Shuquan Huang | Chemical Engineering | Research Excellence Award

Assoc. Prof. Dr. Shuquan Huang | Chemical Engineering | Research Excellence Award

Kunming University of Science and Technology | China

Assoc. Prof. Dr. Shuquan Huang is an accomplished researcher in catalysis and sustainable chemical engineering, with a strong focus on electrocatalysis, photocatalysis, and energy‐related catalytic materials. His scholarly output comprises 55 research documents, which have received 3,235 citations across 2,883 citing publications, reflecting wide international recognition and impact, and he holds an h-index of 32. His research addresses the rational design of advanced catalytic systems, including MoS₂-based electrocatalysts, metal–oxide and zeolite‐supported catalysts, and engineered nanostructures for hydrogen production, biomass conversion, selective hydrogenation, and environmental remediation. His work is regularly published in high‐impact journals such as Chemical Engineering Journal, ACS Sustainable Chemistry & Engineering, ACS Catalysis, Green Chemistry, Applied Catalysis B, and Advanced Materials Interfaces. Collectively, his contributions advance efficient, selective, and sustainable catalytic processes for clean energy generation and green chemical transformations.

Research Metrics (Scopus)

3500
2800
2100
1400
0

Citations
3,235

Documents
55

h-index
32

Citations

Documents

h-index


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Featured Publications

Rocío Mingorance | Chemical Engineering | Best Research Award

Mrs. Rocío Mingorance | Chemical Engineering | Best Research Award

Ikerlan Technology Research Center | Spain

Author Profile

Orcid

Early Academic Pursuits

Mrs. Rocío Mingorance began her academic journey with a strong foundation in chemical engineering from the University of Granada, where she developed expertise in process engineering and industrial systems. Her educational path expanded with a master’s degree in industrial maintenance engineering from the University of Huelva, which enriched her technical and managerial skills in plant operations and system reliability. Continuing her pursuit of advanced research, she enrolled in a doctoral program in naval and industrial engineering at the University of Coruña in collaboration with the Ikerlan Technology Research Center, where her focus lies on the development of digital twins for process plants.

Professional Endeavors

Her professional career reflects a steady progression through diverse engineering and industrial roles. Beginning with junior engineering positions in thermosolar power plants, she gained hands-on experience in thermal balances, plant operations, and preventive maintenance. Over the years, she expanded her portfolio through roles in research, consultancy, and control room operations, working with leading companies such as Abengoa, Birchman Consulting, Grupo Cosentino, and Marquesado Solar. Currently, she serves as a thermal engineer and algorithms manager at Sunntics, where she leads the design and implementation of advanced thermal control systems to optimize concentrated solar power plants.

Contributions and Research Focus

Mrs. Mingorance’s research and technical contributions have centered on advancing renewable energy technologies, thermal engineering, and digital solutions for industrial systems. Her expertise in developing and applying thermal models for heat and mass transfer has contributed significantly to improving system performance under standard and unexpected conditions. She has also pioneered work on digital twins, offering innovative methodologies to enhance operational strategies and resilience in manufacturing and energy plants. Her publications highlight her contribution to bridging traditional engineering with modern computational tools.

Accolades and Recognition

Her research and professional achievements have been recognized through publications in reputed international journals and conferences. Notably, her work on the evolution of digital twin solutions was presented at the IEEE Smart World Congress, reflecting her standing in the global research community. In addition, her continued contributions to the field of industrial and thermal engineering have positioned her as a promising scholar and professional in advancing sustainable and technologically driven energy solutions.

Impact and Influence

Through her interdisciplinary expertise, Mrs. Mingorance has influenced both industrial practices and academic research. Her ability to integrate advanced modeling techniques with real-world plant operations has enhanced the reliability, efficiency, and safety of thermal and renewable energy systems. Her contributions extend beyond direct applications, inspiring new approaches in engineering education, collaborative industry research, and the adoption of digital innovations in traditional sectors.

Legacy and Future Contributions

Looking forward, Mrs. Mingorance’s ongoing doctoral research in digital twins for process plants is expected to leave a lasting legacy in the field of industrial and naval engineering. By combining her strong background in thermal sciences with cutting-edge computational techniques, she is poised to contribute transformative solutions that support sustainability, automation, and resilience in complex industrial systems. Her career trajectory suggests continued advancements that will influence both academia and industry in the years to come.

Publications


  • Title: A methodology leveraging digital twins to enhance the operational strategy of manufacturing plants in unexpected scenarios

  • Authors: Rocío Mingorance, Diego Crespo Pereira, Jone Uribetxebarria, Urko Leturiondo

  • Journal: Results in Engineering

  • Year: 2025


  • Title: Evolution of Digital Twin solutions in the manufacturing industry

  • Authors: Rocío Mingorance, Diego Crespo Pereira, Jone Uribetxebarria, Urko Leturiondo

  • Journal/Conference: Proceedings of the 2023 IEEE Smart World Congress (SWC)

  • Year: 2023


Conclusion

Mrs. Rocío Mingorance exemplifies the synergy between engineering practice and academic research. With a solid educational foundation, diverse professional experiences, and impactful research contributions, she stands as a leading figure in renewable energy and digital innovation. Her work continues to shape sustainable industrial practices and drive the integration of advanced technologies in energy systems, reflecting a career dedicated to both excellence and progress.

