Tao Wang | Geopolymer materials | Best Researcher Award

Mr.Β  Nanjing Hydraulic Research Institute, China

The research presents a method for developing high-strength, low-carbon geopolymer mortar using fly ash and slag under ambient curing conditions. It addresses the challenge of low strength in fly ash-based geopolymers by analyzing the impact of slag content on mechanical properties. The study also investigates the correlation between microstructural and macroscopic properties using grey relational analysis and assesses the environmental and economic benefits of varying slag content. This work offers practical guidance for advancing sustainable, high-performance geopolymer materials, supported by the National Natural Science Foundation of China.

Professional Profiles:

πŸ—οΈ About Our Research

πŸ” Our study introduces an innovative method to develop high-strength geopolymer mortar that boasts low-carbon and environmentally friendly characteristics under ambient curing conditions. The research delves into the mechanical properties, microstructural attributes, and environmental benefits of this mortar. 🌍

🚧 Tackling the Strength Challenge

πŸ’‘ Fly ash-based geopolymer mortar is celebrated for its eco-friendly benefits, but achieving high strength remains a challenge in modern structural engineering. While most studies focus on high-temperature curing, our research uniquely explores the influence of slag content on the mechanical properties of geopolymer mortar under ambient conditions.

πŸ”¬ Deep Dive: Microstructural and Mechanical Properties

πŸ“Š We conducted a thorough analysis of the microstructural performance and established a framework using the grey relational analysis method to correlate these findings with the mortar’s macroscopic mechanical properties. Additionally, we evaluated the environmental and economic impacts of varying slag content through statistical analysis.

🌱 Towards a Sustainable Future

🌱 This work provides valuable insights and practical guidance for the advancement of low-carbon, environmentally friendly, and high-performance geopolymer mortar, paving the way for future developments in sustainable construction materials.

πŸ”— Research Support

πŸ† This research was generously supported by the National Natural Science Foundation of China (SN: 52171270, 51879168) and the Key Funded Projects of the National Natural Science Foundation of China-Regional Innovation and Development Joint Fund (U23A20672). We confirm that this work has not been submitted elsewhere for publication, and all authors have approved the enclosed manuscript.

Strengths for the Award

  1. Innovative Approach: The research introduces a novel method for developing high-strength geopolymer mortar under ambient curing conditions, addressing a crucial challenge in the field. The emphasis on low-carbon and environmentally friendly characteristics is timely and aligns with global sustainability goals.
  2. Comprehensive Analysis: The study offers a thorough investigation of both the mechanical properties and microstructural performance of the geopolymer mortar. The use of grey relational analysis to establish correlations between microstructural and mechanical properties adds depth to the research.
  3. Environmental and Economic Assessment: The inclusion of environmental and economic impact assessments demonstrates a holistic approach, considering not just the technical performance but also the broader implications of the material.
  4. Support from National Foundations: The research is backed by prestigious funding sources, such as the National Natural Science Foundation of China, which underscores the importance and credibility of the work.

Areas for Improvement

  1. Expansion of Application Scenarios: While the research focuses on ambient curing conditions, exploring the applicability of the developed mortar in different environmental conditions or comparing it with other curing methods could provide more comprehensive insights.
  2. Long-term Performance Evaluation: The study could benefit from a long-term performance analysis, including durability and sustainability over extended periods, to further validate the practical application of the geopolymer mortar.
  3. Broader Comparative Analysis: Including a broader range of comparisons with other high-strength construction materials could strengthen the argument for the practical adoption of geopolymer mortar in various structural engineering scenarios.

 

✍️Publications Top Note :

Development of High-strength Geopolymer Mortar Based on Fly Ash-slag: Correlational Analysis of Microstructural and Mechanical Properties and Environmental Assessment”

Authors: Wang, T., Fan, X., Gao, C.

Journal: Construction and Building Materials (2024), 441, 137515

 

“Performance of Geopolymer Paste under Different NaOH Solution Concentrations”

Authors: Wang, T., Fan, X., Gao, C., Qu, C.

Journal: Magazine of Concrete Research (2024)

 

“Shear Behavior and Strength Prediction of HFRP Reinforced Concrete Beams without Stirrups”

Authors: Gu, Z., Hu, Y., Gao, D., Wang, T., Yang, L.

