Bingyan Chen | Environmental Science | Best Researcher Award

Mr. Bingyan Chen | Environmental Science | Best Researcher Award

Associate Professor at Henan University of Technology, China

Dr. Chen Bingyan, a Ph.D. in Design and faculty member at the School of Design and Art, Henan University of Technology, stands out for his impactful work in urban landscape design, park design, and cultural tourism design aimed at rural revitalization. His research demonstrates strong practical application, contributing meaningfully to community development and cultural preservation. By integrating creative design with social and environmental needs, Dr. Chen addresses key global challenges, making his work highly relevant. However, to enhance his candidacy for the Best Researcher Award, greater emphasis on scholarly publications, international collaboration, and quantifiable research achievementsβ€”such as citations, grants, or awardsβ€”would be beneficial. While his current contributions reflect significant societal impact and innovation, establishing a broader academic footprint through measurable outcomes and leadership in research initiatives would further strengthen his profile. Overall, Dr. Chen exhibits commendable potential and societal relevance, aligning well with the award’s goals of recognizing transformative research.

Professional ProfileΒ 

EducationπŸŽ“

Dr. Chen Bingyan holds a Ph.D. in Design, which provides him with a strong academic foundation in the principles and methodologies of design thinking, creative innovation, and interdisciplinary application. His educational background is rooted in the integration of theory and practice, equipping him with the skills necessary to address complex design challenges across urban, cultural, and rural contexts. Through his doctoral studies, Dr. Chen developed a deep understanding of user-centered design, sustainable development, and visual communication, which now informs his teaching and research. His academic journey has cultivated a critical and analytical approach to problem-solving, allowing him to bridge the gap between academic research and practical implementation. In his current role at Henan University of Technology, his educational experience continues to shape his contributions to both scholarly and applied design projects, emphasizing innovation, cultural relevance, and societal impact. His education has thus played a crucial role in defining his research direction and professional ethos.

Professional ExperienceπŸ“

Dr. Chen Bingyan has accumulated extensive professional experience as a faculty member at the School of Design and Art, Henan University of Technology, where he has been actively engaged in teaching, research, and community-based design projects. His professional work focuses on urban landscape design, park planning, and the creative integration of cultural and tourism elements, particularly in support of rural revitalization initiatives. Dr. Chen has applied his expertise to real-world contexts, contributing to the enhancement of public spaces and the preservation of regional cultural identities. His projects often emphasize sustainability, user engagement, and aesthetic value, reflecting a deep commitment to design that serves both functional and societal purposes. In addition to his design practice, he mentors students and collaborates with local stakeholders to develop impactful solutions that align with national development goals. His professional experience reflects a blend of academic rigor and applied creativity, making his work both innovative and socially relevant.

Research InterestπŸ”Ž

Dr. Chen Bingyan’s research interests lie at the intersection of design innovation, cultural preservation, and sustainable development. He is particularly focused on urban landscape design, park design, and creative tourism design, with a strong emphasis on projects that contribute to rural revitalization. His work explores how design can serve as a tool for social transformation, enhancing the aesthetic, cultural, and functional aspects of public spaces while supporting regional identity and economic development. Dr. Chen is passionate about integrating traditional cultural elements into modern design practices, ensuring that local heritage is celebrated and preserved through thoughtful, community-centered solutions. He also investigates the role of design in improving the quality of life in both urban and rural settings, making his research both timely and impactful. By bridging academic theory with practical implementation, Dr. Chen aims to promote sustainable and inclusive design strategies that align with broader social and environmental goals.

Award and HonorπŸ†

Dr. Chen Bingyan has earned recognition for his innovative contributions to design and community development through various academic and professional honors. While specific awards are not listed, his impactful work in urban landscape design, park development, and cultural tourism for rural revitalization suggests that he has likely received commendations for projects that merge creativity with social value. His role as a faculty member at Henan University of Technology further highlights his respected position within the academic community, often a reflection of peer recognition and institutional support. Dr. Chen’s projects, which emphasize sustainable and culturally rooted design solutions, may have been showcased in exhibitions, design forums, or regional development programsβ€”platforms that typically honor outstanding work in applied design. His ongoing commitment to educational mentorship and community engagement also contributes to his reputation as a leader in design practice. As his work continues to gain visibility, more formal accolades are likely to follow.

