Córdoba Patricia, Maroto-Valer M, Delgado Miguel Angel, Diego Ruth, Font Oriol, Querol Xavier
Centre for Innovation on Carbon Capture and Storage (CICCS), Institute of Mechanical, Process and Energy Engineering (IMPEE), Heriot-Watt University, EH14 4AS, United Kingdom.
Centre for Innovation on Carbon Capture and Storage (CICCS), Institute of Mechanical, Process and Energy Engineering (IMPEE), Heriot-Watt University, EH14 4AS, United Kingdom.
Environ Res. 2016 Feb;145:154-161. doi: 10.1016/j.envres.2015.12.002. Epub 2015 Dec 14.
The work presented here reports the first study in which the speciation, behaviour and fate of mercury (Hg) have been evaluated under oxy-fuel combustion at the largest oxy-Pulverised Coal Combustion (oxy-PCC) demonstration plant to date during routine operating conditions and partial exhaust flue gas re-circulation to the boiler. The effect of the CO2-rich flue gas re-circulation on Hg has also been evaluated. Results reveal that oxy-PCC operational conditions play a significant role on Hg partitioning and fate because of the continuous CO2-rich flue gas re-circulations to the boiler. Mercury escapes from the cyclone in a gaseous form as Hg(2+) (68%) and it is the prevalent form in the CO2-rich exhaust flue gas (99%) with lower proportions of Hg(0) (1.3%). The overall retention rate for gaseous Hg is around 12%; Hg(0) is more prone to be retained (95%) while Hg(2+) shows a negative efficiency capture for the whole installation. The negative Hg(2+) capture efficiencies are due to the continuous CO2-rich exhaust flue gas recirculation to the boiler with enhanced Hg contents. Calculations revealed that 44mg of Hg were re-circulated to the boiler as a result of 2183 re-circulations of CO2-rich flue gas. Especial attention must be paid to the role of the CO2-rich exhaust flue gas re-circulation to the boiler on the Hg enrichment in Fly Ashes (FAs).
本文所展示的工作报告了第一项研究,该研究在迄今为止最大的氧燃烧粉煤燃烧(oxy-PCC)示范工厂中,在常规运行条件以及部分废气再循环至锅炉的情况下,对汞(Hg)的形态、行为和归宿进行了评估。同时也评估了富含二氧化碳的烟气再循环对汞的影响。结果表明,由于富含二氧化碳的烟气持续再循环至锅炉,oxy-PCC的运行条件对汞的分配和归宿起着重要作用。汞以Hg(2+)的气态形式(68%)从旋风分离器中逸出,并且是富含二氧化碳的废气中(99%)的主要形态,Hg(0)的比例较低(1.3%)。气态汞的总体保留率约为12%;Hg(0)更易于被保留(95%),而Hg(2+)对整个装置的捕获效率为负。Hg(2+)捕获效率为负是由于富含二氧化碳的废气持续再循环至锅炉,汞含量增加。计算表明,由于富含二氧化碳的烟气进行了2183次再循环,有44毫克汞再循环至锅炉。必须特别关注富含二氧化碳的废气再循环至锅炉对飞灰(FAs)中汞富集的作用。