 

Okechukwu Vincent Dickson | Enigneering | Best Researcher Award

Dr. Okechukwu Vincent Dickson | Engineering | Best Researcher Award

Institute Mines Télécom Albi | France

Author Profile

Scopus

Orcid

Google Scholar

Early Academic Pursuits

Dr. Okechukwu Vincent Dickson’s academic journey began with a strong foundation in industrial chemistry, where he explored green chemistry, mineral processing, and analytical techniques. His undergraduate project focused on the phytochemical screening and antioxidant activity of medicinal plants, reflecting his early interest in applying chemistry for societal benefit. This laid the groundwork for his master’s studies in biomass and waste valorisation at Institut Mines Télécom Albi, France, where he engaged with concepts of the circular economy, sustainable material processing, and environmental chemistry. His commitment to advancing knowledge culminated in doctoral research in process and environmental engineering, with a focus on thermodynamic-kinetic coupling in hydrometallurgical extraction processes.

Professional Endeavors

Dr. Dickson has gained rich professional experience through research, industry, and academic collaborations. His role as a process research and development engineer at Prony Resources in New Caledonia and France allowed him to design and execute experiments for nickel and cobalt extraction, ensuring process optimisation and sustainability in industrial operations. Earlier experiences as a production executive in Nigeria further enhanced his skills in operational efficiency and waste reduction. His work in research institutions such as the Karlsruhe Institute of Technology in Germany broadened his exposure to biomass valorisation and advanced analytical methods, strengthening his global research outlook.

Contributions and Research Focus

His research contributions lie at the intersection of process engineering, environmental sustainability, and material sciences. With expertise in hydrometallurgy, Dr. Dickson has investigated high-pressure acid leaching for critical metal extraction, integrating thermodynamic modelling, kinetic studies, and advanced characterisation tools. His focus extends to waste valorisation, biomass utilisation, and sustainable material processing, reflecting a strong commitment to circular economy principles. His publications highlight novel approaches to equilibrium constant modelling, speciation studies, and the application of advanced techniques to solve industrial challenges while promoting environmental stewardship.

Accolades and Recognition

Throughout his academic and professional career, Dr. Dickson has received recognition for his dedication to sustainability-focused research. His scholarly work has been published in respected journals, including studies on thermodynamics, hydrometallurgy, and natural product chemistry. His collaborative projects across Europe, Africa, and the Pacific highlight his ability to integrate into multidisciplinary teams, gaining recognition as a highly adaptable and innovative researcher. His progression from local industrial operations to internationally recognized research institutions demonstrates a career built on consistent excellence and impact.

Impact and Influence

Dr. Dickson’s impact lies in his ability to connect fundamental research with industrial application. His work on hydrometallurgical processes has contributed to improving the efficiency of critical metal extraction, a field of great relevance for energy transition and technological advancement. By combining process optimisation with environmental responsibility, he has influenced how industries approach sustainability. His academic output not only enriches scientific understanding but also guides industrial practices and policy discussions surrounding resource utilisation and waste management.

Legacy and Future Contributions

Looking forward, Dr. Dickson’s legacy is likely to be defined by his role in advancing sustainable process engineering and resource recovery. His interdisciplinary expertise positions him to address global challenges related to resource scarcity, environmental protection, and industrial innovation. Future contributions may include deeper exploration of advanced modelling, development of scalable green technologies, and expanded collaborations across continents. His commitment to continuous learning and adaptability ensures that his work will remain relevant in shaping the future of environmental and process chemistry.

Publications


Article: Influence of the model used for the calculation of equilibrium constants at moderate temperature for electrolytes
Authors: Okechukwu V. Dickson, Thomas Deleau, Christophe Coquelet, Fabienne Espitalier, Julien Lombart, Antoine Tardy
Journal: MATEC Web of Conferences
Year: 2023


Article: Speciation and reaction equilibrium constant modelling of aqueous hydrometallurgical systems at elevated temperatures: A review
Authors: Okechukwu V. Dickson, Thomas Deleau, Christophe Coquelet, Fabienne Espitalier, Julien Lombart, Antoine Tardy, Fabrice Lachaize
Journal: Chemical Thermodynamics and Thermal Analysis
Year: 2023


Article: The influence of activity coefficient and equilibrium constant models on the speciation of aqueous solutions of H₂SO₄–MgSO₄–Al₂(SO₄)₃ at 235 and 250 °C
Authors: Okechukwu V. Dickson, Thomas Deleau, Christophe Coquelet, Fabienne Espitalier, Julien Lombart, Antoine Tardy
Journal: Physicochemical Problems of Mineral Processing
Year: 2023


