Reaction mechanisms and chemical kinetics of mercury transformation during coal combustion

Y Yang, J Liu, Z Wang - Progress in Energy and Combustion Science, 2020 - Elsevier
Mercury (Hg) emission from coal combustion has attracted considerable public concern
because of its harmful effects on human health and the ecosystem. The fundamental …

Review on the latest developments in modified vanadium-titanium-based SCR catalysts

C Chen, Y Cao, S Liu, J Chen, W Jia - Chinese Journal of Catalysis, 2018 - Elsevier
Vanadium-titanium-based catalysts are the most widely used industrial materials for NO x
removal from coal-fired power plants. Owing to their relatively poor low-temperature deNO x …

Mercury removal from flue gas by noncarbon sorbents

J Yang, H Xu, Y Zhao, H Li, J Zhang - Energy & Fuels, 2021 - ACS Publications
Mercury emitted from coal-fired power production industries is an enormous threat to human
health and ecosystems. Sorbent injection is a promising and feasible strategy for mercury …

Tourmaline-Modified FeMnTiOx Catalysts for Improved Low-Temperature NH3-SCR Performance

F Wang, Z Xie, J Liang, B Fang, Y Piao… - … science & technology, 2019 - ACS Publications
Low temperature NH3 selective catalytic reduction (NH3-SCR) technology is an efficient and
economical strategy for cutting NO x emissions from power-generating equipment. In this …

Magnetic iron–manganese binary oxide supported on carbon nanofiber (Fe3− xMnxO4/CNF) for efficient removal of Hg0 from coal combustion flue gas

J Yang, Y Zhao, S Liang, S Zhang, S Ma, H Li… - Chemical Engineering …, 2018 - Elsevier
Samples of magnetic iron–manganese binary oxide supported on activated carbon fiber (Fe
3− x Mn x O 4/CNF) were prepared for Hg 0 removal from flue gas. The results showed that …

Mercury transformation and removal in chemical looping combustion of coal: A review

D Liu, C Wang, Y Fan, Q Liu, X Wang, K Xu, J Jin, J Ma… - Fuel, 2023 - Elsevier
Chemical looping combustion (CLC) of coal for carbon capture utilization and storage is an
effective technology to reduce carbon emission due to smaller energy penalty and inherent …

Nanosized ZnIn2S4 supported on facet-engineered CeO2 nanorods for efficient gaseous elemental mercury immobilization

T Jia, Z Ji, J Wu, X Zhao, F Wang, Y Xiao, X Qi… - Journal of Hazardous …, 2021 - Elsevier
Nanosized ZnIn 2 S 4 supported on facet-engineered CeO 2 nanorods were prepared by
solvothermal method to effectively capture gaseous elemental mercury from flue gas. The …

Structure-Directing Role of Support on Hg0 Oxidation over V2O5/TiO2 Catalyst Revealed for NOx and Hg0 Simultaneous Control in an SCR Reactor

J Shi, J Chen, S Xiong, J Mi, H Liu… - Environmental …, 2022 - ACS Publications
The crystal structure of TiO2 strongly influences the physiochemical properties of supported
active sites and thus the catalytic performance of the as-synthesized catalyst. Herein, we …

Review and perspectives of mercury removal by spinel compounds

C Wang, D Liu, Q Liu, Y Fan, X Wang, J Jin, J Ma - Energy & Fuels, 2023 - ACS Publications
Several preparation methods for current spinel compounds are briefly introduced. The
effects of temperature and flue gas components on the removal of Hg0 over spinel …

Recent advances in MnO2-based adsorbents for mercury removal from coal-fired flue gas

D Ye, X Wang, R Wang, S Wang, H Liu… - Journal of Environmental …, 2021 - Elsevier
Mercury emissions from power stations have threatened the natural environment and human
health. Adsorption is one of the most effective technologies for the abatement of mercury. As …