Dr. Valentina Prikhodko | Earth and Planetary Sciences | Best Researcher Award

Dr. Valentina Prikhodko | Earth and Planetary Sciences | Best Researcher Award

Institute of Physicochemical and Biological Problems in Soil Science of Russian Academy of Sciences, Russia.

Prof. Valentina Prikhodko is a leading researcher at the Institute of Physicochemical and Biological Problems in Soil Science of the Russian Academy of Sciences in Pushchino, Russia. With a distinguished career spanning over four decades, she has made significant contributions to soil science, geoscience, and Holocene climate research. Her expertise lies in soil chemistry, organic matter evolution, and the impact of anthropogenic activities on landscapes. Prof. Prikhodko has authored over 240 scientific publications, including 3 monographs and 82 refereed journal articles, and has been recognized with prestigious awards, including the Prize for Best Publication in J. Eurasian Soil Science (2013).

Profile

Orcid

🎓 Education

Prof. Valentina Prikhodko earned her PhD in Soil Science from Lomonosov Moscow State University in 1979, specializing in soil chemistry, evolution, and organic matter. She later attained a Doctor of Science (Dr. Sc.) in Soil Science from the same institution in 2004, further solidifying her expertise in soil formation and environmental impact assessment. Her academic journey began with a Bachelor's and Master's degree in Soil Science from Lomonosov Moscow State University between 1968 and 1978, where she developed a strong foundation in geoscience and soil analysis. Her extensive education has been instrumental in shaping her distinguished career in soil research and geoarchaeology.

🧑‍🏫 Experience

Prof. Valentina Prikhodko has had a distinguished career in soil science research, spanning over four decades. Since 2004, she has been serving as a Leading Researcher at the Institute of Physicochemical and Biological Problems in Soil Science, Russian Academy of Sciences, where she focuses on soil chemistry, climate reconstruction, and heavy metal contamination. Before this, she worked as a Senior Researcher (1992–2004) and Researcher (1980–1992) at the same institute, contributing to groundbreaking studies on soil evolution and geoscience. Her early career began as a Minor Researcher (1978–1983), laying the foundation for her extensive expertise. Additionally, she was a Visiting Scientist at the University of California, Davis, USA (1999–2000), where she conducted research under a prestigious Fulbright Award, expanding her international collaborations in soil science and environmental studies.

🔬 Research Interests

Soil Science & Geoscience – Evolution, chemistry, and organic matter in soils

Holocene Climate & Anthropogenic Impact – Soil evolution and climate reconstruction

Geoarchaeological Archives – Analysis of ancient soils for historical landscape studies

Heavy Metal Pollution – Assessing contamination in industrial areas, including China

GIS & Mapping Technologies – Spatial analysis of archaeological sites and soil properties

🏆 Awards & Grants

Prize for Best Publication in J. Eurasian Soil Science (2013)

Award of the Chinese Academy of Sciences (1997)

Fulbright Award – University of California, Davis (1999–2000)

Grants from the Russian Foundation for Basic Research (1995, 1997, 1999, 2007, 2008, 2009, 2013, 2017, 2020)

Grant RFBR-CSIC, Spain (2009–2010)

Japan-Russia Joint Project № 09-05-92106 (2009–2010)

📚 Selected Publications

1️⃣ Complex Study of Settlements Dating from the Paleolithic to Medieval Period in the Ural Mountains on the Border of Europe and Asia
📖 Geosciences, 2025
👥 Contributors: Valentina Prikhodko, Nikita Savelev, Viacheslav Kotov, Sergey Nikolaev, Evgeny Ruslanov, Михаил Румянцев, Elena Manakhova

2️⃣ Reconstruction of Climate and Landscapes of the Medieval Period on the Basis of Palynological Study of Paleosols Buried under Kurgans and Dendrochronological Data from Altai (South of Western Siberia)
📖 Eurasian Soil Science, 2020
👥 Contributors: M. V. Mikharevich, V. S. Myglan, V. E. Prikhodko

3️⃣ Reconstruction of the Climate of the Medieval Epoch Based on Soil and Geochemical Studies of Kurgans of the Srostki Culture in the South of Western Siberia
📖 Eurasian Soil Science, 2020
👥 Contributors: V. E. Prikhodko, Yu. A. Azarenko, M. R. Shayakhmetov, A. A. Tishkin, V. V. Gorbunov, E. G. Pivovarova

4️⃣ Synlithogenic Evolution of Floodplain Soils in Valleys of Small Rivers in the Trans-Ural Steppe
📖 Eurasian Soil Science, 2019
👥 Contributors: I. V. Ivanov, V. E. Prikhodko, I. V. Zamotaev, D. V. Manakhov, E. Yu. Novenko, P. I. Kalinin, L. M. Markova, A. L. Plaksina