Journal: Engineering Structures (2023), 297, 117030

 

“Effect of Different Loading Rates on the Fracture Behavior of FRP-Reinforced Concrete”

Authors: Liu, J., Fan, X., Wang, T., Qu, C.

Journal: Fatigue and Fracture of Engineering Materials and Structures (2023), 46(12), pp. 4743–4759

 

“The Influence of Fiber on the Mechanical Properties of Geopolymer Concrete: A Review”

Authors: Wang, T., Fan, X., Gao, C., Liu, J., Yu, G.

Journal: Polymers (2023), 15(4), 827

 

“Database-based Error Analysis of Calculation Methods for Shear Capacity of FRP-Reinforced Concrete Beams without Web Reinforcement”

Authors: Wang, T., Fan, X., Gao, C., Qu, C., Liu, J.

Journal: Journal of Southeast University (English Edition) (2023), 39(3), pp. 301–313

 

“Size Effect Theory on Shear Strength of RC Cantilever Beams without Stirrups”

Authors: Jin, L., Wang, T., Du, X.-L.

Journal: Jisuan Lixue Xuebao/Chinese Journal of Computational Mechanics (2020), 37(4), pp. 396–404

 

“Size Effect Theory on Shear Failure of RC Cantilever Beams”

Authors: Jin, L., Wang, T., Du, X.-L., Xia, H.

Journal: Gongcheng Lixue/Engineering Mechanics (2020), 37(1), pp. 53–62

 

“Size Effect in Shear Failure of RC Beams with Stirrups: Simulation and Formulation”

Authors: Jin, L., Wang, T., Jiang, X.-A., Du, X.

Journal: Engineering Structures (2019), 199, 109573

 

Conclusion

Tao Wang’s research on high-strength geopolymer mortar is innovative and impactful, addressing key challenges in the construction industry related to sustainability and strength. The study’s comprehensive analysis and consideration of environmental impacts make it a strong contender for the “Best Researcher Award.” However, expanding the research scope to include more comparative and long-term analyses could further enhance its significance.

Garima Mathur | Functionalization of biomaterials | Women Researcher Award

Mr. Garima Mathur | Functionalization of biomaterials | Women Researcher Award

Mr. Jaypee Institute of Technology, India

Mr. Garima Mathur holds a Ph.D. from the Indian Institute of Technology Roorkee (2008), an M.Sc. in Biotechnology from Panjab University, Chandigarh (2002), and a B.Sc. in Biotechnology from Kurukshetra University (2000). Currently, she is an Assistant Professor (Senior grade) at the Department of Biotechnology, Jaypee Institute ofΒ  Technology, Noida. Her professional journey includes roles as Assistant Professor (Gr-II and Gr-I), Research Associate, and Postdoctoral Fellow in prestigious institutions. She has worked as a Scientist in Application R&D at Novozymes South Asia Pvt. Ltd. Bangalore. Dr. [Your Name] is a recipient of several awards, including a GATE Life Science score of 97.79 percentile and a CSIR-UGC JRF, among others.

Professional Profiles:

Scopus

πŸŽ“ Academic Qualifications

2008: PhD, Indian Institute of Technology Roorkee (India)
2002: M.Sc. (Biotechnology), Panjab University, Chandigarh
2000: B.Sc. (Biotechnology), Kurukshetra University

πŸ‘¨β€πŸ« Professional ExperienceΒ 

Assistant Professor (Senior grade), Department of Biotechnology, Jaypee Institute of Technology, Noida. September 2018 onwards
Assistant Professor (Gr-II), Department of Biotechnology, Jaypee Institute of Technology, Noida. Jan 1, 2016 – September 2018
Assistant Professor (Gr-I), Department of Biotechnology, Jaypee Institute of Technology, Noida. Aug 1, 2013 – Dec 31, 2015
Research Associate, Department of Biotechnology, Jaypee Institute ofΒ  Technology, Noida. Dec 21, 2010 – Aug 1, 2013
Post Doctoral Fellow, Department of Biotechnology and Bioinformatics, Jaypee University of Technology, Waknaghat. Feb 9, 2010 – Dec 14, 2010
Scientist in Application R&D, Novozymes South Asia Pvt. Ltd., Bangalore. Dec 2009 – June 2009
Research Associate, Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi (INDIA) on a DBT-funded project. Dec 2007 – April 2008

