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Determination of mercury distribution inside spent compact fluorescent lamps by atomic absorption spectrometry

机译:用原子吸收光谱法测定废旧荧光灯内的汞分布

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摘要

In this study, spent compact fluorescent lamps were characterized to determine the distribution of mercury. The procedure used in this research allowed mercury to be extracted in the vapor phase, from the phosphor powder, and the glass matrix. Mercury concentration in the three phases was determined by the method known as cold vapor atomic absorption spectrometry. Median values obtained in the study showed that a compact fluorescent lamp contained 24.52 ± 0.4 ppb of mercury in the vapor phase, 204.16 ± 8.9 ppb of mercury in the phosphor powder, and 18.74 ± 0.5 ppb of mercury in the glass matrix. There are differences in mercury concentration between the lamps since the year of manufacture or the hours of operation affect both mercury content and its distribution. The 85.76% of the mercury introduced into a compact fluorescent lamp becomes a component of the phosphor powder, while more than 13.66% is diffused through the glass matrix. By washing and eliminating all phosphor powder attached to the glass surface it is possible to classified the glass as a non-hazardous waste.
机译:在这项研究中,用过的紧凑型荧光灯的特征在于确定汞的分布。该研究中使用的程序允许从磷光体粉末和玻璃基质中以气相萃取汞。通过称为冷蒸气原子吸收光谱法的方法确定三相中的汞浓度。研究获得的中值显示,紧凑型荧光灯的气相中汞含量为24.52±0.4 ppb,荧光粉中汞含量为204.16±8.9 ppb,玻璃基质中汞含量为18.74±0.5 ppb。自生产年份或工作时间以来,灯之间的汞浓度存在差异,这会影响汞含量及其分布。引入紧凑型荧光灯的汞的85.76%成为磷光体粉末的成分,而超过13.66%的汞则通过玻璃基质扩散。通过清洗并清除所有附着在玻璃表面的荧光粉,可以将玻璃分类为无害废物。

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