Research SkillπŸ”¬

Dr. Chen Bingyan possesses strong research skills that combine creative design thinking with analytical problem-solving, enabling him to address complex challenges in urban and rural development. His expertise lies in applying interdisciplinary approaches to design, integrating elements of architecture, environmental planning, cultural studies, and tourism to create meaningful and sustainable spaces. Dr. Chen demonstrates a high level of proficiency in conceptual development, field research, user-centered design, and community engagement, allowing him to gather diverse insights and translate them into innovative design solutions. He is skilled in both qualitative and quantitative research methods, using case studies, participatory design techniques, and visual analysis to inform his work. His ability to bridge academic inquiry with practical implementation enhances the relevance and impact of his projects. Additionally, Dr. Chen’s research is characterized by a sensitivity to cultural context and a commitment to sustainability, making his work valuable for both academic exploration and real-world application.

ConclusionπŸ’‘

Dr. Chen Bingyan demonstrates strong potential and practical impact in the fields of design and rural revitalization, which are deeply aligned with sustainable development and cultural innovation. His applied design work shows real-world relevance, which is highly commendable.

However, to be fully competitive for a Best Researcher Award, especially on a national or international scale, he may need to further establish a scholarly research presence through publications, global collaborations, and quantifiable research outcomes.

Publications Top Noted✍️

  • Title: Evaluating and transferring social value of ecosystem services in urban wetland parks using the SolVES model

  • Authors:

    • Chen, Bingyan

    • Lu, Yao

    • Imran, Muhammad Ali

    • Adam, Nawal Abdalla

    • Jang, Jin

  • Journal: Ecological Indicators

  • Year of Publication: 2025

  • Access: Open Access

Mohamed Rashwan | Environmental Science | Best Researcher Award

Dr. Mohamed Rashwan | Environmental Science | Best Researcher Award

Assistant Professor at King Saud University, Saudi Arabia

Dr. Mohamed A. Rashwan is a distinguished academic and researcher specializing in Agricultural Engineering. He earned his Ph.D. from Kagoshima University, Japan, focusing on electronic cone penetration testing for clay. With a rich background in agricultural sciences, he is currently an Associate Professor at King Saud University, Saudi Arabia, and also holds a professorship at Alexandria University. Dr. Rashwan is recognized for his research in biogas production, agricultural technology, and sustainable practices. His contributions to the field are marked by his extensive publications and active role in academia, reflecting his dedication and expertise in advancing agricultural engineering. πŸŒΏπŸ”¬

Professional Profile:

EducationπŸŽ“

Mohamed A. Rashwan holds a Ph.D. in Agricultural Sciences (Agricultural Engineering) from Kagoshima University, Japan, achieved in 2005. His doctoral thesis focused on “Geotechnical study of Electronic Cone Penetration Testing for Clay.” He also earned a Master’s degree in Agricultural Sciences (Agricultural Engineering) from Alexandria University, Egypt, in 1999, with a thesis on improving biogas production. Rashwan completed his Bachelor’s degree in Agricultural Engineering from Alexandria University in 1991, graduating with honors. πŸŒπŸ“š

Professional ExperienceπŸ’Ό

Dr. Rashwan is currently an Associate Professor at the Department of Agricultural Engineering, College of Food and Agriculture Sciences, King Saud University, Saudi Arabia, since March 2016. He also serves as a Professor at the Department of Agricultural Engineering and Bio-systems, Faculty of Agriculture, Alexandria University. His career trajectory includes roles as Assistant Professor, Lecturer, and Teaching Assistant at both institutions. He has significant experience in supervising graduate theses and evaluating scientific research. πŸ«πŸ“ˆ

Research InterestπŸ”¬

Dr. Rashwan’s research interests encompass various areas including agricultural engineering, biogas production, electronic cone penetration testing, and sustainable agricultural practices. He is involved in enhancing productivity through advanced agricultural technologies, improving composting processes, and developing efficient cooling systems. His work contributes to the broader fields of agricultural sustainability and environmental management. πŸŒ±πŸ”

Awards and HonorsπŸ†

While specific awards were not mentioned, Dr. Rashwan’s distinguished career is marked by his extensive contributions to research and education in agricultural engineering. His involvement in international conferences, workshops, and his extensive list of published research papers reflect his esteemed standing in the academic community. His achievements and ongoing research indicate a high level of recognition and impact in his field. πŸŒŸπŸ“œ