πŸ† Awards and Honors

GATE in Life Science (2002): Score 97.79 percentile (All India rank 53)
CSIR-UGC (NET) JRF in Life Science (June 2003)
Agricultural Scientists Recruitment Board National Eligibility Test (2003)
Women Scientist Scholarship Scheme (2003), TIFAC, DST, New Delhi
Gold Medal in M.Sc. (Biotechnology) from Panjab University, Chandigarh
Travel Grant Support by Dept. of Science and Technology, Govt of India for oral presentation at BIOMICROWORLD 2013, Madrid, Spain. October 2-4, 2013

✍️Publications Top Note :

Production and Characterization of Bacterial Cellulose Synthesized by Komagataeibacter sp. Isolated from Rotten Coconut Pulp

Authors: Srivastava, S., Mathur, G.
Journal: Asian Journal of Chemistry
Year: 2024
Volume: 36
Issue: 5
Pages: 1183–1190
Type: Open access
Citations: 0
Abstract: This link is disabled.
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Current Trends in Chitosan Functionalization Methods and Their Applications

Authors: Pandey, R., Mathur, G.
Journal: Starch/Staerke
Year: 2024
Type: Review, Article in Press
Citations: 0
Abstract: This link is disabled.
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Statistical Optimization of Bioprocess Parameters for Enhanced Production of Bacterial Cellulose from K. saccharivorans BC-G1

Authors: Srivastava, S., Mathur, G.
Journal: Brazilian Journal of Microbiology
Year: 2024
Type: Article in Press
Citations: 0
Abstract: This link is disabled.
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Biopolymer-Based Biosensors: Fabrication and Properties

Authors: Pandey, R., Mathur, G.
Book: Springer Proceedings in Materials
Year: 2024
Volume: 37
Pages: 89–98
Type: Book Chapter
Citations: 0
Abstract: This link is disabled.
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Bacterial Cellulose: A Multipurpose Biomaterial for Manmade World

Authors: Srivastava, S., Mathur, G.
Journal: Current Applied Science and Technology
Year: 2023
Volume: 23
Issue: 3
Type: Open access, Review
Citations: 1
Abstract: This link is disabled.
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Komagataeibacter saccharivorans Strain BC-G1: An Alternative Strain for Production of Bacterial Cellulose

Authors: Srivastava, S., Mathur, G.
Journal: Biologia
Year: 2022
Volume: 77
Issue: 12
Pages: 3657–3668
Citations: 4
Abstract: This link is disabled.
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Effect of Different Media on Growth Kinetics Parameters of Aspergillus ochraceus: An Approach Towards Production of Fungal Biomass

Authors: Rahman, R.U., Mathur, G.
Journal: Current Trends in Biotechnology and Pharmacy
Year: 2021
Volume: 15
Issue: 6
Pages: 1–3
Citations: 1
Abstract: This link is disabled.
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Current Research and Perspectives on Microalgae-Derived Biodiesel

Authors: Singh, K., Kaloni, D., Gaur, S., Kushwaha, S., Mathur, G.
Journal: Biofuels
Year: 2020
Volume: 11
Issue: 1
Pages: 1–18
Citations: 19
Abstract: This link is disabled.
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Evaluating the Therapeutic Efficiency and Drug Targeting Ability of Alkaloids Present in Rauwolfia serpentina

Authors: Singh, M., Kaur, R., Rajput, R., Mathur, G.
Journal: International Journal of Green Pharmacy
Year: 2017
Volume: 11
Issue: 3
Pages: 132–142
Citations: 18
Abstract: This link is disabled.
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Effect of Carbon Sources on Physicochemical Properties of Bacterial Cellulose Produced from Gluconacetobacter xylinus MTCC 7795

Authors: Singh, R., Mathur, A., Goswami, N., Mathur, G.
Journal: E-Polymers
Year: 2016
Volume: 16
Issue: 4
Pages: 331–336
Citations: 10
Abstract: This link is disabled.
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Mr. Bingtao Wang | Energy consumption model | Best Researcher Award

