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| Determination of lead in radix astragali by solid suspension sampling-graphite furnace atomic absorption spectrometry |
| Zhu Xiaomin1,Liu Yueying2,Liu Weijie1,Hu Fengxi1 |
| 1. Handan College,Handan 056005,China; 2. No.1 Experimental Middle School of Yongnian District of Handan City,Handan 057150, China |
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Abstract Lead content in radix astragali was directiy determined by using solid suspension sampling and graphite furnace atomic absorption spectrometry(GFAAS). During the experiment, through the research on the suspension, lead standard solution and ashing rules of radix astragali, the method of matrix modifier was chose with no loss of lead, increasing ashing temperature and reducing the background absorption as the premise. The optimum experimental conditions are 0.5% Mg-(NO3)2 and 0.2% NH4H2PO4 can be used as the matrix modifier of radix astragali suspension, ashing temperature is 750 ℃. Under the optimum conditions, the content of lead in radix astragali is 5.33 mg/kg, the detection limit is 0.26 ng/mL, and the recovery is from 96%~ 99%.The method provides a basis for the selection of matrix modifier using the solid suspension sampling- GFAAS.
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| [ 1 ] 张 淏. 浅谈中药黄芪的化学成分及药理作用[J].当代医药论丛,
2015,13(12):45-46.
[ 2 ] 邓世林,李新凤,邓富良.固体悬浮液进样石墨炉原子吸收法
测定茶叶中的微量镉 [J]. 食品科学,2011,25(2):141-143.
[ 3 ] 卢桂萍,汪 正,邱德仁,等.悬浮液进样石墨炉原子吸收光
谱分析进展[J].光谱学与光谱分析,2010, 30(8):2 253-2 259.
[ 4 ] 苏耀东,王中平,倪亚明,等.悬浮液进样石墨炉原子吸收测
定痕量铅[J].分析化学, 2000,28(5):660.
[ 5 ] Silvera Scaccia, Roberta Mecozzi. Trace Cd, Co, and Pb elements
distribution during Sulcis coal pyrolysis: GFAAS determination with
slurry sampling technique[J].Microchemical Journal, 2012, 100:
48-54.
[ 6 ] Paula Martin de Moraes, Rafael Brunner Milantonio, Gustavo Salustiano
Cagnani, et al, Analytical procedure based on slurry sampling for
determining selenium in organic vegetable samples by graphite
furnace atomic absorption spectrometry[J].Eur Food Res Technol,
2009(229):409-414.
[ 7 ] 陈恒初,刘汉东,汤志勇,等,悬浮液进样平台石墨炉原子
吸收光谱法测定生物样品中痕量铅[J].光谱实验室,1998,15
(1):44-46.
[ 8 ] 傅学起,杨 树.电热原子吸收悬浊液进样法测定煤飞灰中的
铅[J].光谱学与光谱分析,1997,17(5):98-102.
[ 9 ] 刘红望,潘振球,冯家力.石墨炉原子吸收法直接测定奶粉中
铅镉含量[J].光谱学与光谱分析,1997,17(3):82-85.
[10] 邓世林,李新凤, 周 平,等. 固体进样平台石墨炉原子吸
收直接测定土壤中铅和镉[J]. 光谱学与光谱分析, 1996, 16
(3):106-110.
[11] 傅学起,罗立斌,邱元亨.电热原子吸收悬浊液进样法测定米
粉中镉[J].分析化学,1995,23(9):1 109.
[12] 胡庆兰. 悬浮液进样石墨炉原子吸收光谱测定贻贝中铅、镉
和铜[J].分析化学, 1991, 19(8):908-910.
[13] 袁智能,单孝全,倪哲明.悬浮液进样石墨炉原子吸收测定环
境样品中铊和镉[J].环境化学,1987,6(3):32-36.
[14] 邵 坤,易建春,雷 勇,等,悬浮液进样-基体改进石墨炉
原子吸收法直接测定松香中微量砷[J].分析科学学报,2013,29
(4):569-572.
[15] 卢桂萍,汪 正,邱德仁,等.悬浮液进样自吸扣背景石墨炉
原子吸收光谱法测定高纯氧化铝中铜、铁和钠含量[J].光谱学
与光谱分析,2011,31(1):244-248.
[16] 陈尚龙,刘全德,李 超,等.微乳液直接进样-石墨炉原子
吸收光谱法测定食用油中的锰[J].食品科学,2011,32(18):
278-281.
[17] 孙汉文,温晓华,梁淑轩.悬浮体进样-基体改进效应石墨炉
原子吸收光谱法直接测定土壤中的铅和镉[J].光谱学与光谱
分析,2006,26(5):950-954. |
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