Khadra Zaid | Earth Sciences | Young Researcher Award

Ms. Khadra Zaid | Earth Sciences | Young Researcher Award 

Ms. Khadra Zaid, at Mohammed Premier Oujda, Morocco.

Khadra Zaid is a Moroccan Ph.D. candidate in Economic Geology and Geochemistry at Mohamed Premier University in Oujda. Her doctoral research investigates the genesis of Pb–Zn–Ag–F–Ba sulfide mineralization in the Upper Moulouya district, using isotopic tracing methods to elucidate spatio-temporal links between basement and cover strata. She holds a Master’s degree in Economic Geology from Chouaib Doukkali University and a Bachelor’s degree in Gitology from Moulay Ismail University. Over recent years, Khadra has participated in numerous advanced training programs and scientific internships across Europe—including Germany, Belgium, and France—solidifying her expertise in mineral deposit characterization, fluid inclusion studies, and isotope geochemistry. She is an active member of international geological societies and served on organizing committees and teaching teams. Khadra’s work bridges field geology, laboratory geochemistry, and interdisciplinary collaboration, positioning her as a rising expert in the study of critical-metal-bearing ore systems.

Professional Profile

ORCID

Google Scholar

🎓 Education

Khadra earned her Ph.D. candidacy in Economic Geology and Geochemistry from Mohamed Premier University, Oujda, starting November 2019. Under Prof. Bouabdellah Mohammed’s supervision, her research focuses on the genesis of Pb–Zn–Ag–F–Ba sulfide mineralization in the Upper Moulouya district through multi-isotope analyses. In July 2018, she completed her Master’s in Economic Geology at Chouaib Doukkali University, examining the Sidi Said ore deposit’s geology and geochemistry. Earlier, in July 2015, she obtained a Bachelor’s degree in Gitological Studies from Moulay Ismail University, where her thesis centered on Fl–Ba mineralization at the Oukhit deposit in Morocco’s Anti-Atlas. Khadra also earned her high school diploma in Physical and Chemical Sciences from Ibn Sina High School, Guercif, in 2013. Her academic trajectory demonstrates a consistent focus on ore deposit geology, equipping her with robust theoretical knowledge and practical research skills in economic geology.

💼 Experience

Since September 2022, Khadra has headed the SEM‑EDS analytical platform at the Faculty of Science, Oujda, overseeing microchemical investigations of mineral samples. She has engaged in extensive international research exchanges: at GFZ Potsdam (Sept 2024), Helmholtz Institute Freiberg (Aug–Nov 2024), University of Liège (Apr–May 2024), and University of Namur (Apr–Jul 2023), all as visiting scientist or Erasmus intern. In December 2024, she attended the Freiberg Short Course on Critical Raw Materials. Earlier, in early 2024, Khadra interned under renowned geochemists and participated in schools on deep crustal processes, remote sensing, and ore deposit geology. She also lectured at the Higher School of Education and Training (Nov 2024), assisted in geochemical and cosmology labs (2022–23), and supervised bachelor dissertation students (2021). Through these roles, Khadra has gained leadership, mentoring, and cutting-edge analytical experience in mineralogy, isotope geochemistry, and field-lab integration.

🔬 Research Interests

Khadra’s research centers on unraveling the formation of polymetallic sulfide mineralization—particularly Pb–Zn–Ag–F–Ba systems—in basement and cover rocks. She applies fluid inclusion microthermometry, trace–element geochemistry (e.g., LA‑ICP‑MS on sphalerite), and multi‐isotope tracing to decipher ore-forming processes. Her interests extend to understanding ore shoot formation, metal sources (including Ag–Cu–Ni–Co–As–Bi–Hg–U), and paragenetic sequences. She explores the role of basement–cover interactions in ore genesis and the significance of critical raw materials. Field mapping, SEM–EDS analyses, and integration of fluid inclusion data guide her investigations. Additionally, Khadra is keen on applying remote sensing, GIS, and earth observation tools for mineral exploration—evident in her work on Aouli inlier mapping. Her cross-disciplinary approach spans geology, geochemistry, mineralogy, and resource technology.

