期刊文献+

西宁盆地坡缕石粘土对Cd^(2+)吸附性能研究 被引量:2

Study on the Adsorption of Cd^(2+) Onto the Palygorskite Clay in Xining Basin
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摘要 试验研究了西宁盆地坡缕石粘土对Cd2+的吸附性能,考察了改性方法、搅拌时间、粘土投加量、吸附温度、溶液初始浓度等因素对吸附效果的影响。结果表明,采用Na2CO3改性时,Na2CO3与粘土最佳配比为3∶100;吸附的适宜条件为:搅拌时间50min、粘土投加量1.5g/100mL Cd2+溶液、吸附温度20℃;在试验的浓度范围内,Cd2+在粘土上的吸附规律符合Langmuir等温模型。西宁盆地坡缕石粘土对Cd2+具有较好的吸附性能,粘土投加量为每100mL Cd2+溶液2.5g时,处理后溶液中Cd2+含量下降到0.1mg/L以下,符合GB8796-1996第一类污染物最高排放标准。 In this paper the adsorption of Cd^2+ onto the palygorskite clay in Xining basin was studied.The adsorption effects were investigated comprehensively by varying the modified methods,stirring time,clay dosage,adsorption temperature and initial solutions concentration etc.The results showed that,using Na2CO3 modifying the clay,the best ratio for Na2CO3 and clay is 3:100.The appropriate adsorption conditions were that stirring time of 50min,clay dosage of 1.5g/100mL and adsorption temperature of 20℃.In the range of experimental concentration,the adsorption of Cd^2+ onto the clay was consistent with Langmuir isotherm.The content of Cd^2+ in the treated solution was under 0.1mg/L when the clay dosage was 2.5g/100g.This result meets the standard GB8796-1996 for treating first class pollutants.
出处 《中国非金属矿工业导刊》 2011年第2期42-44,55,共4页 China Non-Metallic Minerals industry
基金 教育部国家大学生创新实验计划(081074301) 青海省科技攻关项目(2008-G-109)
关键词 坡缕石粘土 Cd2+ 吸附性能 西宁盆地 palygorskite clay Cd^2+ adsorption Xining basin
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  • 1李国亭,高如琴,王斌斌,武中钰,马帅飞,张玉迪.硅藻土催化超声协同降解亚甲基蓝的效能[J].硅酸盐学报,2015,43(4):488-492. 被引量:3
  • 2王红艳,张艳,周守勇,张莉莉,赵宜江.硫酸改性凹凸棒粘土的性能表征及吸附PbⅡ工艺研究[J].淮阴师范学院学报(自然科学版),2005,4(1):47-50. 被引量:36
  • 3吴云.凹凸棒和硅胶分离富集重金属及其应用研究[D].辽宁:辽宁科技大学,2012. 被引量:2
  • 4Zhang Y, Wang W B, Zbang J P, et al. A comparative study about adsorption of natural palygorskite for methylene blue [J].Chemical Engineering Journal,2015,262:390-398. 被引量:1
  • 5Tao L, Li Y N, Zhao Y Q, et al. International conference on computer science and electronic technology[C].China: Atlantis Press,2015. 被引量:1
  • 6Chi Y L, Chen Y T, Liu X, et al. Impact of environmental conditions on the sorption behavior ofPb ( II ) onto attapulgite [J].Journal of Radioanalytieal and Nuclear Chemistry,2013,295(2): 1589-1596. 被引量:1
  • 7Liu H B, Chen T H, Chang D Y, et al. Effect ofrehydration on structure and surface properties of thermally treated palygorskite [J]. Joumal of Colloid and Interface Science,2013,393:87-91. 被引量:1
  • 8Xavier K C M, Santos M S F, Santos M R M C, et al. Effects of acid treatment on the clay palygorskite: XRD, surface area morphological and chemical composition[J].Materials Research,2014,17:3-8. 被引量:1
  • 9Deng Y, Wu F, Liu B, et al. Sorptive removal offl-blocker propranolol from aqueous solution by modified attapulgite: Effect factors and sorption mechanisms[J].Chemical Engineering Journal,2011,174(2): 571-578. 被引量:1
  • 10Wang W B, Wang F F, Kang Y R, et al. Enhanced adsorptive removal of methylene blue fom aqueous solution by alkali-Activated palygorskite[J].Water Air Soil Pollution,2015,226:83. 被引量:1

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