Phosphate adsorption and precipitation in calcareous soils: the role of calcium ions in solution and carbonate minerals

被引:242
作者
Tunesi, S [1 ]
Poggi, V [1 ]
Gessa, C [1 ]
机构
[1] Univ Bologna, Inst Agr Chem, UCI Sci & Tecnol Agroind & Agroalimentari, I-40127 Bologna, Italy
关键词
calcium ions; carbonates; P adsorption; P precipitation;
D O I
10.1023/A:1009709005147
中图分类号
S15 [土壤学];
学科分类号
0903 [农业资源与环境]; 090301 [土壤学];
摘要
P-removal from soil solution is mainly due to adsorption and precipitation reactions. For calcareous soils two pathways have been proposed as being relevant: partitioning on soil surfaces and precipitation induced by Ca2+ ions in solution. To define P-speciation in soil and reduce P-immobilisation following fertilisation, the relative importance of these two reactions needs to be quantitatively established. This investigation, conducted on two calcareous soils, suggests that Ca-ion activity in the liquid phase is mainly responsible for the formation of insoluble Ca-P phases. Our study was carried out by determining: a) batch sorption isotherms at different slurry concentrations, times of contact, pH and indifferent electrolyte concentrations; b) supernatant isotherms on soil suspensions; c) insolubilisation kinetics of P added to soil columns. The shape of the sorption isotherms indicated that adsorption predominated at low concentrations (below approximately 0.5 mM); above this level precipitation became predominant. Precipitation from solution was demonstrated by adding increasing amounts of ph to soil suspension supernatants and precipitation levels comparable to those observed in sorption isotherms were obtained. Thus, carbonate mineral surfaces were not necessary for the induction of P precipitation. The formation of Ca-P mineral phases was increased with reaction time and was governed by the concentration of Ca-ions, pH and indifferent electrolyte concentration. P added at the top of soil columns was rapidly insolubilised: after 5 weeks the P-Olsen value was reduced to about 60% and P was not transported to the deepest layers but remained in the surface ones. These results suggest that, for soils with a high reservoir of exchangeable cations able to form insoluble P phases, precipitation is the predominant mechanism which reduces P availability for plants.
引用
收藏
页码:219 / 227
页数:9
相关论文
共 22 条
[1]
PHOSPHATE AND ACCOMPANYING CATION-TRANSPORT IN A CALCAREOUS CATION-EXCHANGE RESIN SYSTEM [J].
AKINREMI, OO ;
CHO, CM .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1991, 55 (04) :959-964
[2]
PHOSPHATE-TRANSPORT IN CALCIUM-SATURATED SYSTEMS .2. EXPERIMENTAL RESULTS IN A MODEL SYSTEM [J].
AKINREMI, OO ;
CHO, CM .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1991, 55 (05) :1282-1287
[3]
Allison J.D., 1991, MINTEQA2 PRODEFA2 GE
[4]
PHOSPHORUS ADSORPTION BY KAOLINITE AND MONTMORILLONITE .1. EFFECT OF TIME, IONIC-STRENGTH, AND PH [J].
BARYOSEF, B ;
KAFKAFI, U ;
ROSENBERG, R ;
SPOSITO, G .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1988, 52 (06) :1580-1585
[5]
PHOSPHATE SORPTION BY CALCIUM-CARBONATE IN SOME SOILS OF THE MEDITERRANEAN PART OF SPAIN [J].
BORRERO, C ;
PENA, F ;
TORRENT, J .
GEODERMA, 1988, 42 (3-4) :261-269
[6]
PHOSPHATE AVAILABILITY IN SOILS AT WATER ACTIVITIES BELOW ONE [J].
CASTRO, B ;
TORRENT, J .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 1993, 24 (15-16) :2085-2092
[7]
ADSORPTION OF PHOSPHATE ON ALUMINA AND KAOLINITE FROM DILUTE AQUEOUS-SOLUTIONS [J].
CHEN, YSR ;
BUTLER, JN ;
STUMM, W .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1973, 43 (02) :421-436
[9]
INTERACTION OF PHOSPHATE WITH CALCITE [J].
GRIFFIN, RA ;
JURINAK, JJ .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1973, 37 (06) :847-850
[10]
SOLUBILITY CHARACTERISTICS OF RESIDUAL PHOSPHATE IN A FERTILIZED AND LIMED ULTISOL [J].
HARRISON, RB ;
ADAMS, F .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1987, 51 (04) :963-969