Paweł Kwaśnicki | Renewable Energy Technologies | Innovative Research Award

Innovative Research Award

Paweł Kwaśnicki
The John Paul II Catholic University of Lublin

Paweł Kwaśnicki
Affiliation The John Paul II Catholic University of Lublin
Country Poland
Scopus ID 57217680709
Documents 55
Citations 430
h-index 13
Subject Area Renewable Energy Technologies
Event Global Best Achievements Awards
ORCID 0000-0002-2103-0917

Paweł Kwaśnicki is a researcher affiliated with The John Paul II Catholic University of Lublin whose scholarly work contributes to the advancement of renewable energy technologies through interdisciplinary research. His publications explore engineering solutions that support sustainable energy systems, environmental responsibility, and technological innovation. With a consistent publication record and measurable citation impact, his academic contributions have gained recognition within the international scientific community. His work reflects a commitment to developing practical knowledge that supports cleaner energy production, improved resource efficiency, and evidence-based engineering practices while promoting collaboration across related scientific disciplines.[1]

Abstract

Paweł Kwaśnicki has developed an academic portfolio centered on renewable energy technologies, emphasizing sustainable engineering solutions, efficient energy utilization, and environmentally responsible technological development. His research integrates scientific analysis with practical applications relevant to modern energy systems and supports the transition toward cleaner and more resilient infrastructure. Through peer-reviewed publications, interdisciplinary collaboration, and measurable scholarly influence, his work contributes to ongoing discussions concerning renewable resources, technological optimization, and sustainable innovation. The accumulated citation record and publication history demonstrate consistent scientific engagement while encouraging future advances in renewable energy research, engineering education, and environmentally conscious technological development.[2]

Keywords

Renewable Energy, Sustainable Engineering, Energy Systems, Green Technology, Environmental Innovation, Clean Energy, Resource Efficiency, Engineering Research, Energy Transition, Scientific Publications.

Introduction

Renewable energy technologies continue to shape scientific priorities by addressing environmental challenges, energy security, and sustainable economic development. Researchers working in this discipline investigate innovative methods that improve energy efficiency while reducing environmental impact. Within this context, Paweł Kwaśnicki contributes scholarly research that combines engineering knowledge with practical sustainability objectives, supporting scientific progress through rigorous investigation and internationally disseminated publications.[3]

Research Profile

The research profile of Paweł Kwaśnicki reflects sustained academic productivity supported by publications indexed in international scientific databases. His work demonstrates interdisciplinary engagement with renewable energy technologies and related engineering fields while maintaining scientific rigor and methodological consistency. The combination of documented publications, citation performance, and collaborative research activities illustrates an active contribution to the advancement of sustainable technological knowledge.[1]

Research Contributions

His scholarly contributions emphasize improving renewable energy applications through analytical research, technological evaluation, and engineering innovation. By addressing issues related to sustainable energy production and efficient resource utilization, his studies support evidence-based decision making within the scientific community. These contributions enhance understanding of renewable technologies while encouraging continued interdisciplinary collaboration and practical implementation across diverse engineering environments.[4]

Publications

The available publication record includes peer-reviewed journal articles and scholarly contributions indexed by Scopus, reflecting ongoing engagement with renewable energy technologies. The documented body of work demonstrates continuity in research activity and illustrates participation in internationally recognized scientific communication. Citation metrics further indicate that these publications have contributed to broader academic discussions within engineering and sustainability research.[1]

Research Impact

The measurable research impact demonstrated through publication volume, citation count, and h-index indicates meaningful scholarly visibility within the renewable energy research community. Academic influence extends through contributions that support technological advancement, encourage interdisciplinary dialogue, and provide scientific evidence relevant to sustainable engineering practices. Such impact reflects continued engagement with contemporary research challenges and the dissemination of reliable scientific knowledge.[1]

Award Suitability

The Innovative Research Award recognizes researchers who demonstrate sustained scientific excellence, meaningful publication records, and measurable academic influence. Paweł Kwaśnicki’s documented achievements in renewable energy technologies, together with consistent scholarly productivity and international research visibility, align with the objectives of the Global Best Achievements Awards. His work illustrates the integration of innovation, scientific quality, and practical relevance within an internationally significant research domain.[5]

