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Dive into the research topics where Akshay Gopan is active.

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Featured researches published by Akshay Gopan.


Journal of Fuel Chemistry and Technology | 2014

Characterization of coal water slurry prepared for PRB coal

Fei Yi; Akshay Gopan; Richard L. Axelbaum

Abstract Powder River Basin (PRB) coal, which accounts for over 40% of the coal consumed for power generation in the United States, was investigated for preparation of coal water slurry (CWS). The static stability and rheology of the CWS were characterized as a function of loading. The coal loading was varied from 30% to 50% and both ionic (sodium polystyrene sulphonate (PSS)) and nonionic (Triton X-100) surfactants were employed as additives. The addition of PSS to PRB slurries was found to yield poor static stability. On the other hand, Triton X-100 was found to be an effective surfactant, reducing the sedimentation by more than 50% compared to the one without surfactant in 45% CWS. Adding Triton X-100 reduces the viscosity of the CWS for coal loadings of 30% and 40%. Although the viscosities for coal loading of 42.5% and 45% are higher when Triton X-100 is added, the static stability is significantly better than for samples without surfactant. The highest coal loading for PRB slurry with acceptable viscosity for pumping is 42.5%.


Applied Energy | 2014

Process design and performance analysis of a Staged, Pressurized Oxy-Combustion (SPOC) power plant for carbon capture

Akshay Gopan; Benjamin M. Kumfer; Jeffrey N. Phillips; David Thimsen; Richard L Smith; Richard L. Axelbaum


International Journal of Greenhouse Gas Control | 2015

Effect of operating pressure and fuel moisture on net plant efficiency of a staged, pressurized oxy-combustion power plant

Akshay Gopan; Benjamin M. Kumfer; Richard L. Axelbaum


Fuel | 2016

Pressurized oxy-combustion with low flue gas recycle: Computational fluid dynamic simulations of radiant boilers

Fei Xia; Zhiwei Yang; Adewale Adeosun; Akshay Gopan; Benjamin M. Kumfer; Richard L. Axelbaum


Archive | 2014

Method and apparatus for capturing carbon dioxide during combustion of carbon containing fuel

Richard L. Axelbaum; Benjamin M. Kumfer; Fei Xia; Akshay Gopan; Bhupesh Dhungel


Review of Scientific Instruments | 2018

Characterization of a new Hencken burner with a transition from a reducing-to-oxidizing environment for fundamental coal studies

Adewale Adeosun; Qian Huang; Tianxiang Li; Akshay Gopan; Xuebin Wang; Shuiqing Li; Richard L. Axelbaum


Energy & Fuels | 2017

Effects of Inert Placement (Zst) on Soot and Radiative Heat Flux in Turbulent Diffusion Flames

Akshay Gopan; Zhiwei Yang; Benjamin M. Kumfer; Richard L. Axelbaum


Reaction Kinetics, Mechanisms and Catalysis | 2018

Synergistic SO x /NO x chemistry leading to enhanced SO 3 and NO 2 formation during pressurized oxy-combustion

Xuebin Wang; Adewale Adeosun; Grigory Yablonsky; Akshay Gopan; Pan Du; Richard L. Axelbaum


Proceedings of the Combustion Institute | 2018

Predicting particle deposition for flow over a circular cylinder in combustion environments

Akshay Gopan; Zhiwei Yang; Richard L. Axelbaum


Archive | 2018

BURNER AND BOILER/FURNACE FOR PRESSURIZED OXY-COMBUSTION BOILERS AND FURNACES

Richard L. Axelbaum; Zhiwei Yang; Akshay Gopan; Benjamin M. Kumfer; Adewale Adeosun

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Richard L. Axelbaum

Washington University in St. Louis

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Benjamin M. Kumfer

Washington University in St. Louis

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Adewale Adeosun

Washington University in St. Louis

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Zhiwei Yang

Washington University in St. Louis

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Fei Xia

Washington University in St. Louis

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Xuebin Wang

Xi'an Jiaotong University

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Tianxiang Li

Washington University in St. Louis

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Bhupesh Dhungel

Washington University in St. Louis

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David Thimsen

Electric Power Research Institute

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Fei Yi

Washington University in St. Louis

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