期刊文献+

稀土吸附剂处理含铬微污染水研究 被引量:5

REMOVAL OF CHROME IN SLIGHTLY POLLUTED WATER BY RARE EARTH ADSORBENT
在线阅读 下载PDF
导出
摘要 本文采用以分子筛为载体、负载镧制成复合吸附剂处理微污染水体中的铬(VI)。结果表明:研制的稀土吸附剂适于处理弱酸性废水,稀土吸附剂最大静态吸附容量达到2.1651mg/g,升高温度不利于吸附除铬。在含铬浓度为12m g/L、pH值4~6、吸附剂投加量20mg/L、水力停留时间为30min条件下,铬的去除率达99%以上,且出水pH在6~9之间。 A new adsorbent with lanthanum(Ⅲ)-loaded molecular sieve was developed to remove chromium(Ⅳ) in slightly polluted water. The resu;t showed that the rare earth elements adsorbent was suitable for purifying weak acid wastewater. The maximum Capacity of the adsorbent was 2.1651 mg/g at static state, and as temperature went up, the capacity went down quickly. Under the conditions of the solution with 12mg/L chrome, pH within 4-6, dosing the adsorbent of 20mg/L and HRT 30min, chrome removal rate could reach to over 99%, while pH of the effluent varied within 6.0-9.0.
出处 《水处理技术》 CAS CSCD 北大核心 2006年第4期43-45,52,共4页 Technology of Water Treatment
关键词 稀土 氯化镧 吸附剂 除铬 吸附 rare earth lanthanum chloride composite adsorbent chromium removal adsorption.
  • 相关文献

参考文献6

二级参考文献10

  • 1Kyotani T.[J].Carbon,2000,38(1): 269~286.
  • 2Kloetstra K R,Bekkum H V. [J]. Stud Surf Sci Catal,1997,105(2): 431~438.
  • 3Ono Y. [J]. Appl Catal A: General,1997,155(1): 133~166.
  • 4Shaikh A G. [J].Chem Rev,1996,96(3): 951~ 976.
  • 5Pacheco M A,Marshall C L. [J]. Energy Fuels,1991,11(1): 2~29.
  • 6Delledonne D,Rivetti F,Romano U. [J].Appl Catal A:Gene-ral,2001,221 (1): 241~251.
  • 7Knifton J F,Duranleau R G.[J]. J Mol Catal,1991,67(1): 389~399.
  • 8东北师范大学,华南师范大学,等. 有机化学[M]. 上册,北京:高等教育出版社,1992. 285.
  • 9Wei T,Wang M,Wei W,et al. Catalytic Behavior of Calcium Oxide for Synthesis of Dimethyl Carbonate from Propylene Carbonate and Methanol. In: Warzinski R P eds. Preprints of Symposia,Division of Fuel Chemistry,223rd ACS National Meeting[C]. Orlando: ACS,2002. 312~314.
  • 10朱建华,淳远,王英,须沁华.强碱性沸石分子筛催化材料[J].科学通报,1999,44(9):897-903. 被引量:18

共引文献68

同被引文献85

引证文献5

二级引证文献35

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