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Experimental study of SO2 emissions and desulfurization of oxy-coal combustion in a 30 kWth pressurized fluidized bed combustor (2019)
Journal Article
Pang, L., Shao, Y., Zhong, W., & Liu, H. (2020). Experimental study of SO2 emissions and desulfurization of oxy-coal combustion in a 30 kWth pressurized fluidized bed combustor. Fuel, 264, Article 116795. https://doi.org/10.1016/j.fuel.2019.116795

Pressurized oxy-fuel combustion (POFC) has attracted wide attention due to its potentials of high efficiency and low cost in CO2 capture. Compared with numerical simulation and system analysis, there are few experimental studies about POFC. In order... Read More about Experimental study of SO2 emissions and desulfurization of oxy-coal combustion in a 30 kWth pressurized fluidized bed combustor.

Experimental study of NOx emissions in a 30 kWth pressurized oxy-coal fluidized bed combustor (2019)
Journal Article
Pang, L., Shao, Y., Zhong, W., Gong, Z., & Liu, H. (2020). Experimental study of NOx emissions in a 30 kWth pressurized oxy-coal fluidized bed combustor. Energy, 194, Article 116756. https://doi.org/10.1016/j.energy.2019.116756

© 2019 As one of the most promising carbon capture technologies for coal-fired power plants, oxy-coal combustion has attracted wide interests during the last two decades. In comparison to atmospheric oxy-fuel combustion, pressurized oxy-fuel combusti... Read More about Experimental study of NOx emissions in a 30 kWth pressurized oxy-coal fluidized bed combustor.

Assessment of biomass energy potential for SRC willow woodchips in a pilot scale bubbling fluidized bed gasifier (2019)
Journal Article
Ul Hai, I., Sher, F., Yaqoob, A., & Liu, H. (2019). Assessment of biomass energy potential for SRC willow woodchips in a pilot scale bubbling fluidized bed gasifier. Fuel, 258, Article 116143. https://doi.org/10.1016/j.fuel.2019.116143

The current study investigates the short rotation coppice (SRC) gasification in a bubbling fluidized bed gasifier (BFBG) with air as gasifying medium. The thermochemical processes during combustion were studied to get better control over the air gasi... Read More about Assessment of biomass energy potential for SRC willow woodchips in a pilot scale bubbling fluidized bed gasifier.

Experimental investigation of tar arresting techniques and their evaluation for product syngas cleaning from bubbling fluidized bed gasifier (2019)
Journal Article
Hai, I. U., Sher, F., Zarren, G., & Liu, H. (2019). Experimental investigation of tar arresting techniques and their evaluation for product syngas cleaning from bubbling fluidized bed gasifier. Journal of Cleaner Production, 240, Article 118239. https://doi.org/10.1016/j.jclepro.2019.118239

© 2019 Elsevier Ltd Hazardous waste products along with the syngas produced from biomass gasification are one of the major problems of today world. Tar and other solid contaminants removal from syngas are necessary as it is widely used for the produc... Read More about Experimental investigation of tar arresting techniques and their evaluation for product syngas cleaning from bubbling fluidized bed gasifier.

Investigation of elemental mercury removal from coal-fired flue gas over MIL101-Cr (2019)
Journal Article
Dong, L., Huang, Y., Liu, L., Liu, C., Xu, L., Zha, J., …Liu, H. (2019). Investigation of elemental mercury removal from coal-fired flue gas over MIL101-Cr. Energy and Fuels, 33(9), 8864-8875. https://doi.org/10.1021/acs.energyfuels.9b01355

In this work, the MIL101-Cr sorbent with a large BET surface area was prepared and used to remove Hg0 from the simulated coal-fired boiler flue gas. The chemical and physical properties of the prepared sorbent were characterized by X-ray diffraction... Read More about Investigation of elemental mercury removal from coal-fired flue gas over MIL101-Cr.

Magnetic γ-Fe2O3-Loaded Attapulgite Sorbent for Hg0 Removal in Coal-Fired Flue Gas (2019)
Journal Article
Dong, L., Huang, Y., Chen, H., Liu, L., Liu, C., Xu, L., …Liu, H. (2019). Magnetic γ-Fe2O3-Loaded Attapulgite Sorbent for Hg0 Removal in Coal-Fired Flue Gas. Energy and Fuels, 33(8), 7522-7533. https://doi.org/10.1021/acs.energyfuels.9b01136

A magnetically recoverable composite mercury removal sorbent was produced by introducing magnetic γ-Fe2O3 into attapulgite (ATT) (xFe1ATT) via the co-precipitation method and used to remove Hg0 in the simulated coal-fired power plant flue gas. The as... Read More about Magnetic γ-Fe2O3-Loaded Attapulgite Sorbent for Hg0 Removal in Coal-Fired Flue Gas.

Development of a 1000 W organic Rankine cycle micro-turbine-generator using polymeric structural materials and its performance test with compressed air (2019)
Journal Article
Hernandez-Carrillo, I., Wood, C., & Liu, H. (2019). Development of a 1000 W organic Rankine cycle micro-turbine-generator using polymeric structural materials and its performance test with compressed air. Energy Conversion and Management, 190, 105-120. https://doi.org/10.1016/j.enconman.2019.03.092

This paper presents the experimental advances on the implementation of structural polymeric materials in a micro-turbine-generator for an organic Rankine cycle (ORC) and through testing provides an insight of its performance. The aim is to create awa... Read More about Development of a 1000 W organic Rankine cycle micro-turbine-generator using polymeric structural materials and its performance test with compressed air.

Mechanisms of Toluene Removal in Relation to the Main Components of Biosyngas in a Catalytic Nonthermal Plasma Process (2019)
Journal Article
Xu, B., Xie, J., Yin, X., Liu, H., Sun, C., & Wu, C. (2019). Mechanisms of Toluene Removal in Relation to the Main Components of Biosyngas in a Catalytic Nonthermal Plasma Process. Energy and Fuels, 33(5), 4287-4301. https://doi.org/10.1021/acs.energyfuels.9b00273

In this study, a packed-bed dielectric barrier discharge reactor was built for the removal of biomass gasification tar. Two kinds of packing materials, glass pellets and a Ni/γ-Al2O3 catalyst, were employed for the plasma-alone process and the plasma... Read More about Mechanisms of Toluene Removal in Relation to the Main Components of Biosyngas in a Catalytic Nonthermal Plasma Process.