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Yuanyuan Zhang

Shanxi University

No.92 Wucheng Rd

Taiyuan, 030006

China

SCHOLARLY PAPERS

8

DOWNLOADS

234

TOTAL CITATIONS

1

Scholarly Papers (8)

1.

An Experimental Study of Flame Characteristics and Nox Emission During Fuel-Rich Combustion of Nh3 in Porous Media

Number of pages: 26 Posted: 23 May 2024
The University of Western Australia, University of Science and Technology Liaoning, Shanxi University, The University of Western Australia, The University of Western Australia, Shanxi University and The University of Western Australia
Downloads 48 (1,086,013)

Abstract:

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Ammonia (NH3) energy, ammonia dissociation, fuel-rich combustion, Nitrogen oxide, porous media

2.

Adsorption Mechanism of High Concentration Nh3 On Modified Red Mud Surface

Number of pages: 22 Posted: 24 Jan 2025
Shanxi University, Shanxi University, Shanxi University, The University of Western Australia, Shanxi University, Shanxi University and Shanxi University
Downloads 35 (1,249,711)

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NH3 combustion, Red mud, Adsorption, Modification

3.

Lstm-Cnn-Cbam-Based Prediction of Nox Emissions with Zonal Control Strategies for Flexible Peak-Load Nox Reduction in Cfb Coal-Fired Units

Number of pages: 36 Posted: 08 Jul 2025
Shanxi University, Shanxi University, Shanxi University, affiliation not provided to SSRN, Shanxi University, Shanxi University, affiliation not provided to SSRN and affiliation not provided to SSRN
Downloads 34 (1,290,922)

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CFB boilers, NOx emission prediction, Long Short-Term Memory neural network, NSGA-III

Mechanism of Fe2o3 in Coal Gangue Ash During Nh3 Combustion

Number of pages: 32 Posted: 17 May 2025
Shanxi University, Shanxi University, Shanxi University, The University of Western Australia, Shanxi University, Shanxi University and Shanxi University
Downloads 22 (1,486,852)

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Coal gangue ash, NH3 oxidation, Kinetic, Fe2O3

Mechanism of Fe2o3 in Coal Gangue Ash During Nh3 Combustion

Number of pages: 32 Posted: 20 Jun 2025
Shanxi University, Shanxi University, Shanxi University, The University of Western Australia, Shanxi University, Shanxi University and Shanxi University
Downloads 9 (1,621,812)

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Coal gangue ash, NH3 oxidation, Kinetic, Fe2O3

5.

Effects of Alkali and Alkaline Earth Metals on Co-Combustion of Sewage Sludge and Coal Slime: Combustion Characteristics, Interactions, and Kinetics

Number of pages: 37 Posted: 17 Jan 2024
Shanxi University, Shanxi University, Shanxi University, Shanxi University, Shanxi University, Taiyuan University of Technology and Shanxi University
Downloads 26 (1,372,601)
Citation 1

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Sewage sludge, coal slime, co-combustion, interaction, AAEM

Sulfur Migration and Transformation During Conventional and Microwave Pyrolysis of Sewage Sludge

Number of pages: 30 Posted: 24 Jul 2025
Shanxi University, Shanxi University, Shanxi University, Zhejiang University, Shanxi University, Shanxi University, Shanxi University and Shanxi University
Downloads 17 (1,548,841)

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sewage sludge, Pyrolysis, microwave, sulfur-containing compounds, DFT

Sulfur Migration and Transformation During Conventional and Microwave Pyrolysis of Sewage Sludge

Number of pages: 29 Posted: 23 Jun 2025
Shanxi University, Shanxi University, Shanxi University, Zhejiang University, Shanxi University, Shanxi University, Shanxi University and Shanxi University
Downloads 8 (1,621,812)

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Sewage sludge, pyrolysis, microwave, sulfur-containing compounds, DFT

7.

Effect Mechanism of Coal Gangue Ash on Nh3 Oxidation in Nh3 Combustion Condition

Number of pages: 26 Posted: 24 Sep 2024
Shanxi University, Shanxi University, Shanxi University, Shanxi University, Shanxi University, Shanxi University and Shanxi University
Downloads 19 (1,470,786)

Abstract:

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Coal gangue ash, NH3 oxidation, Equivalence ratio, N2 selectivity

8.

Investigation Of No Reduction Mechanism Of Nitrogen-Impregnated Biomass Across Wide Temperature Range

Number of pages: 40 Posted: 25 Jul 2024
Shanxi University, Shanxi University, Shanxi University, affiliation not provided to SSRN, Shanxi University and Shanxi University
Downloads 16 (1,491,251)

Abstract:

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Biomass, low load denitrification, nitrogen impregnation, re-burning