Article: Antiplasmodial and Acute Toxicity Studies of Fractions and Cassane-Type Diterpenoids from the Stem Bark of Caesalpinia pulcherrima (L.) Sw.
Authors: Osahon Ogbeide, Vincent Dickson, Randolph Jebba, Dennis Owhiroro, Marvelous Olaoluwa, Bodunde Owolabi, Vincent Imieje, Abiodun Falodun, Pius Fasinu, et al.
Journal: Tropical Journal of Natural Product Research
Year: 2018


Conclusion

Through his research, teaching, and professional work, Dr. Dickson exemplifies the qualities of a modern scientist dedicated to addressing global environmental and industrial challenges. His publications, professional experiences, and adaptability across diverse cultural and technical environments showcase a researcher committed to innovation, collaboration, and sustainability. With his ongoing projects and future prospects, he stands as a promising leader whose contributions will continue to influence academia, industry, and society at large.

Industry Impact Award

Introduction

The Industry Impact Award is a prestigious recognition that honors individuals, teams, and organizations that have made significant contributions to industrial growth, technological advancement, and economic development. This award is dedicated to celebrating research, innovations, and projects that have transformed industries, created sustainable solutions, and driven large-scale improvements in efficiency, productivity, and market competitiveness. With industries constantly evolving due to new technological breakthroughs, policy changes, and sustainability demands, the Industry Impact Award recognizes those who pioneer change and set new benchmarks for excellence in various industrial sectors.

Award Overview

The Industry Impact Award is conferred upon those whose work has had a demonstrable and lasting effect on a specific industry or across multiple industries. The award honors initiatives that have enhanced operational processes, introduced innovative technologies, influenced market dynamics, or contributed to sustainable industrial practices. It acknowledges the collaborative spirit of research institutions, corporate leaders, engineers, and policymakers who have played a crucial role in shaping modern industries. By providing this recognition, the award serves as a platform to encourage further research and implementation of groundbreaking industrial solutions that address present and future challenges.

Eligibility

This award is open to researchers, engineers, industry professionals, academic institutions, and corporate entities that have played a pivotal role in industrial development. Eligible candidates must have undertaken projects or research that have demonstrated tangible impacts in areas such as automation, digital transformation, supply chain efficiency, environmental sustainability, energy conservation, or any other significant industrial domain. The award is open to national and international applicants from all industry sectors, including manufacturing, technology, energy, healthcare, and transportation.

Evaluation Criteria

The selection process for the Industry Impact Award is based on several critical criteria. The innovation and originality of the work are thoroughly evaluated, ensuring that the nominated project introduces new methodologies, technologies, or practices that push industrial boundaries. The measurable impact of the work on industry performance, including increased efficiency, cost savings, or market transformation, is a crucial determinant. Sustainability and long-term benefits are also taken into account, ensuring that the project has a lasting influence on industrial practices. Furthermore, widespread industry adoption, collaborations, and endorsements from key stakeholders enhance the overall evaluation.

Submission Guidelines

Applicants must submit a detailed report that outlines the scope, objectives, methodology, and results of their industrial contributions. The submission should include a research summary explaining how the project or initiative has positively influenced an industry or multiple sectors. Supporting documentation, such as technical papers, patents, case studies, and endorsements from industry leaders, strengthens the submission. A professional biography of the applicant or team is required, detailing their expertise and contributions to industrial research and innovation. Video presentations, real-world implementation reports, and media coverage can also be included to reinforce the significance of the project. All applications must be submitted within the specified deadline to be considered for the award.

Recognition

Winners of the Industry Impact Award receive a prestigious trophy, a certificate of recognition, and widespread acknowledgment through digital and print media. The award brings heightened visibility within the industrial and research community, allowing recipients to showcase their contributions on a global stage. Winners may be invited to speak at industry conferences, workshops, and panel discussions where they can present their findings and influence further industrial advancements. This recognition also enhances career opportunities, attracts potential investors, and fosters new research collaborations, ensuring continued innovation in the respective field.

Community Impact

The Industry Impact Award highlights the broader societal and economic benefits of industrial advancements. By recognizing groundbreaking research and innovation, the award promotes knowledge-sharing and encourages future endeavors that prioritize sustainability, workforce development, and industry-wide progress. The award’s recipients serve as role models who inspire the next generation of researchers, entrepreneurs, and industrial leaders to take on challenges that improve both business and community well-being. Through this award, industries are encouraged to adopt best practices that enhance efficiency, reduce environmental footprints, and promote ethical and responsible growth.

Biography

Applicants must submit a comprehensive biography detailing their academic background, professional achievements, and key contributions to industrial research and development. The biography should reflect the applicant’s dedication, expertise, and long-term vision for industrial transformation. If the submission is made on behalf of a team, the roles and contributions of each member should be clearly outlined. This information helps the selection committee understand the experience and collaborative efforts behind the nominated project or research work.