Conclusion

Paweł Kwaśnicki has established a recognized academic profile through sustained research activity in renewable energy technologies. His publications, citation performance, and interdisciplinary engagement demonstrate continued contributions to engineering knowledge and sustainable technological development. The combination of scientific productivity, research quality, and measurable scholarly impact supports recognition within international academic communities while encouraging future innovation and collaborative research addressing global energy challenges.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Paweł Kwaśnicki, Author ID 57217680709. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57217680709
  2. International Energy Agency. (2024). Conversion of Sewage Sludge into Biofuels via Different Pathways and Their Use in Agriculture: A Comprehensive Review.
    https://doi.org/10.3390/en17061383
  3. Cleaner Engineering and Technology. (2024). Texturized glass in the application of architectural photovoltaics.
    https://doi.org/10.1016/j.clet.2024.100810
  4. Materials. Impact of Decorative Ceramic Screen Printing on the Optical and Photovoltaic Performance of Glass Covers for BIPV Applications.
    https://doi.org/10.3390/ma19112420
  5. Global Best Achievements Awards. Award Information.
    https://bestachievements.com/

Sa’d Shannak | Energy | Best Researcher Award

Dr. Sa’d Shannak | Energy | Best Researcher Award

Dr. Sa’d Shannak, Hamad Bin Khalifa University, Qatar.

Sa’d Shannak is an accomplished Economics and Policy Scientist at QEERI-HBKU, Qatar, with extensive expertise in sustainability, energy transition, and climate policy. Holding a Ph.D. from Texas A&M University, he has contributed significantly to renewable energy integration, carbon mitigation, and environmental economics. As the founder of QOOT, he bridges research and industry, driving innovative solutions. With a strong academic, consultancy, and leadership background, Dr. Shannak’s impactful work influences global energy policies and sustainable development strategies.

Professional Profile

Academic Qualifications 🎓

📌 Ph.D. – Interdisciplinary Program, Texas A&M University, USA (2014)
📌 M.S. – Interdisciplinary Program, Texas A&M University, USA (2010)
📌 B.S. – Engineering, University of Jordan, Amman, Jordan (2004)
📌 Nonprofit Management – The Bush School of Government & Public Service (2010)

🔬Research Contributions On Energy

Sa’d Shannak has made significant contributions to sustainability, energy transition, and environmental economics 🌍. His research focuses on renewable energy integration, carbon mitigation strategies, and climate resilience policies. He has developed tailored methodologies within the IPCC framework to address economic and policy challenges related to climate change. His work on econometric modeling and optimization has informed decision-making on energy subsidy reforms and carbon capture technologies ⚡. Through interdisciplinary collaborations, he bridges research, policy, and industry for sustainable development.

Professional Appointments 👨‍🏫

🔹 Economics and Policy Scientist – QEERI-HBKU, Doha, Qatar (Aug 2021 – Present)
🔹 Founder & CEO – QOOT (Start-up), Doha, Qatar (Jan 2022 – Present)
🔹 Assistant Professor & Team Leader – University of New Haven-Henry, Riyadh, Saudi Arabia (Jan 2018 – Aug 2021)
🔹 Energy Transition & Environmental Economics Fellow – King Abdullah Petroleum Studies & Research Center (2014 – 2018)
🔹 Postdoctoral Researcher – Texas AgriLife Research & Extension Services (2013 – 2014)
🔹 Senior Consultant – FracTest (Oil & Gas Consulting), Dallas, TX, USA (2012 – 2014)
🔹 Project Manager & Researcher – Various roles in academia, consulting, and public service across the USA and Jordan

Teaching & Mentorship 🎓📚

👨‍🏫 Assistant Professor & Team Leader – University of New Haven (2018 – 2021)
📌 Taught Environmental Science, Statistics, Natural Resources Management & Economics
📌 Designed curricula aligned with academic standards & industry needs
📌 Mentored students in renewable energy & climate change research
📌 Established industry-academic partnerships for real-world learning

Honors & Awards 🏆

🏅 HBKU-Innovation Center Award (2022) – Funding for a startup company in Qatar
🏅 USGS Research Grant (Texas Water Institute, 2010-11) – One of ten recipients statewide
🏅 USAID Training Future Leaders Scholarship (2008) – Selected as one of 27 participants from the Middle East, North Africa & Asia
🏅 Texas A&M University Geosciences Scholarship (2011, 2012)

Conclusion

Dr. Sa’d Shannak has demonstrated outstanding expertise in sustainability, energy transition, and environmental economics. His impactful research, leadership, and policy contributions make him a strong contender for the Best Researcher Award. With a robust academic record and global influence, he continues to drive innovation and sustainable solutions for a better future. 🌍📚

 

