首页> 外文期刊>Analytical and bioanalytical chemistry >Enrichment of iron(III), cobalt(II), nickel(II), and copper(II) by solid-phase extraction with 1,8-dihydroxyanthraquinone anchored to silica gel before their determination by flame atomic absorption spectrometry
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Enrichment of iron(III), cobalt(II), nickel(II), and copper(II) by solid-phase extraction with 1,8-dihydroxyanthraquinone anchored to silica gel before their determination by flame atomic absorption spectrometry

机译:通过固定在硅胶上的1,8-二羟基蒽醌固相萃取富集铁(III),钴(II),镍(II)和铜(II),然后通过火焰原子吸收光谱法测定

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摘要

A chelating matrix prepared by immobilizing 1,8-dihydroxyanthraquinone on silica gel modified with 3-aminopropyltriethoxysilane has been characterized by use of cross-polarization magic angle spinning (CPMAS) NMR, diffuse reflectance infrared Fourier transformation (DRIFT) spectroscopy, and thermogravimetric analysis and used to preconcentrate Fe(III), Co(II), Ni(II), and Cu(II) before their determination by flame atomic absorption spectrometry. The optimum pH ranges for quantitative sorption are 6.5-8.0, 6.0-7.0, 6.0-8.0, and 7.0-8.5 for Cu, Fe, Co, and Ni, respectively. All the metal ions can be desorbed with 2 mol L~(-1) HCl or HNO_3. The sorption capacity (μmol g~(-1) matrix) and preconcentration factor were 226.6, 250; 365.6, 300; 101.8, 150; and 109.0, 250 for Cu, Fe, Co, and Ni, respectively. The lowest concentration for quantitative recovery was 4.0, 3.3, 6.6, and 4.0 ng mL~(-1), respectively for the four metal ions. The limits up to which electrolytes NaNO_3, NaCl, NaBr, Na_2SO_4, and Na_3PO_4 and cations Ca(II) and Mg(II) can coexist with the four metal ions during their sorption without adverse effect are reported. The simultaneous enrichment and determination of all the four metals is possible if the total load of metal ions is less than the sorption capacity. Flame AAS was used to determine the metal ions in underground, tap, and river water samples (RSD ≤ 7.1%) after their enrichment with the matrix. The cobalt content of pharmaceutical samples (multivitamin tablet) preconcentrated by use of this silica gel matrix and determined by FAAS was found to be 2.00 μg g~(-1), with RSD~1.7% (reported concentration level, 1.99 μg g~(-1)).
机译:通过使用交叉极化魔角旋转(CPMAS)NMR,漫反射红外傅里叶变换(DRIFT)光谱,热重分析和热重分析,通过将1,8-二羟基蒽醌固定在用3-氨基丙基三乙氧基硅烷改性的硅胶上制备的螯合基质进行了表征。用来在火焰原子吸收光谱法测定前对Fe(III),Co(II),Ni(II)和Cu(II)进行预浓缩。定量吸附的最佳pH范围分别为Cu,Fe,Co和Ni,分别为6.5-8.0、6.0-7.0、6.0-8.0和7.0-8.5。所有的金属离子都可以用2 mol L〜(-1)HCl或HNO_3解吸。吸附量(μmolg〜(-1)基质)和预浓缩系数分别为226.6,250; 365.6、300; 101.8,150; Cu,Fe,Co和Ni分别为109.0、250。四种金属离子的最低定量回收浓度分别为4.0、3.3、6.6和4.0 ng mL〜(-1)。报告了电解质NaNO_3,NaCl,NaBr,Na_2SO_4和Na_3PO_4以及阳离子Ca(II)和Mg(II)在吸附过程中与四种金属离子共存而没有不利影响的极限。如果金属离子的总负载小于吸附容量,则可以同时富集和测定所有四种金属。火焰原子吸收光谱法用于富集基质后,用于测定地下水,自来水和河水样品中的金属离子(RSD≤7.1%)。使用该硅胶基质预浓缩并通过FAAS测定的药物样品(多种维生素片剂)的钴含量为2.00μgg〜(-1),RSD〜1.7%(报告浓度水平为1.99μgg〜( -1))。

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