Abstract

A concise and well-structured abstract summarizing the research or industrial contribution must be submitted. The abstract should clearly define the industrial problem addressed, the objectives of the project, key methodologies used, and the impact achieved. It should also emphasize how the project contributes to long-term industrial improvements and technological advancements. The abstract is a crucial element of the submission as it provides the judges with an overview of the work and its significance in the industrial landscape.

Supporting Files

Applicants are encouraged to submit relevant supporting files that validate the effectiveness and real-world impact of their work. These may include research papers, patents, industrial case studies, endorsements from key stakeholders, media coverage, and technical reports. Videos demonstrating the implementation of the project, testimonials from industry partners, and third-party evaluations further strengthen the submission. High-quality supporting materials enhance the credibility of the nomination and provide concrete evidence of the project's success and impact on industrial progress.

 

 

 

Best Industrial Research Award

Introduction

The Best Industrial Research Award is a prestigious honor designed to recognize outstanding research contributions that drive industrial advancements, technological improvements, and economic growth. Industrial research plays a crucial role in bridging the gap between scientific discoveries and real-world applications, enabling industries to innovate, optimize processes, and develop cutting-edge products. This award aims to celebrate researchers, engineers, and institutions that have made significant contributions to industrial research, fostering innovation and sustainable development across various sectors.

Award Overview

The Best Industrial Research Award is an annual recognition granted to individuals, research teams, or organizations that have demonstrated excellence in industrial research. This award highlights groundbreaking work that has led to transformative advancements in manufacturing, engineering, automation, materials science, and other industry-driven fields. By acknowledging the impact of applied research, the award serves as an inspiration for scientists and engineers to continue pushing the boundaries of innovation, contributing to the progress of industries and economies worldwide.

Eligibility

The award is open to researchers, industrial professionals, research institutions, and organizations engaged in industrial research. Eligible candidates must have conducted research that has been successfully implemented or has shown strong potential for industrial application. The research should address critical industrial challenges, enhance efficiency, or introduce innovative processes and technologies. The competition is open to global applicants, as industrial research is a key driver of economic and technological development across various regions and sectors.

Evaluation Criteria

The evaluation process for the Best Industrial Research Award is based on several key factors. The originality and innovation of the research are assessed to determine its novelty and contribution to industrial advancements. Practical applicability is another crucial criterion, ensuring that the research can be implemented to solve real-world industrial problems. The overall impact on industry efficiency, sustainability, and productivity is taken into account, along with scalability and long-term benefits. Additionally, the research’s recognition in the form of patents, industry adoption, or scientific publications is considered during the evaluation.

Submission Guidelines

Applicants must submit a detailed research dossier that outlines the purpose, methodology, results, and industrial impact of their work. A research summary highlighting key findings and industrial applications should be included. Supporting documents such as patents, published papers, technical reports, and case studies demonstrating the research’s implementation are required. A professional biography detailing the applicant’s background, expertise, and contributions to industrial research is mandatory. Video demonstrations, testimonials from industry partners, and third-party evaluations can further strengthen the application. All submissions must be completed before the specified deadline to be considered for evaluation.

Recognition

Winners of the Best Industrial Research Award receive a prestigious certificate, an award trophy, and extensive recognition through press releases, research journals, and digital media. The award provides an excellent opportunity for recipients to showcase their work to industry leaders, policymakers, and potential investors. Winners may be invited to present their research at international conferences, industrial forums, and specialized research events. The recognition associated with this award enhances the credibility of the researcher or institution, opening doors to new collaborations, funding opportunities, and future research endeavors.

Community Impact

Industrial research has a profound impact on economies, industries, and societies. The Best Industrial Research Award highlights innovations that enhance productivity, promote sustainability, and improve industrial operations. By acknowledging and promoting excellence in industrial research, the award encourages more researchers and organizations to pursue impactful studies that benefit both industry and society. The award fosters collaboration between academic institutions and industrial sectors, promoting the transfer of knowledge and the development of technologies that address global challenges.

Biography

Applicants are required to submit a comprehensive biography detailing their academic and professional journey, key research accomplishments, and contributions to industrial research. The biography should highlight major milestones, challenges overcome, and the vision behind their research efforts. For team submissions, information about each member’s role and expertise should be provided. The biography serves as a vital component of the application, giving insight into the applicant’s dedication, expertise, and long-term goals in industrial research.

Abstract

A well-structured abstract summarizing the research and its industrial significance is required. The abstract should concisely explain the problem addressed, research objectives, methodology, and key findings. The industrial relevance and potential impact of the research should also be emphasized. A strong abstract allows the selection committee to quickly assess the value of the research and its contribution to industrial progress. Applicants should ensure that their abstract effectively communicates the significance and potential of their work in a clear and engaging manner.