🏅 Awards

Khadra’s contributions have earned recognition through several invited presentations at prestigious conferences. Notably, she delivered talks at Goldschmidt 2025 (Prague) and EGU 2025 (Vienna), marking significant achievements in economic geology. She was also selected to present at the 19th Freiberg Short Course on Critical Raw Materials (Dec 2024) and the 8th GOOD Meeting at Helmholtz Institute Freiberg (Mar 2024). During the 28th African Geology Colloquium (July 2022), her work on mercury–silver mineralization in Aouli was spotlighted. In 2022, she featured in the IGCP683 Networking Blast Series as a “five‑minute oral presenter.” Earlier honors include invitations to the Halifax Congress (May 2022) and the International Colloquium on Magmatism and Metalization (Apr 2019). These recognitions reflect her growing prominence and scholarly impact within the global geoscience community.

📚Top Noted  Publications

Khadra has co-authored key papers, including:

  • [Mineralogy and fluid inclusions constraints… (Min­er­als, 2025)]: a study on Ag–Ni–Co–Sb–As–Hg ± Bi vein mineralization in Aouli with DOI appearing upon publication.

  • [Geological mapping and mining prospecting… (China Geology, 2022)]: applied remote sensing and GIS for Aouli inlier targeting, cited by numerous studies in exploration geoscience.

  • [Origin of the Moroccan Touissit‑Bou Beker… (Minerals, 2021)]: explored supergene biomineralization processes, influencing research in microbiological activity and climate-linked uplift.

Conclusion

Khadra Zaid is a strong candidate for the Research for Young Researcher Award.
She demonstrates exceptional promise through international research exposure, interdisciplinary scientific work, teaching and leadership roles, and active participation in high-level conferences. Her expertise in economic geology and geochemistry is timely and valuable, especially given global interest in critical raw materials and sustainable mineral resource development.

Xiaogang Feng | environmental sciences | Best Researcher Award

Assoc. Prof. Dr. Xiaogang Feng | environmental sciences | Best Researcher Award 

Associate Professor, Xi’an University of Architecture and Technology, China.

Dr. Xiaogang Feng (English name: Mark) is an Associate Professor at the College of Architecture, Xi’an University of Architecture and Technology, China. Born on March 24, 1979, in Xi’an, he is married to Yanli Guan (Anne), and they have a daughter, Wenyan Feng (Dora), born on August 27, 2011. Dr. Feng specializes in urban environmental studies, particularly focusing on the evolution and regulation of the Urban Heat Island (UHI) effect during urbanization processes. He also conducts research on environmental remote sensing and the digital preservation of traditional villages. His academic journey includes a Ph.D. in Cartography and Geographic Information Systems from Shaanxi Normal University in 2011, a Master’s degree from Fuzhou University in 2006, and a Bachelor’s degree from Northeastern University in 2003.

Professional Profile

Scopus

🎓 Education

Dr. Feng’s academic foundation is rooted in Cartography and Geographic Information Systems (GIS). He earned his Ph.D. from Shaanxi Normal University in 2011, where his research focused on the Urban Heat Island effect and its mitigation strategies. Prior to that, he completed his Master’s degree at Fuzhou University in 2006, specializing in Virtual Geographic Environments. His undergraduate studies were at Northeastern University, where he majored in Surveying and Mapping Engineering. These educational experiences have equipped Dr. Feng with a comprehensive understanding of spatial analysis, environmental monitoring, and the application of GIS technologies in urban planning and heritage conservation.

🏢 Professional Experience

Dr. Feng has a diverse academic and professional background. Since 2017, he has served as an Associate Professor and Director of the Institute of Building Survey and Mapping at the College of Architecture, Xi’an University of Architecture and Technology. His teaching portfolio includes courses on Engineering Surveying, 3S Applications, and Geographic Information Systems for both undergraduate and graduate students. Between 2006 and 2016, Dr. Feng held various positions, including Teaching Assistant and Senior Lecturer, at the same institution. His professional experience reflects a commitment to integrating theoretical knowledge with practical applications in the fields of architecture, urban planning, and environmental science.

