Cui Shuangchao, Ding Aizhong, Pan Chengzhong, Li Changjia, Yan Zhenghong, Liu Yihui, Hao Lifen. Effect of sediment physicochemical properties on phosphorus sorption for different size particles[J]. Chinese Journal of Environmental Engineering, 2013, 7(3): 863-868.
Citation: Cui Shuangchao, Ding Aizhong, Pan Chengzhong, Li Changjia, Yan Zhenghong, Liu Yihui, Hao Lifen. Effect of sediment physicochemical properties on phosphorus sorption for different size particles[J]. Chinese Journal of Environmental Engineering, 2013, 7(3): 863-868.

Effect of sediment physicochemical properties on phosphorus sorption for different size particles

  • Received Date: 11/02/2012
    Accepted Date: 17/11/2011
    Available Online: 18/03/2013
    Fund Project:
  • The surface sediments samples were collected from Nanhaizi Lake in Beijing. The phosphorus sorption behaviors on four particle size sediments including 0.147~0.246 mm(fine sand), 0.074~0.147 mm (very fine sand),0.0385~0.0740 mm(silt),R2 of>0. 90). The maximum sorption mass (Xm) of different size particles was in the order of silt and clay>silt>fine sand>very fine sand. The content of OM, TP, Fe, Ca, Al and Mn increased with the decreasing particle size and the fraction of clay particles had more important effect on them than other particles. There was a significantly positive correlation (PXm and equilibrium concentration (Cse) on the sediments. These results indicate that the phosphorus sorption could be jointly affected by both sediment particle size and chemical composition.
  • [1] Withers P. J. A., Jarvie H. P. Delivery and cycling of phosphorus in rivers: A review. Sci. Total. Environ.,2008,400(1-3): 379-395

    Google Scholar Pub Med

    [2] 张宪伟,潘纲,王晓丽,等. 内蒙古段黄河沉积物对磷的吸附特征研究. 环境科学,2009,30(1):172-177 Zhang. X. W., Pan. G., Wang X. L., et al. Characteristics of phosphorus sorption on yellow river sediments from Inner Mongolia reach. Environmental Science,2009,30(1):172-177 (in Chinese)

    Google Scholar Pub Med

    [3] Pan G., Michael D. K., Barak H. Adsorption-desorption of phosphate on airborne dust and riverborne particulates in east Mediterranean Seawater. Eviron.Sci.Technol,2002,36(16):3519-3524

    Google Scholar Pub Med

    [4] Ozacar M. Equilibrium and kinetic modeling of adsorption of phosphorus on calcined alunite. Adsorption,2003,9(2):125-132

    Google Scholar Pub Med

    [5] Chien S. H., Clayton W. R. Application of elovich equation to the kinetics of phosphate release and sorption in soils. Soil Science Society of America Journal,1980,44(2):265-268

    Google Scholar Pub Med

    [6] 吕平毓,黄文典,李嘉. 河流悬移质对含磷污染物吸附试验研究. 水利水电技术,2005,36(10):93-96 Lü P. Y., Huang W. D., Li J. Study on adsorption experiment for phosphorous pollutant with suspended sediment. Water Resources and Hydropower Technology,2005,36(10):93-96(in Chinese)

    Google Scholar Pub Med

    [7] 袁东海,张孟群,高士祥,等. 几种粘土矿物和粘粒土壤吸附净化磷素的性能和机理. 环境化学,2005,24(1):7-11 Yuan D. H., Zhang M. Q., Gao S.X. The abilities and mechanisms of adsorption phosphorus in some clay minerls and soils. Environmental Chemistry,2005,24(1):7-11(in Chinese)

    Google Scholar Pub Med

    [8] 金相灿,屠清瑛. 湖泊富营养化调查规范(第2版). 北京:中国环境科学出版社,1990

    Google Scholar Pub Med

    [9] 周孝德,韩世平,陈惠君. 环境因素对滇池底泥磷吸附的影响. 水利学报,1998,(增刊):12-17 Zhou X. D., Han S. P., Chen H. J. The influences of environmental factors on phosphate sorption by sediments in lake Dianchi. Journal of Hydraulic Engineering,1998,(supplement): 12-17(in Chinese)

    Google Scholar Pub Med

    [10] 王圣瑞,金相灿,赵海超,等. 湖泊沉积物物中水溶性有机质对吸附磷的影响. 土壤学报,2005,42(5):806-808 Wang S. R., Jin X. C., Zhao H. C. Effect of DOM on phosphate sorption in lake sediments. Acta Pedologica Sinica,2005,42(5):806-808(in Chinese)

    Google Scholar Pub Med

    [11] Stone M., Mudroch A. Effect of Particle-size, chemistry and mineralogy of river sediments on Phosphate adsorption. Environmental Technology Letters,1989,10(5):501-510

    Google Scholar Pub Med

    [12] Stone P. M., Walling D. E. The particle-size selectivity of sediment mobilization from Devon Hillslopes. Advances in Hillslope Processes,1996,1(2):507-527

