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Direct Quantitative Analysis of Arsenic in Coal Fly Ash

机译:粉煤灰中砷的直接定量分析

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A rapid, simple method based on graphite furnace atomic absorption spectrometry is described for the direct determination of arsenic in coal fly ash. Solid samples were directly introduced into the atomizer without preliminary treatment. The direct analysis method was not always free of spectral matrix interference, but the stabilization of arsenic by adding palladium nitrate (chemical modifier) and the optimization of the parameters in the furnace program (temperature, rate of temperature increase, hold time, and argon gas flow) gave good results for the total arsenic determination. The optimal furnace program was determined by analyzing different concentrations of a reference material (NIST1633b), which showed the best linearity for calibration. The optimized parameters for the furnace programs for the ashing and atomization steps were as follows: temperatures of 500–1200 and 2150°C, heating rates of 100 and 500°C s−1, hold times of 90 and 7 s, and medium then maximum and medium argon gas flows, respectively. The calibration plots were linear with a correlation coefficient of 0.9699. This method was validated using arsenic-containing raw coal samples in accordance with the requirements of the mass balance calculation; the distribution rate of As in the fly ashes ranged from 101 to 119%.
机译:描述了一种基于石墨炉原子吸收光谱法的快速,简单的方法,用于直接测定粉煤灰中的砷。无需预先处理即可将固体样品直接引入雾化器。直接分析方法并不总是没有光谱矩阵干扰,而是通过添加硝酸钯(化学改性剂)来稳定砷,并优化炉子程序中的参数(温度,升温速度,保持时间和氩气)流量)对总砷测定给出了良好的结果。通过分析不同浓度的参考材料(NIST1633b)来确定最佳的熔炉程序,该参考材料显示出最佳的校准线性。灰化和雾化步骤的熔炉程序的优化参数如下:温度为500–1200和2150°C,加热速率为100和500°C s-1,保持时间为90和7 s,然后为中等最大和中等氩气流量。校准曲线为线性,相关系数为0.9699。根据质量平衡计算的要求,使用含砷的原煤样品验证了该方法;飞灰中As的分布率在101%至119%之间。

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