固相萃取法和火焰原子吸收光谱法测定啤酒中微量铅。

Vanessa N Alves, Simone S O Borges, Waldomiro B Neto, Nívia M M Coelho
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引用次数: 17

摘要

本文建立了流动注射固相萃取法和火焰原子吸收光谱法(FAAS)测定啤酒样品中低浓度铅的方法。采用辣木种子作为生物吸附材料。研究了在线预富集系统的化学和流动变量,如样品pH、预富集流速、淋洗液流速、淋洗液浓度、粒径和吸附剂质量。最佳提取条件为:样品pH为6.0,样品流速为6.0 mL min(-1),吸附剂质量为63.0 mg,以2.0 mol L(-1) HNO(3)为洗脱液,流速为2.0 mL min(-1)。在优化条件下,预富集系数、精密度、检出限、消耗指数和样品通量分别为93、0.3% (10.0 μ L(-1), n = 7)、7.5 μ L(-1)、0.11 mL和23个样品/ h。该方法成功地应用于啤酒样品和回收率试验,回收率在80% ~ 100%之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Determination of low levels of lead in beer using solid-phase extraction and detection by flame atomic absorption spectrometry.

Determination of low levels of lead in beer using solid-phase extraction and detection by flame atomic absorption spectrometry.

Determination of low levels of lead in beer using solid-phase extraction and detection by flame atomic absorption spectrometry.

Determination of low levels of lead in beer using solid-phase extraction and detection by flame atomic absorption spectrometry.

In this study, a method for the determination of low concentrations of lead in beer samples using solid-phase extraction with a flow injection analysis system and detection by flame atomic absorption spectrometry (FAAS) was developed. Moringa oleifera seeds were used as a biosorbent material. Chemical and flow variables of the online preconcentration system, such as sample pH, preconcentration flow rate, eluent flow rate, eluent concentration, particle size, and sorbent mass, were studied. The optimum extraction conditions were obtained using a sample pH of 6.0, sample flow rate of 6.0 mL min(-1), 63.0 mg of sorbent mass, and 2.0 mol L(-1) HNO(3) at a flow rate of 2.0 mL min(-1) as the eluent. With the optimized conditions, the preconcentration factor, precision, detection limit, consumption index, and sample throughput were estimated as 93, 0.3% (10.0 μg L(-1), n = 7), 7.5 μg L(-1), 0.11 mL, and 23 samples per hour, respectively. The method developed was successfully applied to beer samples and recovery tests, with recovery ranging from 80% to 100%.

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