pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响

高思佳, 王昌辉, 裴元生. pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响[J]. 环境工程学报, 2013, 7(9): 3263-3269.
引用本文: 高思佳, 王昌辉, 裴元生. pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响[J]. 环境工程学报, 2013, 7(9): 3263-3269.
Gao Sijia, Wang Changhui, Pei Yuansheng. Effect of pH on adsorption kinetics of different phosphate species by raw and activated ferric-alum water treatment residuals[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3263-3269.
Citation: Gao Sijia, Wang Changhui, Pei Yuansheng. Effect of pH on adsorption kinetics of different phosphate species by raw and activated ferric-alum water treatment residuals[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3263-3269.

pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响

  • 基金项目:

    国家自然科学基金资助项目(50979007)

    国家"863"高技术研究发展计划项目(2008AA06Z301)

  • 中图分类号: X703

Effect of pH on adsorption kinetics of different phosphate species by raw and activated ferric-alum water treatment residuals

  • Fund Project:
  • 摘要: 实验研究了300℃热活化前后的给水厂废弃铁铝泥(R-FARs和H300-FARs)对正磷酸盐、聚磷酸盐和有机磷酸盐的吸附动力学特性,并考察pH对不同磷吸附动力学的影响。结果表明,pH对不同磷吸附动力学过程的影响趋势相似,即低pH有利于吸附。准二级动力学模型能够更真实地反映不同磷在R-FARs和H300-FARs的吸附动力学行为,由拟合结果可知焦磷酸盐和六肌醇磷酸盐的初始吸附速率相对较大,而甘油磷酸盐最小;且活化作用明显提高了不同磷的初始吸附速率,并减弱了pH对初始吸附速率的影响。不同磷的吸附速率受到液膜扩散、颗粒内扩散和吸附反应三者共同控制,其中吸附反应是主要的控制步骤。
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    [2] Reitzel K., Ahlgren J., DeBrabandere H, et al. Degradation rates of organic phosphorus in lake sediment. Biogeochemistry, 2007, 82(1): 15-28
    [3] Ippolito J.A., Barbarick K.A., Elliott H.A. Drinking water treatment residuals: A review of recent uses. J. Environ. Qual., 2011, 40(1): 1-12
    [4] Mortula M.M., Gagnon G.A. Alum residuals as a low technology for phosphorus removal from aquaculture processing water. Aquacult. Eng., 2007, 36(3): 233-238
    [5] Wang C.H., Guo W., Tian B.H., et al. Characteristics and kinetics of phosphate adsorption on dewatered ferric-alum residuals. J. Environ. Sci. and Heal., A, 2011, 46(14): 1-8
    [6] Gibbons M.K., Gagnon G.A. Understanding removal of phosphate or arsenate onto water treatment residual solids. J. Hazard. Mater., 2011, 186(2-3): 1916-1923
    [7] Karaca S., Gürses A., Ejder M., et al. Adsorptive removal of phosphate from aqueous solutions using raw and calcinated dolomite. J. Hazard. Mater. B, 2006, 128(2-3): 273-279
    [8] Gan F.Q., Zhou J.M., Wang H.Y., et al. Removal of phosphate from aqueous solution by thermally treated natural palygorskite. Water Res., 2009, 43(11): 2907-2915
    [9] Wang C.H., Gao S.J., Wang T.X., et al. Effectiveness of sequential thermal and acid activation on phosphorus removal by ferric and alum water treatment residuals. Chemical Eng. J., 2011, 172(2-3), 885-891
    [10] 高思佳, 王昌辉, 裴元生. 热活化和酸活化给水处理厂废弃铁铝泥的吸磷效果. 环境科学学报, 2012, 32(3): 606-611 Gao S.J., Wang C.H., Pei Y.S. Effects of phosphate removal by thermal-and acid-activated ferric and alum water treatment residuals. Acta Scientiae Cirumstantiae, 2012, 32(3): 606-611 (in Chinese)
    [11] Razali M., Zhao Y.Q., Bruen M. Effectiveness of a drinking-water treatment sludge in removing different phosphorus species from aqueous solution. Sep. Purif. Technol., 2007, 55(3): 300-306
    [12] Wang C.H., Wang Z.Y. Lin L., et al. Effect of low molecular weight organic acids on phosphorus adsorption by ferric-alum water treatment residuals. J. Hazard. Mater., 2012, (203-204): 145-150
    [13] Wang C.H., Fei C.B., Pei Y.S. Stability of P saturated water treatment residuals under different levels of dissolved oxygen. Clean-Soil Air Water, 2012. DOI 10.1002/clen.201100663
    [14] Altundoğan H.S., Tümen F. Removal of phosphates from aqueous solutions by using bauxite II: the activation study. J. Chem. Technol. Biot., 2003, 78(7), 824-833
    [15] Li C., Guan X.H. Competitive adsorption of three different phosphate species on aluminum hydroxide. Fresen. Environ. Bull., 2011, 20(8), 1936-1941
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    [17] Babatunde A.O., Zhao Y.Q. Equilibrium and kinetic analysis of phosphorus adsorption from aqueous solution using waste alum sludge. J. Environ. Qual., 2010, 184(1-3): 746-752
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    [20] 刘宝河, 孟冠华, 陶冬民, 等. 污泥吸附剂对3种染料吸附动力学的研究. 环境工程学报, 2011, 5(1): 95-99 Liu B.H., Meng G.H., Tao D.M., et al. Kinetics of adsorption of three dyes by sludge-based adsorbent. Chinese Journal of Environmental Engineering, 2011, 5(1): 95-99 (in Chinese)
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  • 收稿日期:  2012-07-10
  • 刊出日期:  2013-09-15
高思佳, 王昌辉, 裴元生. pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响[J]. 环境工程学报, 2013, 7(9): 3263-3269.
引用本文: 高思佳, 王昌辉, 裴元生. pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响[J]. 环境工程学报, 2013, 7(9): 3263-3269.
Gao Sijia, Wang Changhui, Pei Yuansheng. Effect of pH on adsorption kinetics of different phosphate species by raw and activated ferric-alum water treatment residuals[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3263-3269.
Citation: Gao Sijia, Wang Changhui, Pei Yuansheng. Effect of pH on adsorption kinetics of different phosphate species by raw and activated ferric-alum water treatment residuals[J]. Chinese Journal of Environmental Engineering, 2013, 7(9): 3263-3269.

pH对活化前后废弃铁铝泥吸附不同种磷动力学的影响

  • 1. 北京师范大学环境学院, 教育部水沙科学重点实验室, 北京 100875
基金项目:

国家自然科学基金资助项目(50979007)

国家"863"高技术研究发展计划项目(2008AA06Z301)

摘要: 实验研究了300℃热活化前后的给水厂废弃铁铝泥(R-FARs和H300-FARs)对正磷酸盐、聚磷酸盐和有机磷酸盐的吸附动力学特性,并考察pH对不同磷吸附动力学的影响。结果表明,pH对不同磷吸附动力学过程的影响趋势相似,即低pH有利于吸附。准二级动力学模型能够更真实地反映不同磷在R-FARs和H300-FARs的吸附动力学行为,由拟合结果可知焦磷酸盐和六肌醇磷酸盐的初始吸附速率相对较大,而甘油磷酸盐最小;且活化作用明显提高了不同磷的初始吸附速率,并减弱了pH对初始吸附速率的影响。不同磷的吸附速率受到液膜扩散、颗粒内扩散和吸附反应三者共同控制,其中吸附反应是主要的控制步骤。

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