首页 | 本学科首页   官方微博 | 高级检索  
     检索      

磁性聚电解质多层膜固相萃取-火焰原子吸收光谱法测定水样中的三价铬
引用本文:马玉龙,向国强,王搏,江秀明.磁性聚电解质多层膜固相萃取-火焰原子吸收光谱法测定水样中的三价铬[J].化学研究,2014(2):144-147.
作者姓名:马玉龙  向国强  王搏  江秀明
作者单位:河南工业大学化学化工学院,河南郑州450001
基金项目:河南省科技厅基础与前沿技术研究项目(112300410080).
摘    要:将聚电解质多层膜组装于磁性硅胶表面得到新型吸附剂;将该新型吸附剂用于磁性固相萃取(MSPE),并与火焰原子吸收光谱检测联用分析水样中的Cr3+;优化了样品的pH、洗脱条件和超声时间等影响MSPE萃取效率的参数.结果表明,在优化的测试条件下,该方法的检出限(3σ)为1.7μg·L-1,相对标准偏差为2.1%,富集倍数为15.9,可用于测定合成水样中的Cr3+.

关 键 词:聚电解质多层膜  磁性固相萃取  原子吸收光谱  三价铬  测定

Determination of trivalent chromium in water by magnetic polyelectrolyte multilayer solid phase extraction-flame atomic absorption spectrometry
MA Yulong,XIANG Guoqiang",WANG Bo,JIANG Xiuming.Determination of trivalent chromium in water by magnetic polyelectrolyte multilayer solid phase extraction-flame atomic absorption spectrometry[J].Chemical Research,2014(2):144-147.
Authors:MA Yulong  XIANG Guoqiang"  WANG Bo  JIANG Xiuming
Institution:(School of Chemistry and Chemical Engineering, Henan University of Technology, Zhengzhou 450001, Henan, China)
Abstract:Polyelectrolyte multilayers were assembled on the surface of magnetic silica gel to form a novel sorbent. As-obtained novel sorbent was used for magnetic solid phase extraction (MSPE) and combined flame atomic absorption spectrometry to determine Cr3+ in water. The experimental parameters including pH value of the water sample, elution condition, and ultra- sonic irradiation time were optimized in relation to their effects on the extraction efficiency of MSPE. Results indicate that, under the optimized testing condition, the limit of detection (3a) of the established method is 1.7 g .L-1, the relative standard deviation is 2.1, and the en- richment factor is 15.9. The present method has been successfully applied to the determination of trace Cr3+ in synthetic water samples.
Keywords:polyeleetrolyte multilayers magnetic solid phase extraction  flame atomic absorp- tion spectrometry  trivalent chromium  determination
本文献已被 CNKI 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号