5️⃣ Vegetation and Climate Reconstruction Based on Pollen and Microbial Records Derived from Burial Mounds Soil in Tuva Republic, Central Asia
📖 Quaternary International, 2019
👥 Contributors: Tatiana Blyakharchuk, Valentina Prikhodko, Marina Kilunovskaya, Hong-Chun Li

 

 

 

Dr. He Bai | Wastewater Treatment | Best Researcher Award

Dr. He Bai | Wastewater Treatment | Best Researcher Award

East China University of Science and Technology, China.

He Bai is a dedicated researcher specializing in Chinese studies and material sciences, currently pursuing a Ph.D. at East China University of Science and Technology. With a strong academic foundation in Chinese studies, he has expanded his expertise into interdisciplinary research, focusing on advanced materials and environmental applications. His work integrates chemistry, nanomaterials, and catalysis, contributing significantly to sustainable technologies.

Profile

Scopus

🎓 Education

Dr. He Bai has a strong academic foundation in Chinese studies, having pursued his education across prestigious institutions in China. He earned his Bachelor’s degree (2014-2018) from Baotou Teacher’s College, where he developed a deep understanding of Chinese language and literature. Building on this, he completed his Master’s degree (2018-2021) at Inner Mongolia University, further refining his expertise in Chinese linguistics and cultural studies. Currently, he is pursuing a Ph.D. (2021-Present) at East China University of Science and Technology, focusing on advanced research in the field. His academic journey has been marked by excellence, securing scholarships and contributing to interdisciplinary studies.

💼 Experience

Dr. He Bai possesses extensive expertise in advanced laboratory techniques, including fluorescence (FL), scanning electron microscopy (SEM), transmission electron microscopy (TEM), thermogravimetric analysis (TGA), infrared (IR) spectroscopy, and ultraviolet (UV) analysis. His proficiency in these methods has enabled him to conduct high-precision material characterization and environmental research. Additionally, he is highly skilled in data visualization and scientific software, utilizing tools such as Origin, Photoshop (PS), and ChemDraw to analyze and present complex research findings effectively.

During his Ph.D. studies, Dr. Bai secured a 10,000 RMB research grant for his project on biochar-based catalysts for wastewater treatment, demonstrating his ability to lead innovative research with real-world applications. His outstanding achievements were further recognized when he won the Silver Award at the 7th China International "Internet Plus" Innovation & Entrepreneurship Competition (2021, Shanghai), highlighting his innovative approach and interdisciplinary problem-solving skills.

🔬 Research Interests

Nanomaterials and Catalysis 🔬

Photocatalysis & Environmental Remediation 🌍

Graphene and MoS₂-based Materials 💡

Biochar-based Catalysts for Wastewater Treatment 💧

Quantum Confinement and Defect Engineering ⚛️

🏆 Awards & Honors

🏅 Inner Mongolia Autonomous Region Scholarship (2020)

🎖️ Academic Scholarship, East China University of Science and Technology (2021, 2022)

🥈 Silver Award, 7th China International "Internet Plus" College Student Innovation and Entrepreneurship Competition (2021, Shanghai)

📚 Selected Publications

1️⃣ Quantum confinement and defect engineering mediated “two birds with one stone” strategy for Co/Bi self-regeneration and effective photogenerated carrier separation
📌 Applied Catalysis B: Environmental, 2025, 365, 125001.

2️⃣ Structure and defect engineering synergistically boost Mo6+/Mo4+ circulation of Sv-MoS2 based photo-Fenton-like system for efficient levofloxacin degradation
📌 Applied Catalysis B: Environmental, 2024, 358, 124430.
🔗 DOI | Cited by: 2

3️⃣ Carbon defects-enriched NBC-C3N5@CoMn with ultrafast modulation of redox couples for efficient degradation of contaminant
📌 Journal of Environmental Management, 2024, 366, 121723.
🔗 DOI | Cited by: 2

4️⃣ Modulating the redox couples of graphene-like NBC-TiO2@FeMn through forming photo-Fenton system for boosting persulfate activation to accelerate the contaminant degradation
📌 Chemical Engineering Journal, 2023, 473, 145392.
🔗 DOI | Cited by: 13

5️⃣ Preparation of Fe3O4@Fe(0) immobilized enzyme to enhance the efficient degradation of methoxychlor
📌 Environmental Science and Pollution Research, 2023, 30(1), pp. 917–929.