DISTRIBUTION PATTERNS OF DIFFERENT FORMS OF PHOSPHORUS IN SOME SURFICIAL SEDIMENTS OF THE BALTIC SEA

被引:35
作者
CARMAN, R [1 ]
JONSSON, P [1 ]
机构
[1] NATL SWEDISH ENVIRONM PROTECT AGCY,S-17185 SOLNA,SWEDEN
关键词
D O I
10.1016/0009-2541(91)90036-Q
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The lateral distribution patterns of different forms of phosphorus (P) in some Baltic Sea sediments were investigated by a sequential extraction procedure. The distribution and amount are mainly related to redox state, grain size, organic content and the chemical characteristics of the sediments. Recalculation from mol P per dry weight (d.w.) to mol P per unit area indicates that coarse sediments typical of transportation bottoms contain more total P than the finer sediments found in accumulation areas. This is applicable for almost all extracted P fractions. The extraction procedure shows that HCl-extractable P, often referred to as apatite-P, is the dominating fraction of almost all sediment types. Oxidized fine-grained sediments of the near-shore area and the archipelago are enriched in the hydrogen sulfide (H2S) extractable P fraction. However, also some transportation bottoms dominated by slightly coarser grain size, i.e. silt instead of clay, have incorporated large amounts of P. A rough estimate indicates that the overall importance of a redox-dependent release of P from the sediments is of secondary importance compared to the total annual load. A predictive calculation of the importance of a hypothetical oxidation of all accumulation bottoms in the Baltic proper indicates that the optimally adsorbed amount of P to these bottoms may represent about twice the annual load. However, this calculation represents an extreme potential uptake. A more realistic adsorption uptake is probably far less than two years' supply. The sorbing capacities of the archipelago and near-shore sediments are today of great importance for the net balance of P in comparison to that of the off-shore sediments. Furthermore, the study also implies that other incorporation mechanisms must occur to balance the total annual load entering the Baltic proper.
引用
收藏
页码:91 / 106
页数:16
相关论文
共 93 条
[51]  
LARSSON U, 1985, AMBIO, V14, P9
[52]  
LASSIG L, 1987, BALTIC SEA ENV P B, V17
[53]   RATE AND EXTENT OF INORGANIC-PHOSPHATE EXCHANGE IN LAKE SEDIMENTS [J].
LI, WC ;
SYERS, JK ;
WILLIAMS, JD ;
ARMSTRONG, DE ;
HARRIS, RF .
SOIL SCIENCE SOCIETY OF AMERICA PROCEEDINGS, 1972, 36 (02) :279-+
[54]  
Love L. G, 1967, SEDIMENTOLOGY, V9, P327, DOI [10.1111/j.1365-3091.1967.tb01339.x, DOI 10.1111/J.1365-3091.1967.TB01339.X]
[55]   A COMPARISON OF SEVERAL METHODS FOR THE DETERMINATION OF IRON HYDROXIDES AND ASSOCIATED ORTHO-PHOSPHATES IN ESTUARINE PARTICULATE MATTER [J].
LUCOTTE, M ;
DANGLEJAN, B .
CHEMICAL GEOLOGY, 1985, 48 (1-4) :257-264
[56]   PROCESSES CONTROLLING PHOSPHATE ADSORPTION BY IRON HYDROXIDES IN ESTUARIES [J].
LUCOTTE, M ;
DANGLEJAN, B .
CHEMICAL GEOLOGY, 1988, 67 (1-2) :75-83
[57]  
MACKEAGUE JA, 1965, CAN J SOIL SCI, V46, P13
[58]  
MANNHEIM FT, 1975, J SEDIMENT PETROL, V45, P243
[59]   INTERSTITIAL WATER CHEMISTRY OF ANOXIC LONG-ISLAND SOUND SEDIMENTS .2. NUTRIENT REGENERATION AND PHOSPHATE REMOVAL [J].
MARTENS, CS ;
BERNER, RA ;
ROSENFELD, JK .
LIMNOLOGY AND OCEANOGRAPHY, 1978, 23 (04) :605-617
[60]  
MEHRA OP, 1960, 7 NAT C CLAYS CLAY M, P317