Mrs. Chengcheng Fan | Risk Management | Best Researcher Award

Mrs. Chengcheng Fan | Risk Management | Best Researcher Award

School of Civil Engineering, Zhengzhou University, China

Author Profile

ORCID

🎓 Early Academic Pursuits

Chengcheng Fan’s journey into the world of materials science and civil engineering began with a strong academic foundation laid at the North China University of Water Resources and Electric Power, where he pursued a Bachelor’s degree in Inorganic Non-metallic Materials Engineering from 2010 to 2014. His early fascination with materials, particularly their role in structural integrity and sustainability, spurred him to deepen his knowledge further. This academic curiosity led him to continue at the same institution for a Master’s degree in Architecture and Civil Engineering (2014–2017), where he honed his skills in design, construction methods, and the application of advanced materials in infrastructure development.

Chengcheng’s growing interest in material innovation for environmental sustainability culminated in his enrollment at the prestigious Dalian University of Technology, where he earned his Ph.D. in Materials Science between 2017 and 2022. During his doctoral studies, he engaged in cutting-edge research involving the transformation and reuse of industrial by-products—a theme that would go on to define his professional career.

🧪 Professional Endeavors and Research Focus

Following his doctorate, Chengcheng Fan joined Dalian University of Technology as a Postdoctoral Researcher and Research Assistant from 2023 to early 2025. During this period, he was deeply involved in high-level research focused on solid waste resource utilization, particularly the treatment and repurposing of municipal solid waste incineration (MSWI) fly ash. His technical proficiency and innovative approach led to substantial contributions to national and provincial research projects.

In April 2025, Chengcheng Fan began his tenure as an Associate Research Fellow at the School of Civil Engineering, Zhengzhou University, further solidifying his place in academia. His research continues to bridge the gap between material science and environmental sustainability, especially in developing eco-friendly building materials from industrial waste—a field critical to China’s carbon neutrality goals and global environmental commitments.

His active research projects include leadership roles in the Youth Fund Project of the National Natural Science Foundation of China, the Natural Science Foundation of Liaoning Province, and the Postdoctoral Fellowship Program of the China Postdoctoral Science Foundation (CPSF). Furthermore, his collaborative efforts have contributed to high-impact national initiatives, such as the Key Project Supported by the Joint Funds of NSFC (U20A20324) and the Dalian Science and Technology Innovation Fund Project.

🧬 Contributions and Innovations

Chengcheng Fan has made noteworthy contributions to material engineering and waste management through both academic research and practical invention. His innovations are most evident in the patents he co-authored, specifically targeting the stabilization and reutilization of MSWI fly ash. His patented curing and solidifying agents represent a significant step forward in safe, efficient, and sustainable waste treatment.

Among these is the U.S. patent (US 11919811 B1) awarded in 2024 for a curing agent designed to dispose of municipal solid waste incineration fly ash. This patent not only underlines the novelty of his research but also signals international recognition. Another patent was registered in South Africa (202210979999.3), showcasing the global applicability and appeal of his research outcomes.

His scholarly impact is steadily growing, as reflected in his citation index of 17, and his influence is expected to increase as more of his work reaches wider academic and industrial audiences.

🏆 Accolades and Recognition

While Chengcheng Fan is in the early stages of his independent research career, his role as Principal Investigator on multiple nationally funded projects attests to the academic community’s recognition of his potential. Receiving funding from prestigious bodies such as the NSFC and CPSF is a testament to both the originality and importance of his work.

His patents and published works have also garnered attention from industry stakeholders focused on building materials and solid waste management, paving the way for impactful collaboration between academia and the private sector.

🌱 Impact, Influence, and Future Legacy

Chengcheng Fan’s research holds tremendous promise in addressing one of the most pressing challenges of our time: sustainable development through the reuse of industrial by-products. By engineering innovative materials from waste, he contributes directly to reducing environmental burdens and advancing circular economy practices in China and beyond.

He stands at the intersection of materials science, civil engineering, and environmental sustainability. His work not only helps shape cleaner cities but also informs the training of the next generation of engineers and researchers. As an emerging academic leader, Chengcheng’s influence is growing both within his university and the broader scientific community.

Looking ahead, his commitment to eco-innovative engineering, coupled with his experience in high-level collaborative projects, positions him to become a pivotal figure in sustainable infrastructure research. His legacy will likely be marked by groundbreaking discoveries, practical applications in waste reutilization, and meaningful contributions to both environmental policy and green engineering education.