AchievementsπŸŽ“

  • Ph.D. in Agricultural Sciences πŸŽ“: Completed at Kagoshima University, Japan (2005) with a focus on electronic cone penetration testing for clay.
  • Master’s Degree in Agricultural Sciences πŸŽ“: Achieved from Alexandria University, Egypt (1999), researching biogas production.
  • Bachelor’s Degree in Agricultural Engineering πŸŽ“: Graduated with honors from Alexandria University (1991).
  • Associate Professor πŸ›οΈ: Currently serving at King Saud University, Saudi Arabia, since March 2016.
  • Professor πŸ›οΈ: Held at Alexandria University, contributing to the Department of Agricultural Engineering and Bio-systems.
  • Published Research πŸ“š: Extensive list of papers and studies in agricultural engineering, biogas production, and sustainable practices.
  • Supervised Graduate Theses πŸŽ“: Mentored and guided numerous graduate students through their research projects.
  • International Conferences & Workshops 🌍: Actively involved in presenting and discussing research findings at global events.
  • Contribution to Agricultural Sustainability 🌱: Engaged in research aimed at improving agricultural productivity and environmental management.
Publications top notedπŸ“œ
  • Tomato waste compost as an alternative substrate to peat moss for the production of vegetable seedlings
    Authors: H Abdel-Razzak, F Alkoaik, M Rashwan, R Fulleros, M Ibrahim
    Journal: Journal of Plant Nutrition
    Year: 2019
    Citations: 42 🌿
  • Energy analysis of a rotary drum bioreactor for composting tomato plant residues
    Authors: FN Alkoaik, AM Abdel-Ghany, MA Rashwan, RB Fulleros, MN Ibrahim
    Journal: Energies
    Year: 2018
    Citations: 27 ⚑
  • Influence of planting and irrigation levels as physical methods on maize root morphological traits, grain yield and water productivity in semi-arid region
    Authors: HM Halli, S Angadi, A Kumar, P Govindasamy, R Madar, DO El-Ansary, …
    Journal: Agronomy
    Year: 2021
    Citations: 23 🌾
  • Maturity and stability assessment of composted tomato residues and chicken manure using a rotary drum bioreactor
    Authors: MA Rashwan, F Naser Alkoaik, H Abdel-Razzak Saleh, …
    Journal: Journal of the Air & Waste Management Association
    Year: 2021
    Citations: 22 πŸ”„
  • Effect of water cooling on photovoltaic performance
    Authors: MAR A. T. Jailany, A. Abdelal
    Journal: Misr Journal of Agricultural Engineering
    Year: 2016
    Citations: 11 β˜€οΈ
  • Replacement effect of cement by rice straw ash on cement mortar properties
    Authors: MIMMA Rashwan
    Journal: Misr J. Ag. Eng.
    Year: 2015
    Citations: 10 πŸ—οΈ
  • Effect of insulation on the performance of a rotary bioreactor for composting agricultural residues
    Authors: FN Alkoaik, AM Abdel-Ghany, IM Al-Helal, MA Rashwan, RB Fulleros, …
    Journal: Energies
    Year: 2019
    Citations: 9 🌑️
  • Evaluation of tomato waste compost stability and maturity using CIELAB color indicator
    Authors: M Rashwan, F Alkoaik, H Abdel-Razzak, M Ibrahim, R Fulleros, M Shady, …
    Journal: Journal of Plant Nutrition
    Year: 2020
    Citations: 7 🟒
  • Influence of tomato waste compost ratios on plant growth and fruit quality of cucumber and summer squash
    Authors: MA Rashwan, F Naser Alkoaik, MI Morsy, R Blanqueza Fulleros, …
    Journal: Journal of the Air & Waste Management Association
    Year: 2021
    Citations: 3 πŸ₯’
  • Effect of total solids content on biogas production in a family scale biogas digester
    Authors: AIAO M. A. Rashwan, H. A. El-Soury
    Journal: Misr Journal of Agricultural Engineering
    Year: 2013
    Citations: 3 πŸ’§
  • Design and construction of solar tracking control system
    Authors: ATJ M. A. Rashwan
    Journal: Misr Journal of Agricultural Engineering
    Year: 2014
    Citations: 2 β˜€οΈ
  • Development of the drying characteristic coefficients of dried marigold petals by using an electrical laboratory drying system
    Authors: AZSEAAGMARSS Shaaban
    Journal: Misr Journal of Agricultural Engineering
    Year: 2011
    Citations: 2 🌼
  • Effect of mixing banana peels with fresh cattle manure on biogas production
    Authors: MA Rashwan
    Journal: Misr Journal of Agricultural Engineering
    Year: 2015
    Citations: 1 🍌
  • Effect of natural and solar energy drying systems on drying characteristics of marigold medical plant
    Authors: ES Abdel Ghaffar, E. A. , Shokr, A. Z., Rashwan, M. A., Shaaban
    Journal: Misr Journal of Agricultural Engineering
    Year: 2011
    Citations: 1 β˜€οΈ
  • A fire alarm system for agricultural structures
    Authors: MAR Khiery M. Ismail, Abdalla M. Zein Eldin, Shymaa M. Hamada
    Journal: Misr Journal of Agricultural Engineering
    Year: 2022
    Citations: Not available πŸ”₯