🔬 Research Interests

Dr. Feng’s research interests lie at the intersection of urban environmental science and heritage conservation. He investigates the Urban Heat Island effect, analyzing its spatial morphology and the coupling trends between urban development and land surface temperature. His work also delves into the digital preservation of traditional villages, employing technologies like digital twins and remote sensing to document and protect cultural heritage. Additionally, Dr. Feng explores the thermal environment of residential green spaces, aiming to enhance human thermal comfort through spatial design. His interdisciplinary approach combines environmental science, technology, and cultural studies to address contemporary urban challenges.

🏆 Awards

Dr. Feng’s contributions to academia have been recognized through various awards. He has been honored with the Outstanding Youth Science and Technology Award by the Shaanxi Provincial Government. In 2023, he received the Excellent Teaching Award from Xi’an University of Architecture and Technology, acknowledging his dedication to quality education. His research excellence has also been acknowledged with the Best Paper Award at the International Conference on Urban Environmental Studies in 2022. These accolades reflect Dr. Feng’s commitment to advancing knowledge and practice in his fields of expertise.

📚 Top Noted Publications

Dr. Feng has an extensive publication record, contributing to both international and Chinese journals. Notable works include:

1. Study on the Spatial Morphology of Ando Tibetan Traditional Villages in China: A Case of Traditional Villages in Huangnan Prefecture

  • Authors: Feng, X., Hu, M., Somenahalli, S., Zhang, W., Liu, K., Li, M., Zhou, Z., Li, F.

  • Journal: Sustainability, 17(4), 1353 (2025)

  • DOI: 10.3390/su17041353

  • Summary: This study examines the spatial morphology of traditional Tibetan villages in Huangnan Prefecture, China. Utilizing fractal theory, spatial syntax theory, GIS, and geomorphological statistical analysis, the research analyzes both external morphology and internal structure of these villages, constructing a quantitative system of spatial morphology for traditional villages. researchgate.net

2. Analysis of the Coupling Trend Between the Urban Agglomeration Development and Land Surface Heat Island Effect: A Case Study of Guanzhong Plain Urban Agglomeration, China

  • Authors: Feng, X., Li, F., Somenahalli, S., Zhao, Y., Li, M., Zhou, Z., Li, F.

  • Journal: Sustainability, 17(12), 5239 (2025)

  • DOI: 10.3390/su17125239

  • Summary: This research investigates the coupling relationship between urban development and the land surface heat island (UHI) effect in the Guanzhong Plain urban agglomeration. The study utilizes remote sensing data and spatial analysis to understand the spatial distribution and temporal evolution of UHI intensity in relation to urban expansion.

3. Reshaping the New Quality Productivity of Traditional Village: Theoretical Framework, Implementation Path, and Promotion Strategy

  • Authors: Feng, X., Zhao, Y., et al.

  • Journal: Urban Development Studies, 32(2), 20-26 (2025)

  • Summary: This paper proposes a theoretical framework for enhancing the new quality productivity of traditional villages. It discusses implementation paths and promotion strategies aimed at revitalizing traditional villages through sustainable development practices and integration of modern technologies.

4. An Intelligent Construction Model and Application of Traditional Villages Based on Integrated Space-Ground Collaboration

  • Authors: Feng, X., Luo, J., et al.

  • Journal: Journal of Xi’an University of Architecture & Technology (Natural Science Edition), 57(2), 254-262 (2025)

  • Summary: This study presents an intelligent construction model for traditional villages that integrates spatial and ground collaboration. The model aims to preserve cultural heritage while promoting sustainable development through the application of advanced technologies in construction and planning.

5. Research on the Construction Process and Optimization Part of Rural Space from the Perspective of Identity

  • Authors: Feng, X., Wang, Y., Qiu, M.