Supporting Files

To enhance their application, applicants must provide relevant supporting documents that validate the impact of their research. These may include patents, industry reports, research publications, implementation case studies, and certifications. Testimonials from industry professionals, company endorsements, and video demonstrations of the research in action can further strengthen the submission. High-quality supporting materials provide concrete evidence of the research’s success and its significance in advancing industrial processes, technologies, and innovations.

 

 

 

Xin Shao | Engineering | Best Researcher Award

Dr. Xin Shao | Engineering | Best Researcher Award

State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing | China

Author Profile

Scopus

Orcid

🎓 Early Academic Pursuits

Dr. Xin Shao began his academic journey at the University of Science and Technology Beijing (USTB), where he earned a Bachelor's degree in Metallurgical Engineering (2013-2017). He continued his studies at USTB, pursuing a Doctorate in Metallurgical Engineering (2017-2024). His academic focus laid the groundwork for his later innovations in metallurgical processes and technologies.

💼 Professional Endeavors

Dr. Shao's career has centered on advancing metallurgical engineering, particularly in steelmaking plants. He has made significant strides in process optimization, collaborating on major projects that leverage simulation and intelligent systems to improve steelmaking efficiency. His work emphasizes the application of dynamic collaborative operation technologies in steelmaking.

📚 Contributions and Research Focus

Dr. Shao's research interests include metallurgical process engineering, simulation, and optimization. His contributions to this field are vast, including numerous publications and innovations, such as patented scheduling methods for steelmaking. His research integrates cutting-edge technology like deep neural networks and AI-based models, contributing to advancements in steel production efficiency.

🏆 Accolades and Recognition

Dr. Shao has received several prestigious awards, highlighting his impact in the field. Notably, he earned the Higher Education Science and Technology Progress Award (Second Class, Ministry of Education, China) in 2023 and the National Business Science and Technology Progress Award (First Class, China General Chamber of Commerce) in 2021. These awards recognize his innovative contributions to steelmaking processes.

🌍 Impact and Influence

Dr. Shao’s influence extends through his patents and software copyrights, demonstrating his role in the digital transformation of metallurgical engineering. His intellectual property, including analysis software for mass and heat balance and intelligent production scheduling systems, has brought transformative changes to the steelmaking industry.

✨ Legacy and Future Contributions

As Dr. Shao's research continues to evolve, his future contributions are poised to influence not only academic circles but also the broader industrial landscape. His innovative methods for optimizing steelmaking processes set the stage for future breakthroughs, ensuring his lasting legacy in metallurgical engineering.

 

Publications


📄Simulation Model of a Steelmaking–Continuous Casting Process Based on Dynamic-Operation Rules
Authors: Shao, X., Liu, Q., Chen, H., Gao, S., Li, S.
Journal: Materials
Year: 2024


📄Hybrid Model for BOF Oxygen Blowing Time Prediction Based on Oxygen Balance Mechanism and Deep Neural Network
Authors: Shao, X., Liu, Q., Xin, Z., Zhou, T., Li, S.
Journal: International Journal of Minerals, Metallurgy and Materials
Year: 2024


📄A Hybrid Model for Power-on Time Prediction in LF Based on Deep Neural Network and Metallurgical Mechanism
Authors: Shao, X., Liu, Q., Zhou, T., Li, S.
Journal: Proceedings - 2022 15th International Symposium on Computational Intelligence and Design (ISCID)
Year: 2022


📄Multiscale Modeling and Collaborative Manufacturing for Steelmaking Plants | 炼钢厂多尺度建模与协同制造
Authors: Liu, Q., Shao, X., Yang, J.-P., Zhang, J.-S.
Journal: Chinese Journal of Engineering
Year: 2021


📄Cooperative Control of Multi-process Operation in Steelmaking-Continuous Casting Section | 炼钢-连铸区段多工序运行协同控制
Authors: Shao, X., Yang, J.-P., Wang, B.-L., Gao, S., Liu, Q.
Journal: Iron and Steel
Year: 2021


 

Qing Liu | Engineering | Best Researcher Award

Prof Dr. Qing Liu | Engineering | Best Researcher Award

University of Science and Technology Beijing | China

Author Profile

Orcid

Early Academic Pursuits 📚

Prof. Dr. Qing Liu's academic journey began with a Bachelor of Metallurgical Engineering from the University of Science and Technology Beijing (USTB). His pursuit of advanced knowledge led him to earn a Master’s and Ph.D. in Metallurgical Engineering from the same institution, focusing on Ferrous Metallurgy. His foundational education was further enriched by a visiting scholar position at La Trobe University, Australia.

Professional Endeavors 🔬

Prof. Liu has made significant strides in his professional career at USTB, where he has served in various roles, including Professor, Deputy Director of the State Key Laboratory of Advanced Metallurgy, and Vice Dean of the School of Metallurgical Engineering. His leadership extends beyond USTB, with positions such as Foreign Member of the Russian Academy of Natural Sciences and Fellow of the International Association of Advanced Materials. He has also contributed to the field through his roles in numerous technical committees and research centers, focusing on steel manufacturing and metallurgical processes.