    Google Scholar Pub Med

    [13] 王圣瑞,赵海超,周小宁,等. 五里湖与贡湖不同粒径沉积物中有机质、总氮和磷形态分布研究. 环境科学研究,2004, 17(增刊):11-14 Wang S. R., Zhao H. C., Zhou X. N., et al. Study on the organic matter,totai nitrogen and phosphorus form distribution of different particle size fractions in the sediments from Wuli Lake and Gonghu Lake. Research of Environmental Sciences,2004,17(supplement):11-14(in Chinese)

    Google Scholar Pub Med

    [14] 金相灿,王圣瑞,赵海超,等. 五里湖和贡湖不同粒径沉积物吸附磷实验研究. 环境科学研究,2004,17(增刊):6-9 Jin X. C., Wang S. R., Zhao H. C., et al. Study on the phosphate sorption of the different particle size fractions in the sediments from Wuli Lake and Gonghu Lake. Research of Environmental Sciences,2004,17(supplement):6-9(in Chinese)

    Google Scholar Pub Med

    [15] 戴纪翠,宋金明,李学刚等. 胶州湾不同形态磷的沉积记录及生物可利用性研究. 环境科学,2007,28(5):930-936 Dai J. C., Song J. M.,Li X. G., et al. Sediment record of phosphorus and the primary study of its bioavailability in Jiaozhou Bay sediment. Environmental Science,2007,28(5):930-936(in Chinese)

    Google Scholar Pub Med

    [16] Lijklema L. Interaction of ortho-phosphate with iron(III) and aluminum hydroxides. Environ. Sci. Technol.,1980,14(5):537-541

    Google Scholar Pub Med

    [17] Zhang J. Z., Huang X. L. Relative importance of solid-phase phosphorus and iron on the sorption behavior of sediments. Environ. Sci. Technol.,2007,41(8):2789-2795

    Google Scholar Pub Med

    [18] 王晓丽,潘纲,包华影,等. 黄河中下游沉积物对磷酸盐的吸附特征. 环境科学,2008,29(8):2137-2142 Wang X. L., Pan G., Bao H. Y., et al. Phosphate sorption characteristics onto sediments in the middle and lower reaches of the Yellow River. Environmental Science,2008,29(8):2137-2142(in Chinese)

    Google Scholar Pub Med

    [19] Katarina B., Erasmus O., Elisabetta B. Phosphorus sorption in relation to soil properties in some cultivated Swedish soil. Nutrient Cycling in Agroecosystems,2001,59(1):39-46

    Google Scholar Pub Med

    [20] Subramanlam V., Singh B. R. Phosphorus supplying capacity of heavily fertilized soils. 1. Phosphorus adsorption characteristics and phosphorus fractionation. Nutr Cycl Agroecosys,1997,47(2):115-122

    Google Scholar Pub Med

    [21] 刘光菘. 土壤理化性质与剖面描述. 北京:中国标准出版社,1996

    Google Scholar Pub Med

    [22] 国家环境保护总局.水和废水监测分析方法(第4版). 北京:中国环境科学出版社,2002

    Google Scholar Pub Med

    [23] 鲍士旦. 土壤农化分析. 南京:农业出版社,1986

    Google Scholar Pub Med

    [24] Chen S.H., Clayton W. R. Application of Elovich equation to the kinetics of phosphorus release and sorption in soils. Soil Science of America Journal,1980,44(1): 265-268

    Google Scholar Pub Med

    [25] Pavlatou A., Polyzopoulos N. A. The role of diffusion in the kinetics of phosphate desorption:The relevance of the Elovich equation. European Journal of Soil Science,1988,39(3):425-436

    Google Scholar Pub Med

    [26] Bergamasehi B.A., Tsamakis E., Ceil R.G., et al. The effect of grain size and surface area on organic matter, lignin and carbohydrate concentration, and molecular composition in Peru Margin sediments. Geochimica et Cosmochimica Acta,1997,61(6):1247-1260

    Google Scholar Pub Med

    [27] 朱广伟,秦伯强,高光,等. 长江中下游浅水湖泊沉积物中磷的形态及其与水相磷的关系. 环境科学学报,2004,24(3):381-388 Zhu G. W., Qin B. Q., Gao G., et al. Fractionation of phosphorus in sediments and its relation with soluble phosphorus contents in shallow lakes located in the middle and lower reaches of Changjiang River. Acta Scientiae Circumstantiae,2004,24(3):381-388(in Chinese)

    Google Scholar Pub Med

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Effect of sediment physicochemical properties on phosphorus sorption for different size particles

Fund Project:

Abstract: The surface sediments samples were collected from Nanhaizi Lake in Beijing. The phosphorus sorption behaviors on four particle size sediments including 0.147~0.246 mm(fine sand), 0.074~0.147 mm (very fine sand),0.0385~0.0740 mm(silt),R2 of>0. 90). The maximum sorption mass (Xm) of different size particles was in the order of silt and clay>silt>fine sand>very fine sand. The content of OM, TP, Fe, Ca, Al and Mn increased with the decreasing particle size and the fraction of clay particles had more important effect on them than other particles. There was a significantly positive correlation (PXm and equilibrium concentration (Cse) on the sediments. These results indicate that the phosphorus sorption could be jointly affected by both sediment particle size and chemical composition.

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