📚Publication Top Notes

Moving From Theory to Practice in the Water-Energy-Food Nexus: An Evaluation of Existing Models and Frameworks (2018) 📘🔄

Citations: 194

Modeling the Effect of Cistern Size, Soil Type, and Irrigation Scheduling on Rainwater Harvesting as a Stormwater Control Measure (2014) 🌧️💧

Citations: 31

Energy and Economic Implications of Water Transfer (2018) 💡💸

Citations: 29

The Effects of Green Infrastructure on Exceedance of Critical Shear Stress in Blunn Creek Watershed (2017) 🌿🌊

Citations: 12

Does Qatar Face a Trade-off Between Economic Growth and CO₂ Emissions? (2022) 📈🌍

Citations: 9

Assessment of Low-Impact Development for Managing Aquatic Ecosystems (2021) 🐟🏞️

Citations: 9

Calibration and Validation of SWAT for Sub-Hourly Time Steps Using SWAT-CUP (2017) ⏱️🛠️

Citations: 9

Could China Meet its Emission Reduction Goal by CO₂-EOR (2020) 🇨🇳🏭

Citations: 8

A Decision Support Tool for the Assessment of Water–Energy–Food Nexus in Saudi Arabia (2020) 🇸🇦🔧

Citations: 6

Optimizing Dynamics of Water-Energy-Food Nexus in a Desert Climate (2022) 🏜️⚙️

Citations: 5

Suneel Sharma | Energy Storage | Best Researcher Award

Dr. Suneel Sharma | Energy Storage | Best Researcher Award

Dr. Suneel Sharma , Shri Ganesh Rai Post Graduate College, Dobhi Jaunpur Uttar Pradesh , India.

Dr. Suneel Kumar Sharma is an accomplished Assistant Professor in the Department of Physics at Shri Ganesh Rai Post Graduate College, Dobhi, Jaunpur, Uttar Pradesh. With an M.Sc. and Ph.D. in Physics, he specializes in energy storage and supercapacitor device development. Dr. Sharma’s research focuses on advanced techniques like SILAR deposition, hydrothermal methods, cyclic voltammetry, and electrochemical impedance spectroscopy. He has published nine SCI/Scopus-indexed articles and holds a citation index of 71. Additionally, he serves as a reviewer for over eight international journals, contributing to academic excellence. His dedication to innovative energy solutions underpins his professional achievements.

Professional Profile:

Suitability for Best Researcher Award

Dr. Suneel Kumar Sharma, an Assistant Professor in the Department of Physics at Shri Ganesh Rai Post Graduate College, has demonstrated exceptional research expertise in the field of energy storage, focusing on supercapacitor electrode and device fabrication using methods like the SILAR technique, hydrothermal technique, and electrochemical analysis. He has contributed to nine articles in SCI, Scopus journals and has a citation index of 71. His innovative approach and dedication to advancing research in energy storage technologies make him a strong candidate for the Best Researcher Award.

🎓 Education Background:

Dr. Suneel Kumar Sharma has a strong academic foundation in Physics, holding both an M.Sc. and a Ph.D. in the discipline. His advanced education has equipped him with expertise in energy storage technologies and supercapacitor devices, areas in which he has made significant contributions. Dr. Sharma’s academic journey has emphasized both theoretical understanding and practical application, enabling him to excel in innovative research techniques such as SILAR deposition, hydrothermal methods, and electrochemical analysis. His education has provided the foundation for his current role as an Assistant Professor, where he continues to inspire and mentor students in the field of Physics.

💼 Professional Experience:

Dr. Suneel Kumar Sharma is currently serving as an Assistant Professor in the Department of Physics at Shri Ganesh Rai Post Graduate College, Dobhi, Jaunpur, Uttar Pradesh, a position he has held since July 2022. With a strong academic foundation in Physics (M.Sc. and Ph.D.), he has focused on teaching and advancing research in energy storage technologies. Dr. Sharma specializes in supercapacitor electrode and device fabrication, employing techniques such as SILAR deposition, hydrothermal methods, and electrochemical analysis. His role extends to mentoring students and contributing to scientific communities as a reviewer for international journals, reflecting his professional expertise and commitment.

🌍Research Contributions On Energy Storage

Dr. Suneel Kumar Sharma has made significant research contributions in the field of energy storage, particularly in supercapacitor electrode fabrication and device development. Utilizing advanced techniques such as SILAR deposition, hydrothermal methods, cyclic voltammetry, galvanostatic charge/discharge, and electrochemical impedance spectroscopy, he has developed innovative solutions for efficient energy storage. His work is further enriched by fractal analysis, providing deeper insights into material behavior. With nine SCI/Scopus-indexed publications and a citation index of 71, Dr. Sharma has established himself as a dedicated researcher. His contributions aim to advance sustainable energy technologies and foster innovation in the field of energy storage.

