Prof Paolo Iodice | Best Researcher Award | Best Researcher Award

Prof Paolo Iodice | Best Researcher Award | Best Researcher Award

Università degli Studi di Napoli Federico II, Italy 

Profile 

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Early Academic Pursuits 🎓

Paolo Iodice has cultivated a strong foundation in engineering and environmental studies, reflected in his extensive academic contributions. His early research, beginning in the 2010s, focused on the environmental impact of vehicles, particularly the behavior of emissions in various conditions. Iodice’s deep commitment to understanding vehicular emissions led him to investigate cold and hot conditions for motorcycles and scooters, laying the groundwork for his future work on sustainability and environmental protection. His early publications, including his work presented at the 65th and 66th ATI National Congresses, showcase his collaboration with renowned academics such as A. Senatore and M.V. Prati. During these formative years, Iodice’s research established his expertise in emission behavior and experimental methodologies.

His engagement with academia is further evidenced by his involvement in international conferences, including the 10th Urban Environment Symposium in Gothenburg, Sweden (2010), where his contributions helped shape discussions on sustainable urban transport and environmental issues. This phase of Iodice’s career was marked by a curiosity for experimental research, leading him to create and refine models that predict and assess the environmental impact of road transport.

Professional Endeavors 🌍

Building on his academic foundation, Iodice embarked on a professional journey that married theory with practical application. His professional career has been largely dedicated to the field of automotive engineering and environmental monitoring, focusing on emission control and vehicle performance evaluation. A key milestone in Iodice’s career was his involvement in the development of methodologies to quantify and reduce the environmental footprint of road transport. His work spans innovative solutions like ethanol-gasoline blended fuels, where he explored their impact on motorcycle emissions.

Iodice has contributed to the growing body of knowledge on cold start emissions, presenting his findings at global conferences, such as the SAE ICE conferences in Capri, Italy, and Detroit, USA, where he collaborated with other experts in the field. He has authored numerous papers on vehicular emissions, cold emissive behavior of motorcycles, and the modeling of pollutant dispersion, underscoring his focus on integrating sustainable technologies into transportation.

His professional endeavors also extend into experimental investigation, particularly with chassis dynamometer setups that allow for real-time monitoring of emissions from two-wheelers and scooters. This combination of empirical data and theoretical modeling has enabled Iodice to make impactful contributions to both industrial practices and policy discussions regarding environmental standards for vehicles.

Contributions and Research Focus 🔬

Paolo Iodice’s research trajectory reveals a steadfast commitment to addressing the pressing challenges of vehicular emissions and their environmental consequences. His scholarly work is deeply intertwined with real-world applications, where his focus has predominantly been on the following areas:

  1. Emission Behavior of Motorcycles and Scooters: Iodice has extensively studied the behavior of emissions from motorcycles and scooters in different operational conditions. His early work with high-performance motorcycles, where he applied a theoretical-experimental model to evaluate emissions, continues to be a reference point in this area of study.
  2. Cold Start Emissions: A significant portion of Iodice’s research centers on the emissions produced during cold starts—one of the most pollutive phases of vehicle operation. His investigations into ethanol-gasoline blends have offered insights into how alternative fuels can reduce emissions during this critical phase.
  3. Sustainable Transportation Solutions: Throughout his career, Iodice has sought to develop eco-friendly transportation models. His work on innovative power-assisted bicycles and electrically assisted bicycles has garnered attention for their potential to contribute to urban sustainability goals.

These contributions have not only furthered academic discourse but have also provided valuable insights for industries and policymakers working toward reducing transportation’s carbon footprint. His collaborations with other experts have strengthened his research’s interdisciplinary appeal, as seen in his work on eco-compatible protocols for soil remediation in the SIN Litorale Domizio-Agro Aversano project.