  • Journal: Contemporary Architecture, 11, 40-45 (2024)

  • Summary: This paper explores the construction process and optimization of rural spaces from the perspective of identity. It emphasizes the importance of cultural identity in rural development and proposes strategies for integrating local traditions into modern architectural practices.

Conclusion

Dr. Xiaogang Feng is a strong candidate for the Best Researcher Award, especially in areas related to environmental remote sensing, urban thermal environments, and the digital conservation of cultural heritage. His consistent scholarly output, interdisciplinary research focus, and leadership in academic institutions demonstrate both productivity and impact.

Bao-Jun Sun | Ecology | Best Researcher Award

Bao-Jun Sun | Ecology | Best Researcher Award

Prof. Bao-Jun Sun, Institute of Zoology, Chinese Academy of Sciences, China

Prof. Bao-Jun Sun is an esteemed researcher in evolutionary and environmental physiology, focusing on how amphibians and reptiles respond to climate change. He employs ecological modeling, manipulative experiments, and comparative analyses to explore phenotypic and evolutionary adaptations. Currently an Associate Professor at the Institute of Zoology, Chinese Academy of Sciences, he will be promoted to Full Professor in 2025. His research highlights include the ecological and genetic mechanisms driving ectotherm endangerment due to global warming. With numerous high-impact publications, he significantly contributes to climate change resilience studies.

Profile

Education 🎓

Prof. Bao-Jun Sun 🎓 has an extensive academic background in ecology and zoology. He earned his Ph.D. in Ecology (2011-2014) from the Institute of Zoology, Chinese Academy of Sciences, China 🏛️, where he deepened his expertise in ecological research. Prior to that, he completed his Master’s degree in Zoology (2008-2011) at Hangzhou Normal University 📚, refining his understanding of animal sciences. His academic journey began with a Bachelor’s degree in Biotechnology (2002-2006) from Dalian Nationalities University 🧬, laying a strong foundation in biological sciences. His educational path reflects a deep commitment to scientific exploration and research 🔬.

Scientific Community

Prof. Bao-Jun Sun 🌍 is a distinguished researcher whose work significantly enhances our understanding of climate change’s impact on biodiversity 🌱, contributing to global conservation efforts. His interdisciplinary research integrates ecology, genetics, and evolutionary physiology 🧬, positioning him as a leading figure in environmental biology. Through his innovative studies, he explores how species adapt to changing environments, providing crucial insights for ecological sustainability 🌿. His collaborations with international scientists 🤝 further amplify his influence in the scientific community, fostering global partnerships for environmental research. His contributions are vital in shaping conservation strategies for a rapidly changing world .

Experience 🧪

Prof. Bao-Jun Sun 🔬 is a leading researcher in evolutionary and environmental physiology, focusing on ectotherms, particularly amphibians and reptiles 🐸🦎. His innovative work integrates inter- and intraspecific comparisons, manipulative experiments, and ecological modeling 📊, providing a comprehensive approach to understanding climate change effects on these species 🌍. His research explores phenotypic and evolutionary adaptation, the genetic mechanisms behind species endangerment 🧬, and the ecological consequences of climate warming 🌡️. With high scientific impact, his studies contribute significantly to biodiversity conservation and the adaptation strategies of ectothermic species in a rapidly changing environment.

Research Focus 🔍

Prof. Bao-Jun Sun’s research focuses on thermal ecology 🔥, physiology 🏃‍♂️, and developmental biology 🦎 of reptiles and amphibians. His work explores how temperature and climate change 🌡️ impact embryonic development 🥚, metabolism ⚡, and reproductive strategies 🦖. He investigates heat tolerance 🏜️, oxygen dependency 🫁, and maternal effects 🤰 on offspring fitness. His studies on temperature-dependent sex determination ♂️♀️ and environmental adaptation 🌍 provide crucial insights into species resilience against global warming. His research also extends to gut microbiota 🦠, behavioral ecology 🦗, and conservation biology 🛡️, making significant contributions to ecophysiology and evolutionary biology 📚.