Deepak Bansal | Environmental Science | Best Researcher Award

Dr. Deepak Bansal | Environmental Science | Best Researcher Award

Scientist at Central Electronics Engineering Research Institute, Pilani, India

Deepak Bansal is a Principal Scientist at the CSIR-Central Electronics Engineering Research Institute (CEERI) in Pilani, Rajasthan. With over a decade of experience in the field of MEMS (Micro-Electro-Mechanical Systems), his work has significantly contributed to the development and advancement of RF MEMS technology. In addition to his role at CEERI, he also serves as an Associate Professor at the Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, where he guides and mentors students in cutting-edge research.

Professional Profile:

EducationπŸŽ“

Deepak Bansal holds an advanced degree in electronics and telecommunications, which laid the foundation for his expertise in MEMS technology. His academic background provided him with the theoretical knowledge and practical skills necessary to excel in the highly specialized field of RF MEMS design and fabrication. Further details about his education are not provided, but his progression in his professional career indicates a strong educational background.

Professional ExperienceπŸ’Ό

Deepak Bansal’s professional journey began as an Adhoc Scientist at CSIR-CEERI in 2010, where he focused on the design and fabrication of MEMS devices. He later advanced to the role of Scientist, working on RF MEMS design, fabrication, and packaging. In 2014, he was promoted to Senior Scientist, where he focused on the characterization and parasitic control of RF MEMS. Since 2018, he has held the position of Principal Scientist at CEERI, where his work encompasses the design, fabrication, characterization, and packaging of MEMS and mass spectrometry devices. In addition to his scientific research, he has guided 14 scholars, including four Ph.D. students, contributing to the academic growth of the field.

Research InterestπŸ”¬

Deepak Bansal’s research interests are centered around MEMS technology, with a specific focus on RF MEMS design, fabrication, and packaging. His work includes developing compact and high-performance RF MEMS switches, which are critical for modern communication systems. Additionally, his research explores the integration of MEMS with mass spectrometry, aiming to enhance the precision and efficiency of analytical devices. His recent work has also delved into the fabrication processes for improving the isolation and performance of RF MEMS switches, especially for 5G applications.

Awards and HonorsπŸ†

Throughout his career, Deepak Bansal has received numerous accolades for his contributions to MEMS technology. In 2020, he was awarded the Excellence in Research Award for his development of high-performance RF MEMS switches. His mentorship has also been recognized through the achievements of his students, including awards like the Dr. (Mrs.) Swaraj Srivastava Memorial Research Encouragement Award for Women and the second-best Ph.D. award from the Institute of Smart Structures and Systems, India. Furthermore, he is an associate member of the Institute of Engineers India (IEI), a fellow member of the Institution of Electronics and Telecommunication Engineers (IETE), and a lifetime member of the Institute of Smart Structures and Systems (ISSS). His professional affiliations and recognitions underscore his standing in the scientific community.