🥇Award and Recognition

Dr. Suneel Kumar Sharma has been recognized for his significant contributions to the field of energy storage and supercapacitor device development. With nine SCI/Scopus-indexed publications and a citation index of 71, his work demonstrates academic excellence and research innovation. As a reviewer for more than eight international journals, he has played a vital role in advancing scientific discourse. Dr. Sharma’s dedication to sustainable energy solutions and his expertise in advanced techniques such as SILAR deposition and hydrothermal methods have earned him respect in the academic community. His achievements reflect his commitment to excellence and impactful research.

📚Publication Top Notes

Solid-state symmetric supercapacitor based on Y doped Sr(OH)₂ using SILAR method
📖 Energy, 197, 117163 (2020)
🔢 Citations: 33

High performance solid-state symmetric supercapacitor based on reindeer moss-like structured Al(OH)₃/MnO₂/FeOOH composite electrode for energy storage applications
📖 Energy, 224, 120137 (2021)
🔢 Citations: 20

High performance binary composite (Sr(OH)₂/CoO(OH)) thin film for solid-state supercapacitor
📖 Journal of Energy Storage, 51, 104328 (2022)
🔢 Citations: 13

First report on binder-free boehmite (AlOOH) based prototype, flexible, high-energy and high-power density solid-state symmetric supercapacitor
📖 Journal of Energy Storage, 78, 110036 (2024)
🔢 Citations: 6

Development of highly efficient supercapacitor based on a ternary (Sr(OH)₂/CoO(OH)/MnO₂) composite: With tuberose mesoporous nanospheres structure
📖 Journal of Energy Storage, 79, 110140 (2024)
🔢 Citations: 4

Supercapacitive performance evaluation of chemically synthesized binder-free Y(OH)₃ electrode
📖 Journal of Alloys and Compounds, 901, 163617 (2022)
🔢 Citations: 4

Efficient Electrochemical Performance of Sr(OH)₂:MnO₂ Binary Composites for Solid-State Symmetric Supercapacitor
📖 ChemistrySelect, 9 (21), e202303325 (2024)
🔢 Citations: 2

2-D Hexagonal Plates Architectured Zinc Titanate Perovskite-Based High-Performance Solid-State Supercapacitor
📖 Ceramics International (2025)

Enriched performance of solid-state symmetric supercapacitor based on (Sr(OH)₂/FeO(OH)) binary composite electrode
📖 Materials Chemistry and Physics, 130357 (2025)

Fractal supported electrochemical analysis of MoO₃ decorated AlOOH binary composite for supercapacitor application
📖 Surfaces and Interfaces, 54, 105199 (2025)

Serdar Yaman | Chemical Engineering | Best Researcher Award

Prof. Dr Serdar Yaman | Chemical Engineering | Best Researcher Award

Prof. Dr Serdar Yaman,  Istanbul Technical University, Turkey.

Professor Serdar Yaman is a distinguished academic at Istanbul Technical University’s Department of Chemical Engineering, where he has served as a professor since 2007. With a B.Sc., M.Sc., and Ph.D. from ITU, his expertise spans energy technologies, biomass, fossil fuels, and thermal conversion processes. Globally recognized, he ranks among the top 0.04% of scholars in biomass research and has been listed among the world’s top 2% most influential scientists by Stanford University (2021-2024). An award-winning educator and researcher, Professor Yaman’s contributions include impactful publications, conference leadership, and mentorship of award-winning doctoral theses, solidifying his legacy in energy engineering.

Author Profile:

  • Orcid Profile
  • Google Scholar

Summary of Suitability for Best Researcher Award

Serdar Yaman, Professor of Chemical Engineering at Istanbul Technical University (ITU), is a globally recognized researcher specializing in energy technologies, biomass, fossil fuels, and thermal conversion processes. With over three decades of academic experience, Prof. Yaman has significantly contributed to both education and scientific advancements in his field. As a dedicated educator, Prof. Yaman has mentored award-winning Ph.D. students and delivered impactful courses in chemical engineering and energy studies. His administrative roles and active participation in scientific committees and editorial boards further demonstrate his professional leadership. Prof. Yaman’s achievements, including the ITU Outstanding Educator Award (2012) and Academic Performance Award (2016-2020), reflect his unwavering commitment to advancing science and education globally.

