期刊文献+

电气石微粉吸附水体中金属离子及其机理分析 被引量:3

Tourmaline Powder Absorption for Metal Ion in Waste Water and its Mechanism Analysis
在线阅读 下载PDF
导出
摘要 研究了电气石微粉吸附水中Cu2+、Pb2+、Zn2+的过程,讨论了吸附时间、粒度、用量和pH值等因素对吸附效果的影响,分析了电气石对含Cu2+、Pb2+、Zn2+废水的吸附机理。电气石加工成超细粉体时,表面产生大量的不饱和键,在溶液中与水配位,使水发生解离生成羟基化表面,将重金属离子吸附到晶体负极,使局部金属离子浓度增高与电气石表面羟基离解而产生的氢氧根离子发生反应,形成各种沉淀或碱式盐析出,直到溶液中各种离子浓度达到平衡时为止。提出了凡是氢氧化物难溶于水的金属离子,理论上都可以使用电气石微粉进行吸附净化处理的观点。研究结果表明,电气石微粉对Cu2+、Pb2+、Zn2+有较好的吸附效果。 The process of tourmaline powder absorption of Cu2+、Pb2+、Zn2+ in waste water is studied.The effect of absorption time,diameters,quantity of tourmaline and pH value on the absorption is discussed.The mechanism of the absorption of Cu2+、Pb2+、Zn2+ in waste water by tourmaline powder is analyzed.When tourmaline is processed into superfine power,a large number of unsaturated bonds appear on the surface.They coordinate with water and form a hydroxylated surface that can cause the absorbed metal ions to react with OH-and to precipitate on it until the concentration of each ion achieves balance.We propose that tourmaline powder can be used to absorb metal ions whose hydroxide is insoluble in water.The study result indicates that tourmaline powder has good absorbing effect for Cu2+、Pb2+、Zn2+.
出处 《上海地质》 2010年第4期79-82,共4页
关键词 电气石 吸附 金属离子 PH值 废水净化 tourmaline absorption metal ions pH value wastewater treatment
  • 相关文献

参考文献11

二级参考文献60

  • 1王登红,陈毓川.广西大厂电气石的成分与成因初探[J].岩石矿物学杂志,1996,15(3):280-287. 被引量:17
  • 2张良钜.碧玺的宝石学特征[J].桂林工学院学报,1996,16(3):291-297. 被引量:8
  • 3李正中.固体理论[M].北京:高等教育出版社,1987.234.
  • 4王实.中国宝玉石资源大全[M].北京:科学技术文献出版社,1998.266-279.
  • 5Nakamura T. Kubo T. The tourmaline group crystals reaction with water[J]. Ferroelectrlcs. 1992,137: 13 - 31.
  • 6寥自基等.环境中微量重金属元素的污染危害与迁移与转化[M].北京:科学出版社,1989,2.
  • 7Phlip L Geissler. Christoph Dellago. David Chandler, et al.Autoionization in liquid water[ J ]. science. 2001,291 ( 55111 ) : 2121-2126.
  • 8[1]Nakamura T, Kubo T. The tourmallne group crystals reaction with water. Ferroelectrics. 1992,137:13~ 31
  • 9[4]魏复胜,洪水皆,等.水和废水监测分析方法指南.北京:环境科学出版社,1990
  • 10[5]Phlip L Geissler. Christoph Dellago. David Chandler, et al. Autoionization in liquid water . science, 2001,291 (55111): 2 121 ~2 126

共引文献117

同被引文献41

  • 1夏枚生,许梓荣,张红梅,胡彩虹.电气石对液态水团簇和沼泽红假单胞菌脱氢酶活性的影响[J].硅酸盐学报,2005,33(8):1006-1011. 被引量:18
  • 2潘艳芬,梁金生,欧秀芹,孟军平,梁广川,明星.电气石远红外辐射对水表面张力的影响[J].硅酸盐学报,2006,34(5):580-584. 被引量:13
  • 3姚志通,夏枚生,张红梅,胡彩虹.电气石对硝化菌生长和生物膜形成、熟化的影响[J].水产科学,2007,26(8):461-464. 被引量:5
  • 4VAN HINSBERG V J, HENRYD J, MARSCHALL H R. Tourmaline,an ideal indicator of its host environment[J']. The Canadian Mineralogist, 2011,49 (2) 1-16.
  • 5YAMAGUCHI S. Surface electric fields of tourmaline[-J. Ap- plied Physics A,1983,31(4) .183-185.
  • 6NAKAMURA T, KUBO T. Tourmaline group crystals reac- tion with water[J]. Ferroelectrics, 1992,137(1) . 13-31.
  • 7XIA Meisheng, HU Caihong, ZHANG Hongmei. Effects of tourmaline addition on the dehydrogenase activity of Rhodop- seudomonas palustri [JS. Process Biochemistry, 2006,41 ( 1 ) 221-225.
  • 8JIN Zongzhe,JI Zhijiang, LIANG Jinsheng, et al. Observation of spontaneous polarization of tourmaline[J]. Chinese Physics, 2003,12(2) . 222-225.
  • 9YAVUZ F. TOURMAL, software package for tourmaline, tourmaline-rich rocks and related ore deposits[J]. Computers Geoseiences, 1997,23(9) . 947-959.
  • 10WANG C P,WU J Z,SUN H W,et al. Adsorption of Pb( II ) ion from aqueous solutions by tourmaline as a novel adsorbent [J]. Industrial Engineering Chemistry Research, 2011,50 (14) 8515-8523.

引证文献3

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部