🔭 Looking Forward

With a strong academic pedigree, a portfolio of impactful patents, and a clear research vision, Chengcheng Fan is well on his way to establishing a lasting legacy in sustainable civil engineering. As he continues his work at Zhengzhou University, he is poised to lead transformative projects that not only solve technical challenges but also contribute to global environmental goals. 🌏

📝Notable Publications

Adsorption behavior and mechanism of Cr(III) adsorption on layered double hydroxide and its calcined product in a strongly alkaline environment

Authors: Baomin Wang, Weigao Ding, Chengcheng Fan, Fei Liu, Haohan Yu
Journal: Powder Technology
Year: 2025

Development and Validation of Asphalt Pavement Rutting Prediction Model with Transient Temperature Field Considered

Authors: Fei Liu, Changjun Zhou, Baomin Wang, Zengtao Chen, Chengcheng Fan, Guozhen Cao
Journal: Transportation Research Record: Journal of the Transportation Research Board
Year: 2025

Immobilization and coordination chemistry of Friedel’s salt (Ca/Al-LDHs) on heavy metals removal

Authors: Chengcheng Fan, Baomin Wang, Hu Feng, Hongyu Zhou, Yihan Zhang, Weigao Ding, Fei Liu
Journal: Process Safety and Environmental Protection
Year: 2025

Reaction Mechanism of Active Al₂O₃ Groups in Geopolymers: A DFT Study

Authors: Jiazhi Huang, Gaonian Li, Shipeng Zhang, Chengcheng Fan
Journal: Journal of Materials in Civil Engineering
Year: 2024

 Investigating the interfacial vertical shear behavior of BFPMPC mortar and cement concrete with pothole repair

Authors: Fei Liu, Baomin Wang, Changjun Zhou, Zengtao Chen, Chengcheng Fan
Journal: Journal of Building Engineering
Year: 2024

Dr. Ohidul Alam | Risk Management | Best Researcher Award

Dr. Ohidul Alam | Risk Management | Best Researcher Award

Jiangsu University, China

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🎓 Early Academic Pursuits

Dr. Ohidul Alam was born on May 5, 1988, in the coastal village of Bamula Para, Rajakhali, Pekua, located in Cox’s Bazar, Bangladesh—a place rich in biodiversity yet challenged by environmental vulnerabilities. From this early exposure to the delicate balance of nature and community, Dr. Alam developed a strong curiosity about environmental sustainability. This passion led him to pursue a formal academic journey in Environmental Science at the University of Chittagong, where he completed both his BSc (Hons.) and MS degrees. His academic performance was distinguished, driven by a vision to contribute meaningfully to solving real-world environmental problems.

Building on his foundational education, Dr. Alam broadened his global academic perspective by earning a Master of Engineering in Environmental Engineering at the UNEP-Tongji Institute of Environment for Sustainable Development, Tongji University in Shanghai. His thirst for research excellence culminated in a Ph.D. in Environmental Engineering at the East China University of Science and Technology. These academic milestones reflect not only his technical proficiency but also a resilient and inquisitive mindset eager to address the pressing environmental challenges of the modern world. 🌍📚

🧑‍🔬 Professional Endeavors

Dr. Alam’s professional career is a seamless extension of his academic dedication. His current role as a Post-doctoral Research Fellow at Jiangsu University’s School of the Environment and Safety Engineering allows him to pursue applied environmental research at the intersection of materials science, pollution mitigation, and sustainability. He is engaged in developing cutting-edge solutions in the form of environmental materials for adsorption, energy storage, and the purification of contaminated water systems.

Before this academic post, he served as an Environmental Officer under the Sustainable Enterprise Project (SEP) at the Integrated Development Foundation (IDF) in Bangladesh. There, he contributed to grassroots environmental management strategies and enterprise-based sustainability initiatives. His brief tenure as a Manager at the Department of Environment also showcases his capacity to work in administrative and managerial roles, adapting his scientific insights to policy and implementation contexts. These diverse experiences reflect a rare combination of field-level awareness, technical mastery, and policy engagement. 🏞️🔧

🔬 Contributions and Research Focus

Dr. Alam’s scholarly focus is impressively multifaceted. His core research domains include hazardous waste treatment, life cycle assessment (LCA), composite and energy storage materials, wastewater treatment, microplastics pollution, coastal environment management, and antibiotic resistance genes in aquatic systems. These areas are not only scientifically demanding but also critically important in the face of growing global ecological threats.

