Best Researcher Award
China University of Mining and Technology (Beijing)
| Xinqian Shu | |
|---|---|
| Affiliation | China University of Mining and Technology (Beijing) |
| Country | China |
| Scopus ID | 7102525053 |
| Documents | 142 |
| Citations | 2,706 |
| h-index | 29 |
| Subject Area | Energy |
| Event | International Research Excellence and Citation Awards |
| ORCID | 0000-0002-9023-3195 |
Xinqian Shu is a researcher affiliated with the China University of Mining and Technology (Beijing), China, whose scholarly work includes research in energy, coal conversion, pyrolysis, environmental engineering, resource utilization, and related areas of energy and environmental science. His publication record includes collaborative studies addressing coal-derived resources, catalytic conversion, environmental assessment, and the utilization of industrial and solid wastes.
Abstract
This academic recognition profile presents the research record and scholarly contributions of Xinqian Shu, affiliated with the China University of Mining and Technology (Beijing). The supplied Scopus metrics identify 142 documents, 2,706 citations, and an h-index of 29. His documented publications cover areas associated with energy and environmental research, including coal pyrolysis, catalytic conversion, resource utilization, environmental assessment, and treatment of industrial residues. Published research demonstrates interdisciplinary collaboration between energy engineering, chemical and environmental engineering, and resource-processing research.
Keywords
Xinqian Shu; Energy; Energy Engineering; Coal Pyrolysis; Catalytic Pyrolysis; Hydrogen Production; Coal Conversion; Fuel Gases; Resource Utilization; Environmental Engineering; Solid Waste Treatment; Industrial Waste; Coal Gangue; Chemical Engineering; Sustainable Energy; Thermochemical Conversion; Environmental Assessment; Research Impact; Citation Analysis.
Introduction
Research in energy and resource conversion increasingly combines thermochemical processing, catalytic technologies, environmental management, and circular approaches to resource utilization. Within this broad research context, Xinqian Shu has contributed to studies concerning coal-derived fuels, catalytic conversion, pyrolysis, environmental evaluation, and the processing of industrial residues. His publication record includes research conducted with collaborators from the China University of Mining and Technology and other institutions.
Research Profile
The supplied bibliometric profile places Xinqian Shu within the subject area of Energy. His research record also intersects with chemical engineering, environmental engineering, coal processing, thermochemical conversion, and resource recovery. Publicly indexed publications identify his affiliation with the China University of Mining and Technology (Beijing) and document collaborative research involving energy conversion and environmental applications.
Research Contributions
A significant theme in Shu’s documented research is the conversion of carbonaceous resources through pyrolysis and catalytic processes. His work has included investigations of coal pyrolysis, catalytic conversion, supported metal catalysts, and the production of useful gaseous products. These studies contribute to understanding how catalyst composition and processing conditions influence thermochemical conversion pathways.
Publications
Selected publications involving Xinqian Shu illustrate the breadth of his research across energy, chemical engineering, environmental science, and resource utilization.
Research Impact
According to the supplied bibliometric information, Xinqian Shu has 142 indexed documents, 2,706 citations, and an h-index of 29. These figures indicate a substantial body of indexed scholarly output and citation activity. Because bibliometric indicators can vary by database, indexing date, author disambiguation, and counting methodology, the figures presented here should be understood as the supplied Scopus profile metrics rather than permanent measures of scholarly influence.
Award Suitability
Based on the supplied bibliometric indicators and the documented publication record, Xinqian Shu presents characteristics relevant to consideration for a research recognition program focused on scholarly productivity, citation impact, and contributions to energy-related research. His work spans fundamental and applied aspects of thermochemical conversion, coal utilization, catalytic processing, environmental assessment, and resource recovery.
Conclusion
Xinqian Shu’s documented research profile reflects sustained scholarly activity in energy and related chemical and environmental engineering fields. His publications address coal pyrolysis, catalytic conversion, hydrogen and fuel-gas production, environmental evaluation, industrial residues, coal gangue processing, and thermochemical resource utilization. Together with the supplied Scopus indicators of 142 documents, 2,706 citations, and an h-index of 29, this record provides a quantitative and qualitative basis for consideration within an academic research recognition context.
External Links
References
- “Study on Morphology of Chars from Coal Pyrolysis.”
https://doi.org/10.1021/ef000202g. - “Study on Producing Hydrogen by Catalytic Pyrolysis of Coal Slime.”
https://doi.org/10.14233/ajchem.2013.13445. - “Influence of Ni Loading on Catalytic Activity of NiO/g-Al2O3 for Hydrogenation of Coal Pyrolysis.”
https://doi.org/10.14233/ajchem.2013.14546. - “Influences of Different Preparation Conditions on Catalytic Activity of Ag2O-Co3O4/γ-Al2O3 for Hydrogenation of Coal Pyrolysis.”
https://doi.org/10.1155/2014/272819. - “A new method for evaluating air quality using an ideal grey close function cluster correlation analysis method.”
https://doi.org/10.1038/s41598-021-02880-1.