Mr. Bingtao Wang | Energy consumption model | Best Researcher Award

Mr. Bingtao Wang, Shan Dong University, China

Bingtao Wang, currently a Master’s student in Communication Engineering at Shandong University (Weihai), holds a Bachelor’s degree in Electronic Engineering. His research focuses on energy consumption models and fault diagnosis in mobile robots. Bingtao has led multiple innovative projects, including the development of a quadcopter UAV and a visual perception crawler robot. His significant contribution lies in the creation of robust energy models and diagnostic methods that enhance the efficiency and reliability of Three-Wheeled Omnidirectional Mobile Robots (TOMRs), paving the way for future advancements in autonomous navigation and robotics.

Professional Profiles:

Orcid

πŸŽ“ Academic and Professional Background (100 words max):

Bingtao Wang, male, was born in Liaocheng City, Shandong Province in September 2001. In 2023, he graduated from Shandong University (Weihai) with a Bachelor’s degree in Electronic Engineering. He is currently pursuing a Master’s in Communication Engineering at Shandong University (Weihai), College of Electrical and Engineering. His research focuses on energy consumption model building and fault diagnosis.

πŸ“ Self-Declaration:

I authenticate that to the best of my knowledge the information given in this form is correct and complete. At any time, I am found to have concealed any material information, my application shall be liable to be summarily terminated without notice. I have read the terms and conditions and other policies of the Awards and agree to them.

✍️Publications Top Note :

Dr. Funsho Kolawole | temperatures | Best Researcher Award

Dr. Funsho Kolawole | temperatures | Best Researcher Award

Dr. Funsho Kolawole , National Institute for Space Research, Brazil

Dr. Funsho Kolawole is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

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πŸ“– PublicationsΒ  Top Note :

Prof. Ameer Hilal | Geopolymer Award | Best Researcher Award

Prof. Ameer Hilal | Geopolymer Award | Best Researcher Award

Prof. Ameer Hilal, University of Anbar, Iraq

Prof. Ameer Hilal is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

Academic Qualifications πŸŽ“

Oct 2011 to Apr 2015: PhD in Civil Engineering
[University of Nottingham]Thesis: Properties and Microstructure of Pre-formed Foamed Concretes Supervisors: Dr. Nick Thom and Assoc. Prof. Andrew DawsonThe research aimed to produce foamed concrete using the preformed foam method, suitable for semi-structural or structural purposes, with good insulation and durability properties. It evaluated damage behavior, studied different mixes of foamed concrete for enhanced strength-to-weight ratio, and investigated mechanical, thermal, and permeation performance.Sep 2001 to Sep 2003: MSc in Civil Engineering [University of Anbar]Thesis title: Study of Production and Properties of Foamed ConcreteModules included Advanced Concrete Materials, Statistics, Structural Analysis, Mathematics, Hydraulic Structures, Pavement Design, Soil and Foundation Engineering, Concrete Design, Finite Elements Method.Sep 1994 to Jul 1998: BSc of Civil Engineering [University of Anbar]Modules covered Mathematics, Engineering Mechanics, Materials, Concrete Technology, Fluid Mechanics, Structures, Soil Mechanics, Highway Engineering, Reinforced Engineering, Construction Management, Surveying.

Administration Experience πŸ’Ό

Engineer at Engineering Consultant Bureau/University of Anbar (2002-2006).Manager of Engineering Consultant Bureau/University of Anbar (2006-2011).Dean Assistant for Scientific Affairs, College of Engineering, University of Anbar (2017-Sep.2019).Deputy Dean, College of Engineering, University of Anbar (2018-present).

Academic Experience πŸ“š

Research Assistant, Assistant Lecturer, Lecturer, Assistant Professor, Professor at Civil Engineering Department, University of Anbar.PhD study at the University of Nottingham/UK.Teaching Experience πŸ“– Courses taught include Concrete Laboratory, Concrete Technology, Theory of Structures, Engineering Mechanics, Mathematics, Design of Reinforced Concrete.Research Interest πŸ§ͺ Concrete Technology, Lightweight Concrete, Admixtures, Durability, Microstructure.

