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首页> 外文期刊>Food analytical methods >Speciation of inorganic antimony in food and water samples by flow injection on-line nano gamma-alumina micro-column solid-phase extraction coupled with slotted tube atom trapping flame atomic absorption spectrometry.
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Speciation of inorganic antimony in food and water samples by flow injection on-line nano gamma-alumina micro-column solid-phase extraction coupled with slotted tube atom trapping flame atomic absorption spectrometry.

机译:流动注射在线纳米γ-氧化铝微柱固相萃取结合缝隙管原子捕集火焰原子吸收光谱法测定食品和水样中的无机锑的形态。

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摘要

Nano gamma-alumina, with ultra-high specific surface area (387.2 m2 g-1), has been synthesized and used as a promising adsorbent material in solid-phase extraction. A simple, sensitive, and economic method was developed for speciation of inorganic antimony by slotted tube atom trapping flame atomic absorption spectrometry (STAT-FAAS) after flow injection on-line nano gamma-alumina micro-column solid-phase extraction. In this method, Sb(III)-diethyldithiocarbamate (DDTC) complexes produced on-line from DDTC and Sb(III) were adsorbed by the synthesized gamma-alumina nanoparticles in a micro-column, then eluted by 1.0 mol L-1 HNO3 in methanol, whereas Sb(V) remained in aqueous solution. The total inorganic Sb was determined by the same procedure after Sb(V) was reduced with thiourea. Under optimal conditions, the enrichment factor was 56.5 and the detection sensitivity was improved 40-fold for antimony by STAT-FAAS compared to conventional FAAS. The limit of detection was 6.0 ng L-1 for Sb(III) and 8.2 ng L-1 for Sb(V), respectively. The intra-day precision (RSDs, n = 11) were 2.8 % for Sb(III) and 3.5 % for Sb(V), respectively, and the inter-day precision (n = 3) were 7.1 % for Sb(III) and 8.4 % for Sb(V), respectively. The recoveries for the spiked samples were 93-107 %. The proposed method was applied to speciation of inorganic antimony in water and food samples successfully. copyright Springer Science+Business Media New York 2012.
机译:合成了具有超高比表面积(387.2 m 2 g -1 )的纳米γ-氧化铝,并将其用作固相萃取中很有希望的吸附材料。流动注射在线纳米γ-氧化铝微柱固相萃取后,通过开缝管原子阱火焰原子吸收光谱法(STAT-FAAS),开发了一种简单,灵敏,经济的无机锑形态分析方法。在该方法中,由DDTC和Sb(III)在线生产的Sb(III)-二乙基二硫代氨基甲酸酯(DDTC)络合物被合成的γ-氧化铝纳米颗粒吸附在微柱中,然后用1.0 mol L Sup- 1 HNO 3 在甲醇中,而Sb(V)保留在水溶液中。在用硫脲还原Sb(V)之后,通过相同的步骤确定总无机Sb。在最佳条件下,与传统的FAAS相比,STAT-FAAS对锑的富集系数为56.5,检测灵敏度提高了40倍。 Sb(III)的检出限分别为6.0 ng L -1 和Sb(V)的检出限分别为8.2 ng L -1 。 Sb(III)的日内精度(RSDs,n = 11)分别为Sb(V)的3.5%和Sb(III)的日间精度(n = 3)为7.1%分别为Sb(V)和8.4%。加标样品的回收率为93-107%。该方法成功地用于水和食品中无机锑的形态分析。版权所有Springer Science + Business Media纽约,2012年。

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