AchievementsπŸŽ“

  • Excellence in Research Award (2020): Received for the development of compact, lightweight, and high-performance RF MEMS switches.
  • Mentorship Success: Guided 14 scholars, including 4 Ph.D. students, with notable achievements such as:
    • Dr. (Mrs.) Swaraj Srivastava Memorial Research Encouragement Award for Women (2021): Awarded to Ms. Aashudeep Minhas, SRF scholar under his guidance.
    • Second Best Ph.D. Award (2022): Awarded to Dr. Anuroop Bajpai by the Institute of Smart Structures and Systems, India.
  • Professional Memberships and Roles:
    • Associate Member of the Institute of Engineers India (IEI) since 2013.
    • Lifetime Member of the Institute of Smart Structures and Systems (ISSS) since 2019.
    • Fellow Member of the Institution of Electronics and Telecommunication Engineers (IETE) since 2020.
    • Treasurer of CEERI Educational Society since 2017.
  • Publications: Authored 80 research papers, with notable publications in high-impact journals such as IEEE Transactions on Electron Devices and Sensors & Actuators: A. Physical.
  • Patents: Filed multiple patents, including:
    • RF MEMS-based Smart Impedance Tuner Module: Filed in April 2022, published in December 2023.
    • Contact-less Terahertz MEMS Switch: Filed in December 2022, published in June 2024.
    • Micromachining of Glass Substrate Using Wet Etching Technique for MEMS Acoustic Sensors: Filed in February 2023.
Publications top notedπŸ“œ

 

  • Design of novel compact anti-stiction and low insertion loss RF MEMS switch
    πŸ“ Authors: D Bansal, A Kumar, A Sharma, P Kumar, KJ Rangra
    πŸ“… Year: 2014
    πŸ“Š Citations: 69
    πŸ“š Journal: Microsystem Technologies 20 (2), 337-340
  • Low voltage driven RF MEMS capacitive switch using reinforcement for reduced buckling
    πŸ“ Authors: D Bansal, A Bajpai, P Kumar, M Kaur, A Kumar, A Chandran, K Rangra
    πŸ“… Year: 2016
    πŸ“Š Citations: 34
    πŸ“š Journal: Journal of Micromechanics and Microengineering 27 (2), 024001
  • A novel capacitive RF-MEMS switch for multi-frequency operation
    πŸ“ Authors: M Angira, D Bansal, P Kumar, K Mehta, K Rangra
    πŸ“… Year: 2019
    πŸ“Š Citations: 27
    πŸ“š Journal: Superlattices and Microstructures 133, 106204
  • Design of compact and wide bandwidth SPDT with anti-stiction torsional RF MEMS series capacitive switch
    πŸ“ Authors: D Bansal, A Kumar, A Sharma, KJ Rangra
    πŸ“… Year: 2015
    πŸ“Š Citations: 26
    πŸ“š Journal: Microsystem Technologies 21 (5), 1047-1052
  • Improved design of ohmic RF MEMS switch for reduced fabrication steps
    πŸ“ Authors: D Bansal, A Bajpai, K Mehta, P Kumar, A Kumar
    πŸ“… Year: 2019
    πŸ“Š Citations: 23
    πŸ“š Journal: IEEE Transactions on Electron Devices 66 (10), 4361-4366
  • On the investigation of an interdigitated, high capacitance ratio shunt RF-MEMS switch for X-band applications
    πŸ“ Authors: M Angira, GM Sundaram, K Rangra, D Bansal, M Kaur
    πŸ“… Year: 2013
    πŸ“Š Citations: 23
    πŸ“š Journal: Proc. NSTI Nanotechnol 2, 189-192
  • Fabrication and analysis of MEMS test structures for residual stress measurement
    πŸ“ Authors: A Sharma, D Bansal, M Kaur, P Kumar, D Kumar, R Sharma, KJ Rangra
    πŸ“… Year: 2011
    πŸ“Š Citations: 21
    πŸ“š Journal: Sensors & Transducers 13, 21-30
  • Comparative study of various release methods for gold surface micromachining
    πŸ“ Authors: A Sharma, P Jhanwar, D Bansal, A Kumar, M Kaur, S Pandey, P Kumar
    πŸ“… Year: 2014
    πŸ“Š Citations: 17
    πŸ“š Journal: Journal of Micro/Nanolithography, MEMS, and MOEMS 13 (1), 013005-013005
  • Effect of stress on pull-in voltage of RF MEMS SPDT switch
    πŸ“ Authors: D Bansal, A Bajpai, P Kumar, M Kaur, A Kumar
    πŸ“… Year: 2020
    πŸ“Š Citations: 16
    πŸ“š Journal: IEEE Transactions on Electron Devices 67 (5), 2147-2152
  • Fabrication and analysis of radiofrequency MEMS series capacitive single-pole double-throw switch
    πŸ“ Authors: D Bansal, A Bajpai, P Kumar, M Kaur, K Rangra
    πŸ“… Year: 2016
    πŸ“Š Citations: 16
    πŸ“š Journal: Journal of Micro/Nanolithography, MEMS, and MOEMS 15 (4), 045001-045001