His academic contributions are substantial: 16 SCI-indexed journal articles, 9 international open-access papers, 3 national journal publications, 13 international conference papers, and 3 technical or working papers. Furthermore, Dr. Alam has served as a Principal Investigator in over five environment-related research projects, along with several associate and assistant roles in others. His research is always grounded in real-world relevance, targeting environmental resilience and sustainability. 🧫🔬🌿

🏅 Accolades and Recognition

Though early in his professional journey, Dr. Alam has already built a reputation for excellence and commitment within the academic community. His scholarly achievements, especially in high-impact areas like pollution control and green technology, have been recognized in both Bangladesh and abroad. More notably, his influence extends beyond publications—he is widely respected as a mentor and collaborator, having assisted colleagues and students in thesis development, scientific writing, and research methodology. This collegial spirit and commitment to academic growth underscore the quality of his character and leadership. 🤝📖

🌐 Impact and Influence

Dr. Alam’s work holds significant implications across multiple layers of environmental science and policy. From devising better wastewater purification systems to proposing sustainable energy storage solutions, his innovations have direct applications in both industrial and community contexts. His research on microplastics and antibiotic resistance addresses some of the most urgent environmental and public health concerns today.

In addition to his scientific contributions, Dr. Alam’s impact is felt in capacity-building efforts in both academic and rural communities. By actively engaging with peers and practitioners, he fosters interdisciplinary collaboration and knowledge-sharing. His global academic training and practical fieldwork uniquely position him to bridge gaps between policy, research, and on-ground implementation. 🌏⚙️🌱

🔮 Legacy and Future Contributions

Looking ahead, Dr. Ohidul Alam envisions a future where innovative environmental materials and sustainable technologies become standard tools for combating ecological degradation. He aims to lead international research collaborations focused on biomass energy, pollution abatement, and next-generation environmental materials. Driven by a mission to create measurable impact, he also seeks to continue mentoring young researchers and contributing to educational development in Bangladesh and beyond.

Dr. Alam’s legacy will likely be one of scientific rigor, social responsibility, and sustainable innovation. His multidimensional approach—blending academic research with policy insight and field practice—sets a powerful example for aspiring environmental scientists worldwide. 🌟🔭

📝Notable Publications

An in-depth review on municipal solid waste management, treatment and disposal in Bangladesh

Author(s): O. Alam, X. Qiao
Journal: Sustainable Cities and Society
Year: 2020

Characteristics of plastic bags and their potential environmental hazards

Author(s): O. Alam, M. Billah, D. Yajie
Journal: Resources, Conservation and Recycling
Year: 2018

 Determination of the selected heavy metal and metalloid contents in various types of plastic bags

Author(s): O. Alam, L. Yang, X. Yanchun
Journal: Journal of Environmental Health Science and Engineering
Year: 2019
Volume/Issue/Page: Volume 17, Issue 1, Pages 161–170
Citations: 45

 Heavy metals dispersion during thermal treatment of plastic bags and its recovery

Author(s): O. Alam, S. Wang, W. Lu
Journal: Journal of Environmental Management
Year: 2018

Remediation of heavy metals polluted soil environment: A critical review on biological approaches

Author(s): X. Zheng, H. Lin, D. Du, G. Li, O. Alam, Z. Cheng, X. Liu, S. Jiang, J. Li
Journal: Ecotoxicology and Environmental Safety
Year: 2024

Assoc Prof Dr. Chunzhu WEI | Risk Management | Best Researcher Award

Assoc Prof Dr. Chunzhu WEI | Risk Management | Best Researcher Award

Sun Yat-Sen University, China

Author Profile

Google Scholar

🎓 Early Academic Pursuits

Dr. Chunzhu Wei is a distinguished Chinese geographer whose academic journey reflects a seamless blend of dedication, technical proficiency, and interdisciplinary exploration. His foundation in science began at Northwest University in Xi’an, where he earned his Bachelor of Science in Environmental and Resource Science (2006–2010). During this period, his early curiosity in geoinformatics and spatial data analysis sparked the design of a population evacuation simulation model, laying the groundwork for his future focus on GIS and remote sensing applications in environmental and urban contexts.

He pursued his Master’s degree in Automation from the University of Electronic Science and Technology of China in Chengdu (2010–2013), where he sharpened his skills in data analysis, spatial modeling, and systems engineering. These competencies matured into a deeper academic engagement during his Ph.D. studies in Geoinformatics at the University of Salzburg, Austria (2013–2017). There, he expanded his research on urban and environmental analytics with a global lens, engaging with European and Asian institutions in collaborative international science projects.

🧑‍💼 Professional Endeavors

Currently serving as an Associate Professor at the School of Geography and Planning, Sun Yat-sen University, Guangzhou, Dr. Wei has positioned himself at the forefront of research and teaching in geospatial analytics, urban resilience, and global trade network simulation. His academic home, nestled within one of China’s leading research universities, provides a vibrant environment for interdisciplinary exploration and innovation.