Contributions and Research Focus 🔍

Prof. Liu's research emphasizes optimization and quality control in steelmaking and continuous casting processes. His work in metallurgical process engineering and intelligence has led to significant advancements in simulation, optimization, and the high-efficiency utilization of metallic resources. His research has been recognized with several prestigious awards, including the Golden Scientist Grand Award and the Invention Entrepreneurship and Innovation Award.

Accolades and Recognition 🏆

Prof. Liu's innovative contributions have earned him numerous accolades. These include the Golden Scientist Grand Award for “Multiscale modeling and collaborative manufacturing for steelmaking plants,” the Gold Medal at the World Invention Innovation Contest, and multiple awards for his advancements in steel casting and refining processes. His achievements are a testament to his impact and leadership in the field of metallurgy.

Impact and Influence 🌟

Prof. Liu's work has profoundly influenced the field of metallurgical engineering, particularly in steel manufacturing processes. His research has not only advanced theoretical understanding but also led to practical innovations that improve industry practices. His leadership roles and active participation in various international and national committees reflect his commitment to advancing metallurgy.

Legacy and Future Contributions 🔮

Prof. Liu's legacy is defined by his groundbreaking research and contributions to metallurgical engineering. His future work promises to continue advancing the field, particularly through further innovations in steelmaking processes and resource utilization. His ongoing commitment to education and research ensures that his impact will be felt by future generations of engineers and researchers.

 

Publications


  • 📜 Simulation Model of a Steelmaking–Continuous Casting Process Based on Dynamic-Operation Rules
    • Author: Xin Shao, Qing Liu, Hongzhi Chen, Jiangshan Zhang, Shan Gao, Shaoshuai Li
    • Journal: Materials
    • Year: 2024

  • 📜 Influence of Different Submerged Entry Nozzles for Continuous Casting of Ultrathick Slab
    • Author: Quanhui Li, Qing Liu, Qiangqiang Wang, Shengping He, Xinping Mao
    • Journal: Steel Research International
    • Year: 2024

  • 📜 Numerical Simulation of Heat Transfer Behavior in Hot Spot Zone of Converter Molten Bath
    • Author: Rui Jiang, Jiankun Sun, Xinping Mao, Qing Liu
    • Journal: Steel Research International
    • Year: 2024

  • 📜 Modeling of LF Refining Process: A Review
    • Author: Zi-cheng Xin, Jiang-shan Zhang, Kai-xiang Peng, Jun-guo Zhang, Chun-hui Zhang, Qing Liu
    • Journal: Journal of Iron and Steel Research International
    • Year: 2024

  • 📜 Analysis and Control of the Slab Hot Ductility Behaviors Based on Nozzle Arrangement during Continuous Casting
    • Author: Huisheng Wang, Jiangshan Zhang, Chao Wang, Zhigang Yang, Jun Wu, Min Guan, Qing Liu
    • Journal: Steel Research International
    • Year: 2024

 

Aylin Pakzad | Engineering | Best Researcher Award

Dr. Aylin Pakzad | Engineering | Best Researcher Award

Kosar University of Bojnord | Iran

Author Profile

Scopus

Google Scholar

🎓 Early Academic Pursuits

Dr. Aylin Pakzad's academic journey began with a Bachelor's degree in Industrial Engineering, specializing in industrial production, from Shahid Bahonar University of Kerman, graduating in 2018. Her passion for the field led her to pursue a Master's degree in Industrial Engineering with a specialization in industrial systems at the same university, completing it in 2013. She furthered her education with a study opportunity at Iran University of Science and Technology from December 2018 to June 2019. Dr. Pakzad culminated her academic pursuits with a Ph.D. in Industrial Engineering from Ferdowsi University of Mashhad, a degree she accepted in July 2022.

💼 Professional Endeavors

Dr. Pakzad has held several significant academic positions, showcasing her leadership and expertise in the field. She served as the Deputy Director of the Industrial Engineering Department at Ishraq Bojnoord Institute of Higher Education in 2014. From 2013 to 2015, she was the Head of the Industrial Engineering Department at Kausar Bojnord University. Since 2014, Dr. Pakzad has been a valued member of the faculty at the Faculty of Technology, Engineering, and Basic Sciences at Kausar Bojnord University.

🔬 Contributions and Research Focus

Dr. Pakzad's research is marked by a focus on Statistical Quality Control, Process Capability Analysis, Fuzzy Statistics, and Data Mining. Her scholarly contributions are reflected in her numerous publications in international journals. Notable works include her 2014 study on evaluating the performance of an educational system using an Analytic Hierarchy Process- Assurance Region- Joint Multiple Layer Data Envelopment Analysis Model. Her research extends to developing new indices for process capability analysis and innovative approaches to data mining.

🏆 Accolades and Recognition

Dr. Pakzad's academic and research excellence has earned her recognition within the industrial engineering community. Her work has been featured in both international journals and conferences, such as the International Journal of Data Envelopment Analysis and the Journal of Statistical Computation and Simulation. Her pioneering research on process capability indices for linear profiles and innovative approaches to quality engineering has cemented her reputation as a leading expert in her field.

