摘要
报道了微晶萘负载 1 -苯基 -3-甲基 -4 -苯甲酰基 -5-吡唑酮 ( PMBP)微型柱分离预富集与电热蒸发 -电感耦合等离子体原子发射光谱 ( ETV-ICP-AES)联用测定痕量稀土元素 ( Sc,Y,La和 Yb)的新方法 .试验了影响分离 /预富集待测物的各种因素 (包括溶液酸度、流速、试样体积、微柱尺寸 ) ;研究了吸附有待测物的微晶萘的溶解方法及共存元素对分离 /测定的影响 .在优化的实验条件下 ,方法的相对检出限为 1 4 pg/m L( Sc) ,32 pg/m L( Y) ,1 90 pg/m L( La)和 2 6pg/m L ( Yb) ,相对标准偏差 ( RSD)分别为 3.1 % ,3.5% ,4 .8%和 3.4 % ( n=9,c=1 0 ng/m L) .本法已成功地应用于生物样品中痕量稀土元素 ( Sc,Y,La和 Yb)的测定 ,结果满意 .
A sensitive and rapid method for electrothermal vaporization inductively coupled plasma atomic emission spectrometry determination of rare earth elements(Sc, Y, La and Yb) after separation/preconcentration by a micro column packed with immobilized 1 phenyl 3 methyl 4 bonzoyl 5 pyrazone on microcrystalline naphthalene has been developed. Various influencing factors, such as the acidity of the aqueous solution, flow rate, volume of the sample, dimension of the micro column were investigated in detail. It was found that acetone could be used to dissolve the adsorbed material packed in micro column. The detection limits for ETV ICP AES determinations of Sc, Y, La and Yb with PMBP as a chemical modifier are 14, 32, 190 and 26 pg/mL. The relative standard deviations were 3.1%, 3.5%, 4.8% and 3.4% for Sc, Y, La and Yb, respectively ( n =9, c =10 ng/mL). The Sc, Y, La and Yb contents in a standard reference material of GBW07602(GSV 2) and a real tea sample determined by the proposed method are satisfactory.
出处
《高等学校化学学报》
SCIE
EI
CAS
CSCD
北大核心
2000年第11期1647-1650,共4页
Chemical Journal of Chinese Universities
基金
国家自然科学基金! (批准号 :2 9875 0 2 2 )
武汉市晨光计划项目
关键词
PMBP
固相萃取
稀土元素
痕量分析
ETV-ICP-AES
Phenyl 3 methyl 4 bonzoyl 5 pyrazone
Rare earth elements
Microcrystalline naphthalene
Electrothermal vaporization inductively coupled plasma atomic emission spectrometry