Dr. Wei has helmed and collaborated on a multitude of prestigious projects over the last 15 years. Notably, he leads a major project (2025–2028) on global shipping network resilience under extreme events using AIS data and agent-based modeling, reflecting his expertise in simulating dynamic systems. Another significant project (2021–2023) investigates port-proximate area evolution in the South China Sea Rim across scales—global to local—offering practical insights for economic and environmental planning.

His earlier professional contributions span a range of impactful domains: from urban heat island estimation in international research programs between China and Hungary to coastal risk assessments in Portugal under the Copernicus EMS Risk and Recovery Mapping. These experiences have enriched his technical palette in satellite image processing, vulnerability assessment, and spatial-statistical integration.

🛰️ Contributions and Research Focus

Dr. Wei’s research orbits around several interlinked cores: multi-source satellite imagery, urban and trade network resilience, and geospatial statistical methods. His work merges physical and social dimensions of geography, enabling him to tackle climate stress, urban inequality, and global logistics with scientific rigor and data-driven strategies.

A prolific author, his scholarly contributions include recent publications in high-impact journals:

  • In Resources, Conservation and Recycling (2025), he analyzed post-pandemic grain trade resilience, offering a novel port-centric view of global food security.

  • His work in Marine Pollution Bulletin (2025) highlights increased marine and terrestrial heatwave events in China’s coastal zones—an urgent environmental challenge.

  • Published in Transportation Research Part D (2024), he advanced port cluster resilience assessment using hypergraph and agent-based modeling—a cutting-edge methodological innovation.

  • He has also addressed urban deprivation, land surface temperature, and unplanned settlement mapping using super-resolution GANs, as seen in the International Journal of Digital Earth (2023).

Each study reveals Dr. Wei’s commitment to integrating advanced computation, spatial science, and policy relevance in tackling some of today’s most pressing geographic issues.

🏆 Accolades and Recognition

While specific awards are not detailed in the provided record, Dr. Wei’s sustained leadership in major national and international research programs and his publication record in reputable peer-reviewed journals signify substantial recognition in the academic and professional geospatial communities. His international collaborations—especially across Europe and Asia—demonstrate his esteem and reach within global research networks.

🌍 Impact and Influence

Dr. Wei’s influence resonates through both scholarly and practical domains. His insights on urban morphology, climate risk, and trade system fragility are increasingly relevant as cities grapple with environmental stress, shifting demographics, and geopolitical uncertainties. His work on coastal aquaculture, port accessibility, and urban vulnerability informs sustainable planning and policy adaptation.

Furthermore, his research informs decision-makers, urban planners, and logistics experts on how to design robust, equitable, and climate-resilient infrastructures. By quantifying and modeling the interdependencies within urban and trade systems, he provides tools for managing shocks—natural or socio-economic—in a rapidly changing world.

🔮 Legacy and Future Contributions

Looking ahead, Dr. Wei is poised to play a pivotal role in shaping resilient urban and trade systems through AI-integrated spatial modeling, remote sensing innovations, and cross-scale analytics. His leadership in longitudinal satellite analysis and agent-based simulations positions him as a thought leader in designing adaptive systems for complex, multi-layered geographic phenomena.

With his roots in field-based inquiry and his eyes on satellite-based surveillance of Earth systems, Dr. Wei bridges local concerns with global strategies. His career thus far suggests a future rich in cross-disciplinary breakthroughs, particularly at the intersections of climate science, urban resilience, and technological foresight.

Understanding the effects of 2D/3D urban morphology on land surface temperature based on local climate zones

Authors: L Zhou, B Yuan, F Hu, C Wei, X Dang, D Sun
Journal: Building and Environment
Year: 2022

Measuring urban agglomeration using a city-scale dasymetric population map: A study in the Pearl River Delta, China

Authors: C Wei, H Taubenböck, T Blaschke
Journal: Habitat International
Year: 2017

Assessment of coastal aquaculture for India from Sentinel-1 SAR time series

Authors: KA Prasad, M Ottinger, C Wei, P Leinenkugel
Journal: Remote Sensing
Year: 2019

Relationship between urban landscape structure and land surface temperature: Spatial hierarchy and interaction effects

Authors: L Zhou, F Hu, B Wang, C Wei, D Sun, S Wang
Journal: Sustainable Cities and Society
Year: 2022

Multiscale evaluation of an urban deprivation index: Implications for quality of life and healthcare accessibility planning

Authors: P Cabrera-Barona, C Wei, M Hagenlocher
Journal: Applied Geography
Year: 2016