🎓 Education:

Professor Serdar Yaman has an extensive educational background in Chemical Engineering, earning his B.Sc. (1986-1990), M.Sc. (1990-1992), and Ph.D. (1992-1996) from Istanbul Technical University (ITU). His academic journey laid the foundation for his expertise in energy technologies, biomass, fossil fuels, and thermal conversion processes. Professor Yaman’s commitment to education extends beyond his own learning; he has contributed significantly to undergraduate and graduate programs, teaching subjects such as Process Control, Energy Conservation in Industry, and Solid Fuel Conversion Technologies. His dedication to academia has positioned him as a leading educator and mentor, inspiring future generations of engineers and researchers.

💼 Professional Experience:

Professor Serdar Yaman has over 30 years of professional experience at Istanbul Technical University’s Department of Chemical Engineering. He began his academic career as an Assistant Professor (1996-1999), advanced to Associate Professor (1999-2007), and has served as a Full Professor since 2007. His expertise lies in energy technologies, biomass, fossil fuels, and thermal conversion processes. Professor Yaman has held key administrative roles, including Coordinator of Administrative and Financial Affairs (2007-2009). He actively contributes to international conferences, scientific committees, and journal editorial boards, showcasing his leadership in the field. His impactful teaching and research continue to influence global energy studies.

🌍Research Contributions:

Professor Serdar Yaman has made significant contributions to energy technologies, with a focus on biomass, fossil fuels, and thermal conversion processes. His research addresses critical challenges in energy sustainability and carbon materials, resulting in numerous publications in high-impact journals. Recognized globally, he ranks among the top 0.04% of scholars in biomass research and has been listed in Stanford University’s “Top 2% Most Influential Scientists” from 2021 to 2024. Professor Yaman’s expertise extends to machine learning applications in energy, conference leadership, and editorial roles. His groundbreaking work has advanced the understanding of energy systems while fostering innovation and global collaboration.

🥇Award and Honors:

Professor Serdar Yaman has received numerous prestigious awards and global recognitions throughout his career. He has been consistently listed among the Top 2% Most Influential Scientists in the world by Stanford University from 2021 to 2024. According to ScholarGPS rankings, he is among the top 0.04% of highly ranked scholars in biomass research globally. In 2012, he was honored as an Outstanding Educator by Istanbul Technical University (ITU). His mentorship excellence was recognized when a Ph.D. thesis he supervised won ITU’s Most Successful Doctoral Thesis Award in 2017. Additionally, he received ITU’s Academic Performance Award (2016-2020) and Publication Award in 2023.

Conclusion:

Professor Serdar Yaman’s exceptional contributions to chemical engineering and energy technologies establish him as a leading researcher and educator. His groundbreaking work in biomass, fossil fuels, and thermal conversion processes has earned him international recognition, including a place among the top 2% of the world’s most influential scientists by Stanford University (2021-2024) and a top 0.04% ranking in biomass research globally. With numerous awards, impactful publications, and active roles in scientific committees, Professor Yaman’s dedication to advancing research and mentoring future scholars is unparalleled. His achievements make him a highly deserving candidate for the prestigious Best Researcher Award.

📚Publication Top Notes:

Pyrolysis of biomass to produce fuels and chemical feedstocks
Author: S. Yaman
Citation: 1870
Year: 2004
🔥🌱

Interaction between biomass and different rank coals during co-pyrolysis
Authors: H. Haykiri-Acma, S. Yaman
Citation: 263
Year: 2010
♻️⚡

Effect of heating rate on the pyrolysis yields of rapeseed
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 238
Year: 2006
🌾🔥

Prediction of calorific value of biomass from proximate analysis
Authors: A. Özyuğuran, S. Yaman
Citation: 213
Year: 2017
🔋🌿

Production of fuel briquettes from olive refuse and paper mill waste
Authors: S. Yaman, M. Şahan, H. Haykiri-Açma, K. Şeşen, S. Küçükbayrak
Citation: 208
Year: 2000
♻️🌍

Comparison of the thermal reactivities of isolated lignin and holocellulose during pyrolysis
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 206
Year: 2010
🔥🪶

Fuel briquettes from biomass–lignite blends
Authors: S. Yaman, M. Şahan, H. Haykiri-Açma, K. Şeşen, S. Küçükbayrak
Citation: 190
Year: 2001
🔋🌿

