Cu doping by Fe2O3 oxygen carriers for boosting elemental mercury removal in chemical looping gasification of Coal
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稿件编号:212 访问权限:仅限参会人
更新:2023-03-23 19:21:46 浏览:440次
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摘要
The effects of Cu doping on the adsorption and oxidation of Hg0 were adopted by a small fluidized bed and DFT calculations. The results showed that compared with Fe2O3, Cu doping could convert more Hg0 into Hg2+ and Hg(P) for improving the capacity of oxygen carriers to reduce Hg0. XPS and Hg-TPD further verified HgO and HgS to be the main forms of Hg(P). DFT calculations revealed that Cu doping enhanced all the adsorption capacities of Hg0, H2S, HgO and HgS. The Projected Density Of States(PDOS),the Brønsted−Evans−Polanyi (BEP) relationship and the d-band center theory implied that comparing with Fe2O3, Cu doping made the d-band center of Fe atoms closer to Fermi level, optimized the adsorption capacities of intermediates and transition-states on Fe-Sites, thus significantly reduced the energy barrier of the rate control step (Hg/O's Hg*+O*→HgO*;Hg/S' HS*→S*+H* and S*+Hg*→HgS*) which further accelerated the overall Hg/O and Hg/S reactions' kinetics. Therefore, Cu could be applied as a potential dopant to not only improve the capacity of oxygen carriers to adsorb and oxidize Hg0 but also optimize the emission reduction of this chemical.
关键字
Fe2O3; Density functional theory; Coal; Chemical looping gasification; Elemental mercury; Doping; Removal.
稿件作者
安梅
中国矿业大学
郭庆杰
宁夏大学省部共建煤炭高效利用与绿色化工国家重点实验室
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