用
收藏
页数:7
相关论文
共 65 条
[1]  
Anderson G., 1967, SOIL BIOCH, P67
[2]   Lignin turnover kinetics in an agricultural soil is monomer specific [J].
Bahri, Haithem ;
Dignac, Marie-France ;
Rumpel, Cornelia ;
Rasse, Daniel P. ;
Chenu, Claire ;
Mariotti, Andre .
SOIL BIOLOGY & BIOCHEMISTRY, 2006, 38 (07) :1977-1988
[3]   NATURAL C-13 ABUNDANCE AS A TRACER FOR STUDIES OF SOIL ORGANIC-MATTER DYNAMICS [J].
BALESDENT, J ;
MARIOTTI, A ;
GUILLET, B .
SOIL BIOLOGY & BIOCHEMISTRY, 1987, 19 (01) :25-30
[4]   Atmosphere-soil carbon transfer as a function of soil depth [J].
Balesdent, Jerome ;
Basile-Doelsch, Isabelle ;
Chadoeuf, Joel ;
Cornu, Sophie ;
Derrien, Delphine ;
Fekiacova, Zuzana ;
Hatte, Christine .
NATURE, 2018, 559 (7715) :599-+
[5]   13C and 15N stabilization dynamics in soil organic matter fractions during needle and fine root decomposition [J].
Bird, Jeffrey A. ;
Kleber, Markus ;
Torn, Margaret S. .
ORGANIC GEOCHEMISTRY, 2008, 39 (04) :465-477
[6]  
Blume H.P., 2016, Scheffer/Schachtschabel: Lehrbuch der Bodenkunde
[7]   Benzenecarboxylate surface complexation at the goethite (α-FeOOH)/water interface:: I.: A mechanistic description of pyromellitate surface complexes from the combined evidence of infrared spectroscopy, potentiometry, adsorption data, and surface complexation modeling [J].
Boily, JF ;
Nilsson, N ;
Persson, P ;
Sjöberg, S .
LANGMUIR, 2000, 16 (13) :5719-5729
[8]   BASIC EDTA AS AN EXTRACTANT FOR SOIL ORGANIC PHOSPHORUS [J].
BOWMAN, RA ;
MOIR, JO .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1993, 57 (06) :1516-1518
[9]   Assessment of gross and net mineralization rates of soil organic phosphorus - A review [J].
Buenemann, Else Katrin .
SOIL BIOLOGY & BIOCHEMISTRY, 2015, 89 :82-98
[10]   A comparison of soil extraction procedures for P-31 NMR spectroscopy [J].
Cade-Menun, BJ ;
Preston, CM .
SOIL SCIENCE, 1996, 161 (11) :770-785