Synergy in devolatilization characteristics of lignite and hazelnut shell during co-pyrolysis
Authors: H. Haykiri-Acma, S. Yaman
Citation: 183
Year: 2007
🌰🔥

Gasification of biomass chars in steam–nitrogen mixture
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 178
Year: 2006
⚙️💨

Kinetic modelling of RDF pyrolysis: Model-fitting and model-free approaches
Authors: Ö. Çepelioğullar, H. Haykiri-Açma, S. Yaman
Citation: 142
Year: 2016
🔬🌍

Effect of co-combustion on the burnout of lignite/biomass blends: a Turkish case study
Authors: H. Haykiri-Acma, S. Yaman
Citation: 137
Year: 2008
🔥🌱

Optimal use of condensed parameters of ultimate analysis to predict the calorific value of biomass
Authors: A. Özyuğuran, A. Aktürk, S. Yaman
Citation: 133
Year: 2018
⚙️🌿

Co-combustion of low rank coal/waste biomass blends using dry air or oxygen
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 80
Year: 2013
🌱🔥

Effect of biomass on temperatures of sintering and initial deformation of lignite ash
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 80
Year: 2010
🔥⚙️

Controlling the excess heat from oxy-combustion of coal by blending with biomass
Authors: H. Haykiri-Acma, A.Z. Turan, S. Yaman, S. Kucukbayrak
Citation: 79
Year: 2010
🔥💡

A study to predict pyrolytic behaviors of refuse-derived fuel (RDF): Artificial neural network application
Authors: Ö. Çepelioğullar, İ. Mutlu, S. Yaman, H. Haykiri-Acma
Citation: 78
Year: 2016
🤖🌱

Production of biobriquettes from carbonized brown seaweed
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 78
Year: 2013
🌊🌱

Limits of variations on the structure and the fuel characteristics of sunflower seed shell through torrefaction
Authors: E. Bilgic, S. Yaman, H. Haykiri-Acma, S. Kucukbayrak
Citation: 55
Year: 2016
🌻🔥

Effect of lignite properties on reactivity of lignite
Authors: S. Küçükbayrak, H. Haykırı-Acma, A. Ersoy-Meriçboyu, S. Yaman
Citation: 54
Year: 2001
🔥🌍

Combinations of synergistic interactions and additive behavior during the co-oxidation of chars from lignite and biomass
Authors: H. Haykiri-Acma, S. Yaman
Citation: 53
Year: 2008
🔥💨

Activation energy prediction of biomass wastes based on different neural network topologies
Authors: Ö. Çepelioğullar, İ. Mutlu, S. Yaman, H. Haykiri-Acma
Citation: 52
Year: 2018
⚙️🤖

Is torrefaction of polysaccharides-rich biomass equivalent to carbonization of lignin-rich biomass?
Authors: E. Bilgic, S. Yaman, H. Haykiri-Acma, S. Kucukbayrak
Citation: 52
Year: 2016
🔥🌱

Interpretation of biomass gasification yields regarding temperature intervals under nitrogen–steam atmosphere
Authors: H. Haykiri-Acma, S. Yaman
Citation: 52
Year: 2007
⚡🌱

Effect of biomass on burnouts of Turkish lignites during co-firing
Authors: H. Haykiri-Acma, S. Yaman
Citation: 38
Year: 2009
🔥⚡

Thermal reactivity of rapeseed (Brassica napus L.) under different gas atmospheres
Authors: H. Haykiri-Acma, S. Yaman
Citation: 36
Year: 2008
🌾🔥

Mobilization of some trace elements from ashes of Turkish lignites in rain water
Authors: H. Haykiri-Acma, S. Yaman, N. Ozbek, S. Kucukbayrak
Citation: 34
Year: 2011
💧⚙️

Thermogravimetric investigation on the thermal reactivity of biomass during slow pyrolysis
Authors: H. Haykiri-Acma, S. Yaman
Citation: 34
Year: 2009
🔥🌱

Sulfur removal from lignite by oxydesulfurization using fly ash
Authors: S. Yaman, S. Küçükbayrak
Citation: 34
Year: 1997
🛢️💨

Prediction of calorific value of biomass based on elemental analysis
Authors: A. Özyuğuran, S. Yaman, S. Küçükbayrak
Citation: 32
Year: 2018
🔬🌿

Does carbonization avoid segregation of biomass and lignite during co-firing? Thermal analysis study
Authors: H. Haykiri-Acma, S. Yaman, S. Kucukbayrak
Citation: 31
Year: 2015