天然斜发沸石的氨氮改性吸附与化学再生

张新颖, 余杨波, 王美银, 许冉冉, 李杰. 天然斜发沸石的氨氮改性吸附与化学再生[J]. 环境化学, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302
引用本文: 张新颖, 余杨波, 王美银, 许冉冉, 李杰. 天然斜发沸石的氨氮改性吸附与化学再生[J]. 环境化学, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302
ZHANG Xinying, YU Yangbo, WANG Meiyin, XU Ranran, LI Jie. Modification and chemical regeneration of natural clinoptilolite for ammonium nitrogen adsorption[J]. Environmental Chemistry, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302
Citation: ZHANG Xinying, YU Yangbo, WANG Meiyin, XU Ranran, LI Jie. Modification and chemical regeneration of natural clinoptilolite for ammonium nitrogen adsorption[J]. Environmental Chemistry, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302

天然斜发沸石的氨氮改性吸附与化学再生

  • 基金项目:

    福州大学科技发展基金(2012-XQ-16)资助.

Modification and chemical regeneration of natural clinoptilolite for ammonium nitrogen adsorption

  • Fund Project: Supported by Fuzhou University Science and Technology Ddevelopment Fund (2012-XQ-16).
  • 摘要: 本文采用改性与化学再生方法,探索天然斜发沸石对氨氮吸附的最佳改性及化学再生条件.无机盐改性、热改性、有机改性试验结果表明,最佳改性方法为无机盐NaCl法,改性沸石吸附量较天然沸石提升了近20%,最佳NaCl浓度为1 mol·L-1;热改性法不能显著提高沸石的氨氮吸附容量,相反高温会破坏其结构;十二烷基苯磺酸钠改性法可以使改性沸石在其表面形成了新的阳离子吸附点,使其吸附性能提升;而十六烷基三甲基溴化铵改性沸石表面形成的是阴离子吸附点,对带正电的NH4+会产生排斥,导致其吸铵性能下降.化学再生试验表明,KCl溶液对铵饱和沸石的再生效果最显著,适宜再生浓度为0.1-0.2 mol·L-1.经KCl再生后的沸石再次通过NaCl改性,可延长沸石使用周期以及提高再生沸石的吸附能力.
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  • [1] 张翠玲, 常青, 张家利, 等. 天然沸石对农田退水中氨氮的去除[J]. 环境化学, 2012, 31(7): 1063-1068.

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    TONG X W, ZHU Y N. Experimental study on the modification of natural stllerite and its removal of ammonia nitrogen from water[J]. Chinese Journal of Environmental Engineering, 2009, 3(4): 635-638(in Chinese).

    [5] 江乐勇,林海.盐热改性沸石去除氨氮的性能研究[J]. 水处理技术,2010,36(8):25-32.

    JIANG L Y, LIN H. Performance study of NH4+-N removal by using salt and thermal modified zeolite[J].Technology of Water Treatment,2010,36(8):25-32(in Chinese).

    [6] 丁真贞, 孟绫, 董建勋, 等. 改性斜发沸石处理高浓度氨氮废水[J]. 环境化学, 2012, 31(8), 1233-1237.

    DING Z Z, MENG L, DONG J X, et al. Removal of ammonnia-nitrogen in simulated NH4+-N wastewater with modified clinoptilolite[J]. Environmental chemistry, 2012, 31(8), 1233-1237(in Chinese).

    [7] 孙同喜, 郑萌璐, 蒋轶锋, 等. NaCl改性沸石对氨氮吸附性能的研究[J]. 环境污染与防治, 2010, (10): 46-50. SUN T X, ZHENG M L,JIANG Y F, et al. Effect of NaCl modification on ammonia-nitrogen adsorption property of zeolite[J]. Environmental Pollution & Control, 2010

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    [8] LIN L, LEI Z, WANG L, et al. Adsorption mechanisms of high-levels of ammonium onto natural and NaCl-modified zeolites[J]. Separation and purification technology, 2013, 103: 15-20.
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    ZHANG D F,WANG R P,LV J,et al.Experiment on polluted scenic reclaimed-water by modif ied zeol ite and biof ilm system[J].Journal of Water Resources & Water Engineering,2008,19(5):1-5(in Chinese).

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出版历程
  • 收稿日期:  2015-11-23
  • 刊出日期:  2016-05-15
张新颖, 余杨波, 王美银, 许冉冉, 李杰. 天然斜发沸石的氨氮改性吸附与化学再生[J]. 环境化学, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302
引用本文: 张新颖, 余杨波, 王美银, 许冉冉, 李杰. 天然斜发沸石的氨氮改性吸附与化学再生[J]. 环境化学, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302
ZHANG Xinying, YU Yangbo, WANG Meiyin, XU Ranran, LI Jie. Modification and chemical regeneration of natural clinoptilolite for ammonium nitrogen adsorption[J]. Environmental Chemistry, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302
Citation: ZHANG Xinying, YU Yangbo, WANG Meiyin, XU Ranran, LI Jie. Modification and chemical regeneration of natural clinoptilolite for ammonium nitrogen adsorption[J]. Environmental Chemistry, 2016, 35(5): 1058-1066. doi: 10.7524/j.issn.0254-6108.2016.05.2015112302

天然斜发沸石的氨氮改性吸附与化学再生

  • 1. 福州大学环境与资源学院, 福州, 350108
基金项目:

福州大学科技发展基金(2012-XQ-16)资助.

摘要: 本文采用改性与化学再生方法,探索天然斜发沸石对氨氮吸附的最佳改性及化学再生条件.无机盐改性、热改性、有机改性试验结果表明,最佳改性方法为无机盐NaCl法,改性沸石吸附量较天然沸石提升了近20%,最佳NaCl浓度为1 mol·L-1;热改性法不能显著提高沸石的氨氮吸附容量,相反高温会破坏其结构;十二烷基苯磺酸钠改性法可以使改性沸石在其表面形成了新的阳离子吸附点,使其吸附性能提升;而十六烷基三甲基溴化铵改性沸石表面形成的是阴离子吸附点,对带正电的NH4+会产生排斥,导致其吸铵性能下降.化学再生试验表明,KCl溶液对铵饱和沸石的再生效果最显著,适宜再生浓度为0.1-0.2 mol·L-1.经KCl再生后的沸石再次通过NaCl改性,可延长沸石使用周期以及提高再生沸石的吸附能力.

English Abstract

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