Department of Chemistry, Tshwane University of Technology, Arcadia, P.O. Box 56208, Pretoria, 0007, South Africa.
Sci Rep. 2020 Nov 6;10(1):19282. doi: 10.1038/s41598-020-76453-z.
Samples of South African bituminous coals were analysed for total mercury (Hg) and Hg thermospecies concentrations using an RA-915 + Zeeman Mercury Analyser. Total mercury concentrations in samples of coals (n = 57) ranged between 10 ng g and 493 ng g with a mean value of 150 ± 53 ng g. Thermospecies of Hg were determined by monitoring Hg response as a function of sample temperature, increasing at 0.8 °C/s from ambient to 720 °C. This approach provides important information on thermal release of Hg species, as indicated by their appearance over specific temperature intervals. This permits identification of the presence of Hg thermospecies in coal and their quantification in each time (temperature) interval. It was found that 76% of tested bituminous coal samples release Hg species within low temperature intervals (20-180 °C and180-360 °C). The information generated in this study will aid in the selection of suitable coals for pre-combustion treatment that can lead to significant reduction of atmospheric Hg emission during coal combustion at power stations. This analytical approach can also be used for the creation of a system of coal classification based on the temperature of release of various Hg thermospecies.
对南非烟煤样品进行了总汞(Hg)和 Hg 热形态浓度分析,使用的是 RA-915+Zeeman 汞分析仪。煤样品中总汞浓度(n=57)范围在 10ng/g 至 493ng/g 之间,平均值为 150±53ng/g。通过监测 Hg 响应随样品温度的变化来确定 Hg 的热形态,温度以 0.8°C/s 的速度从环境温度升高到 720°C。这种方法提供了关于 Hg 形态热释放的重要信息,因为它们在特定温度范围内出现。这允许识别煤中 Hg 热形态的存在,并在每个时间(温度)间隔内对其进行定量。结果发现,76%的测试烟煤样品在低温间隔(20-180°C 和 180-360°C)内释放 Hg 形态。本研究中生成的信息将有助于选择适合预燃烧处理的煤,从而可以显著减少火电站燃烧煤时大气 Hg 的排放。这种分析方法还可用于基于各种 Hg 热形态释放温度的煤分类系统的创建。