Personal Skills 🌟

Lecturing/presentation skills.Interpersonal, supervision, communication skills.Organization, attention to detail.Independent, proactive, decision-making, negotiation, problem-solving.Written report, oral presentations.Technical and Professional Skills πŸ’»Knowledge of B.S. (UK) and ASTM standards.Lab testing, data analysis, research, reporting.Concrete Technology, Lightweight Concrete.Software: ImageJ, AutoCAD, Microsoft Office.Experience in Stadd-Pro, AutoCAD, optical microscopy, scanning electron microscopy.Supervision πŸ‘¨β€πŸ« Supervised various research projects on properties, production, and use of foamed concrete.

Membership 🀝

American Concrete Institute (ACI)American Society of Civil Engineers (ASCE)

Review WorkπŸ”

Reviewer for international journals including Construction & Building Materials, International Journal of Concrete Structures and Materials, Journal of Advanced Concrete Technology, Journal of Materials in Civil Engineering.

πŸ“ŠΒ Citation Metrics (Google Scholar):

Citations by: All – 1087, Since 2019 – 920
h-index: All – 11, Since 2018 – 11
i10 index: All – 11, Since 2018 –11

Assist Prof Dr. Hitesh Kumar Sharma | organic pollutants Award | Best Researcher Award

Assist Prof Dr. Hitesh Kumar Sharma |organic pollutants Award | Best Researcher Award

Assist Prof Dr. Hitesh Kumar Sharma, Meerut Institute of Technology, India

Dr. Addisu Frinjo Emma is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

πŸŽ“ Seeking a Challenging Role in Scientific Analysis and Education

Scientific progress is pivotal for the advancement of human civilization. As an experienced educationist with a passion for scientific research, I am eager to contribute my skills and knowledge to an esteemed organization or educational institute committed to fostering scientific development. My journey in academia has equipped me with a diverse set of qualifications and experiences, highlighted below:

πŸ”¬ Educational Qualification

Ph.D. in Physics (2021) – Chaudhary Charan Singh University, Meerut, IndiaTitle: “Synthesis and Characterization of CNT-TiO2 Nanocomposites For Photocatalytic Applications”CSIR-UGC NET (2012)Master of Science in Physics (2012) – Chaudhary Charan Singh University, Meerut, IndiaBachelor of Education (2008) – Vedant College of Education, Hapur, IndiaBachelor of Science (Physics, Chemistry, Maths) (2007) – Hindu College, Moradabad, India

πŸ“š Academic and Research Experience

Over a decade of teaching experience in renowned institutions, including Ch. Charan Singh University, Meerut, and currently at Meerut Institute of Technology.Research expertise in areas such as photocatalytic applications, organic compound degradation, water splitting for hydrogen production, and antibacterial activities.Proficient in experimental techniques including DC/RF Magnetron Sputtering, Spin Coating, Hydrothermal Method, and various spectroscopic methods.

πŸ“ Research Publications and Presentations

Author of several peer-reviewed research papers published in reputed journals, as well as presentations at national and international conferences.Notable publications include studies on CNT-TiO2 nanocomposites, PbS thin films, and sputter deposited TiO2 thin films.

πŸ† Awards and Recognitions

Recipient of the Best Paper Award in the 1st Edition of International Research Excellence Best Paper Awards.Patent holder for the hydrothermal process of preparing CNT-templated TiO2 nanospheres.

🌐 Workshops, Webinars, and Collaborations

Active participation in workshops and webinars on diverse topics including nanomaterials, intellectual property rights, and interdisciplinary research.Collaboration with international institutions for technical virtual training on nanomaterials and nanoparticle-based plasma bioscience.I am committed to utilizing my expertise and enthusiasm for scientific inquiry to contribute meaningfully to the growth and success of your organization. Together, let’s embark on a journey of discovery and innovation for the betterment of society and the nation.

πŸ“ŠΒ Citation Metrics (Google Scholar):

Citations by: All – 1135, Since 2018 –1003

h-index: All – 16, Since 2018 – 16

i10 index: All – 32, Since 2018 –28