🌍 Impact and Influence

Dr. Pakzad's influence extends beyond academia. Her research has practical applications in quality management, industrial engineering, and data analysis, impacting various industries. Her work on statistical models and process capability indices has provided valuable tools for engineers and researchers alike, contributing to the advancement of industrial practices and academic knowledge.

🌟 Legacy and Future Contributions

Dr. Pakzad continues to push the boundaries of industrial engineering with her innovative research and dedicated teaching. Her legacy is one of intellectual rigor, leadership, and a commitment to advancing the field of industrial engineering. As she continues her work, Dr. Pakzad is poised to make further significant contributions, shaping the future of industrial engineering and inspiring the next generation of engineers and researchers.

 

Publications 


📝Process Capability Index for Simple Linear Profile in the Presence of Within- and Between-Profile Autocorrelation 
Authors: Aylin Pakzad , Ali Yeganeh , Rassoul Noorossana , and Sandile Charles Shongwe
Journal: Mathematics
Year: 2024


📝Process Capability Analysis for Simple Linear Profiles 
Authors: Aylin Pakzad , S. Adibfar , H. Razavi , R. Noorossana
Journal: Quality & Quantity
Year: 2024


📝Problem Development, Model Formulation and Proposed Algorithm for Capacitated Arc Routing Problem with Priority Edges 
Authors: F. Tanhaie , Aylin Pakzad
Journal: International Journal of Industrial Engineering and Production Research
Year: 2023


📝A New Incapability Index for Simple Linear Profile with Asymmetric Tolerances 
Authors: Aylin Pakzad , E. Basiri
Journal: Quality Engineering
Year: 2023


📝Developing Loss-Based Functional Process Capability Indices for Simple Linear Profile 
Authors: Aylin Pakzad , H. Razavi , B. Sadeghpour Gildeh
Journal: Journal of Statistical Computation and Simulation
Year: 2022


 

 

Noorfidza Yub Harun | Chemical Engineering | Best Researcher Award

Dr. Noorfidza Yub Harun | Chemical Engineering | Best Researcher Award

Universiti Teknologi Petronas | Malaysia

Author Profile

Scopus

Google Scholar

Early Academic Pursuits 🎓

Dr. Noorfidza Yub Harun's academic journey is marked by a strong foundation in both chemical and mechanical engineering. She earned her PhD in Mechanical Engineering from the University of New Brunswick, where she also obtained a Diploma in University Teaching. Her earlier academic qualifications include an MSc in Forest Engineering, another MSc in Environmental Energy Engineering from the University of Sheffield, and a BEng in Chemical and Process Engineering from the National University of Malaysia. These diverse academic experiences have provided her with a broad and deep understanding of engineering principles, particularly in the fields of environmental and mechanical engineering.

Professional Endeavors 💼

As a Senior Lecturer at Universiti Teknologi PETRONAS, Dr. Noorfidza has made significant contributions to the field of chemical engineering through her teaching and research. Her professional endeavors include leading numerous research projects, such as the synthesis of mechanical characteristics and ash fusion temperature of krafts-based pellet fuel and the development of biochar-based adsorbents for heavy metals remediation. These projects not only highlight her expertise but also her commitment to advancing sustainable and environmentally friendly engineering solutions.

Contributions and Research Focus 🔬

Dr. Noorfidza's research primarily focuses on the intersection of environmental sustainability and engineering. Her work on ash fusion behavior, biochar development, and the incorporation of glycerol as a compatibilizer in biopolymer matrices are particularly noteworthy. These projects demonstrate her ability to address complex environmental challenges through innovative engineering solutions. Her research has significant implications for the fields of energy production, waste management, and environmental remediation, making her a key contributor to sustainable engineering practices.

Accolades and Recognition 🏅

Throughout her career, Dr. Noorfidza has been recognized for her contributions to academia and research. Her role as the principal investigator in several high-impact research projects is a testament to her leadership and expertise. Her work has garnered attention within the academic community, particularly for its focus on sustainable engineering solutions. While specific awards and accolades are not detailed here, her ongoing research projects and the respect she commands in her field suggest a scholar of high repute.

Impact and Influence 🌍

Dr. Noorfidza's impact extends beyond her immediate academic environment. Through her research, she has contributed to the development of sustainable engineering practices that have the potential to address global environmental challenges. Her work on biochar-based adsorbents and renewable energy sources like biomass and sludge-derived fuels has influenced both the academic community and industry practices. Additionally, her teaching has shaped the next generation of engineers, instilling in them the importance of environmental sustainability in engineering.

