Transferable phosphorus in sediments of the Huanghe River estuary's adjacent waters

被引:6
作者
Song Jin-ming
机构
[1] Chinese Academy of Sciences,Institute of Oceanology
[2] SOA,Key Laboratory of Marine Science and Numerical Modelling
关键词
transferable phosphorus; natural grain sizes sediment; Huanghe River estuary's adjacent waters;
D O I
10.1007/BF02842793
中图分类号
学科分类号
摘要
Based on a new idea for research on cycling of marine biogenic elements, this study showed that only the leachable form phosphorus in natural grain sizes marine sediments constitutes the transferable phosphorous in the sediments. The transferable phosphorus content in the natural grain sizes surface sediments in the Huanghe River estuary adjacent waters ranges from 58.5–69.8 μg/g, accounting for only 9.1%–11.0% of the total phosphorus content, whereas the leachable form (“transferable”) phosphorus content in the sediment after it was totally ground into powder was found to be 454.8–529.2 μg/g, accounting for 73.4%–89.1% of the total phosphorus. Analysis of the correlation between the biomass of benthos and the leachable form (“transferable”) phosphorus showed that most of the leachable form (“transferable”) phosphorus in the totally ground sediment did not participate in the marine biogeochemical cycling. Furthermore, a synchronous survey on benthos showed that the biomass of meio-and macro-benthos exhibited good positive correlation with the leachable form of phosphorus in the natural grain sizes sediment, but poorer correlation with the leachable form (“transferable”) phosphorus in the totally ground sediment, indicating that transferable phosphorus in marine sediment is the leachable form of phosphorus in the natural grain sizes sediments, and is not the previously known leachable form (“transferable”) phosphorus obtained from the totally ground sediment.
引用
收藏
页码:81 / 86
页数:5
相关论文
共 25 条
  • [1] Conley D. J.(1995)Biogeochemistry of N, P and Si in Baltic Sea sediments: Response to a simulated deposition of a spring diatom bloom Mar. Ecol. Prog. Ser. 122 266-276
  • [2] Johnstone R. W.(1998)Organic geochemical studies of sinking particulate material in China sea area (I) organic matter fluxes and distributional features of hydrocarbon compounds and fatty acids Science in China (Series D) 41 208-214
  • [3] Yi Duan(1996)Controls on phosphorus concentration and accumulation in oceanic sediments Mar. Geol. 139 231-241
  • [4] Jinming Song(1994)Evidence for enhanced phosphorus regeneration from marine sediments overlain by oxygen depleted waters Geochim. Cosmochim. Acta. 58 2571-2575
  • [5] Mingzhong Cui(1992)Forms of inorganic phosphorus in the sediments near the Huanghe River estuary Oceanol. Limnol. Sin. 23 387-395
  • [6] Fillippelli G. M.(1997)Phosphorus regeneration in continental margin sediments Geochim. Cosmochim. Acta 61 2891-2907
  • [7] Ingall E.(1992)Development of a sequential extraction method for different forms of phosphorus in marine sediments Limnol. Oceanogr. 37 1460-1482
  • [8] Jahnke R.(1993)Authigenic apatite formation and burial in sediments from non-upwelling, continental margin environments Geochim. Cosmochim. Acta 57 991-1007
  • [9] Ronggen Lin(1992)Transfer model of dissolved phosphate in sediment interstitial waters of the East China Sea Mar. Environ. Sci. 11 45-51
  • [10] Jingyang Wu(1997)Biogeochemical process of major elements in sinking particulate of Nansha coral reef lagoons, South China Sea Acta Oceanol. Sin. 16 557-562