Legacy and Future Contributions 🌟

As Dr. Noorfidza continues her work at Universiti Teknologi PETRONAS, her legacy is likely to be one of innovation and dedication to sustainable engineering. Her ongoing research and teaching efforts ensure that she will continue to contribute significantly to the field. Her work not only addresses current environmental challenges but also lays the groundwork for future advancements in chemical and environmental engineering. Dr. Noorfidza's career thus far suggests that her future contributions will continue to impact the field positively, making her a worthy candidate for recognition as an outstanding scholar.

 

Publications  📚


📄 Title: Response Surface Methodology and Artificial Neural Network Modelling of Palm Oil Decanter Cake and Alum Sludge Co-Gasification for Syngas (CO+H2) Production
Authors: Kunmi Joshua Abioye, Noorfidza Yub Harun, Ushtar Arshad, Suriati Sufian, Mohammad Yusuf, Ahmad Hussaini Jagaba, Joshua O. Ighalo, Abdullah A. Al-Kahtani, Hesam Kamyab, Ashok Kumar, Chander Prakash, Jude A. Okolie, Hussameldin Ibrahim
Journal: International Journal of Hydrogen Energy
Year: 2024


📄 Title: Optimization of Operational Parameters Using Artificial Neural Network and Support Vector Machine for Bio-oil Extracted from Rice Husk
Authors: Ahmed, A., Yub Harun, N., Waqas, S., Arshad, U., Ghalib, S.A.
Journal: ACS Omega
Year: 2024


📄 Title: Optimization of Syngas Production from Co-Gasification of Palm Oil Decanter Cake and Alum Sludge: An RSM Approach with Char Characterization
Authors: Abioye, K.J., Harun, N.Y., Sufian, S., Chelliapan, S., Kang, K.
Journal: Environmental Research
Year: 2024


📄 Title: Energy-Efficient Single-Stage Membrane Rotating Biological Contactor for Wastewater Treatment
Authors: Waqas, S., Harun, N.Y., Lock, S.S.M., Alsaadi, A.S.
Journal: Bioresource Technology Reports
Year: 2024


📄 Title: Optimization of Operational Parameters Using RSM, ANN, and SVM in Membrane Integrated with Rotating Biological Contactor
Authors: Waqas, S., Harun, N.Y., Arshad, U., Nordin, N.A.H., Alsaadi, A.S.
Journal: Chemosphere
Year: 2024


 

Herliati Rahman | Chemical Engineering | Best Researcher Award

Prof Dr. Herliati Rahman | Chemical Engineering | Best Researcher Award

Universitas Jayabaya, Jakarta | Indonesia

Author Profile

Orcid

Early Academic Pursuits

Dr. Herliati Rahman embarked on her academic journey with a Bachelor's degree in Chemical Engineering from Universitas Sriwijaya in July 1993. This foundational education laid the groundwork for her subsequent achievements in the field.

Professional Endeavors

Following her Bachelor's degree, Dr. Rahman pursued a Master's degree in Chemical Engineering at Universitas Indonesia in February 2003. This advanced academic pursuit equipped her with deeper insights and expertise in her field of study. Subsequently, she continued her academic journey by obtaining a doctoral degree in Chemical Engineering from Universiti Putra Malaysia in May 2013, marking a significant milestone in her academic and professional career.

Contributions and Research Focus

Dr. Rahman's research primarily focuses on the utilization of biodiesel waste, particularly glycerol-based, for sustainable energy solutions and chemical production. Her notable contributions include innovative studies on bioethanol synthesis, epoxy resin production, and the purification of crude glycerol. Her research has been pivotal in exploring new applications and enhancing the efficiency of industrial processes.

Accolades and Recognition

Throughout her career, Dr. Rahman has received recognition for her pioneering research efforts and contributions to sustainable technology. She has been awarded multiple research grants from prestigious institutions, including the National Research and Innovation Agency (RISTEK-BRIN) and the Ministry of Research and Higher Education Technology of Indonesia.

Impact and Influence

Dr. Rahman's research has had a significant impact on the field of chemical engineering, particularly in promoting sustainable practices and optimizing industrial processes. Her publications in reputable journals and patents underscore her influence and contribution to advancing knowledge in her field.

Legacy and Future Contributions

Looking ahead, Dr. Rahman continues to aspire towards expanding the boundaries of sustainable technology and chemical engineering. Her legacy includes a commitment to fostering innovation, promoting environmental sustainability, and inspiring future generations of researchers in the field.

 

Notable Publications

Exploring microbial lipases: Screening and identification for biocatalyst potential in bioethanol synthesis from glycerol-based biodiesel waste 2024

Ultraviolet Shielding Performance of Coconut Coir as a Filler in Low-Density Polyethylene (LDPE) Plastic Mulch 2024

Purifying Crude Glycerol from Biodiesel Production for Sustainable Energy Solutions 2023

IMPROVE THE COMPRESSIVE STRENGTH USING A STRENGTH IMPROVER AGENT (SIA) IN THE CEMENT INDUSTRY IN INDONESIA 2023

Analysis of electrostatic precipitators plate-wire type in reducing dust emissions for sustainable environment 2023