Accolades and Recognition 🏆

Paolo Iodice’s contributions to engineering and environmental sciences have been met with significant recognition from his peers and the broader scientific community. He has been invited to present his research at prestigious conferences worldwide, including the World Congress on Engineering and the ASME-ATI-UIT joint conferences. His research on emission inventories, especially from two-wheeler vehicles, has been included in the Springer “Alliance for Global Sustainability” book series, attesting to the importance of his work in global discussions on sustainable development.

Iodice has also received accolades for his research on trigeneration plants and their role in sustainable urban development. His ability to bridge the gap between advanced engineering solutions and environmental sustainability has made him a sought-after speaker and collaborator in both academic and professional circles.

Impact and Influence 🌱

Iodice’s research has had a profound impact on how emissions from motorcycles and scooters are understood and addressed. His work on ethanol-gasoline blends, for instance, has paved the way for further research into alternative fuels that can help reduce greenhouse gas emissions. Moreover, his development of models to predict pollutant dispersion from motor vehicles in metropolitan areas has had far-reaching implications for urban planners and environmental regulators, aiding them in creating more effective environmental protection policies.

His influence extends beyond the academic community, as his research has practical implications for industries looking to meet stricter environmental standards. The emission factors he developed for two-wheelers are now integral to emission inventories used by governments and environmental agencies.

Legacy and Future Contributions 🔭

Looking forward, Paolo Iodice’s legacy will undoubtedly be defined by his tireless pursuit of innovative solutions to one of the most significant environmental challenges of our time: vehicular emissions. His research will continue to influence the development of more sustainable transportation systems, especially in urban areas, where the need to reduce emissions is most pressing. His work on electrically assisted bicycles and alternative fuel models could play a crucial role in shaping the future of urban mobility.

As he continues to explore new methodologies and technologies for emission reduction, Iodice’s contributions to both the academic and practical aspects of engineering will remain influential. His future research may well expand into areas such as electric vehicles and renewable energy integration, ensuring that his work continues to be at the cutting edge of environmental sustainability.

In summary, Paolo Iodice’s journey from an inquisitive researcher to a globally recognized expert in vehicular emissions exemplifies his unwavering dedication to creating a more sustainable future. His contributions to academia and industry will have a lasting impact on both fields, making him a key figure in the fight against climate change. 🌍

📝Notable Publications

Comprehensive assessment and energetic-exergetic performance optimization of a new solar thermal electricity system based on Scheffler-type receivers combined with screw-type volumetric machines

Authors: Not provided in the query.

Journal: International Journal of Thermofluids

Volume: Not provided.

Year: 2024-11

Numerical Analysis of SO₂ Absorption inside a Single Water Drop

Authors: Not provided in the query.

Journal: Atmosphere

Year: 2023-11-28

Pattern recognition of two-phase liquid–gas flow by discriminant analysis applied to accelerometric signals

Authors: Not provided in the query.

Journal: Physics of Fluids

Year: 2023-09-01

Latest Advances in Thermal Energy Storage for Solar Plants

Authors: Not provided in the query.

Journal: Processes

Year: 2023-06-16

Numerical Optimization and Energetic Advantages of an Innovative Solar Power System Based on Scheffler Receiver Coupled with Volumetric Expanders

Authors: Not provided in the query.

Journal: Energy & Environment

Year: 2023-05

Mr. Spandan Nanda | Research and Teaching | Best Researcher Award

Mr. Spandan Nanda | Research and Teaching | Best Researcher Award

College of Basic science and Humanities,OUAT, India 

Profile 

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Early Academic Pursuits 🎓

Spandan Nanda’s academic journey began with a strong foundation in science and mathematics. Completing his 10th-grade education at St. Xavier International School with an impressive CGPA of 9.8, Spandan showcased his aptitude for analytical thinking and problem-solving early on. His performance in 12th grade at St. Xavier High School, where he studied a rigorous curriculum that included Mathematics, Physics, Chemistry, Biology, and English, further solidified his commitment to the sciences. Although his score was a modest 62.2%, it served as a stepping stone toward his higher academic achievements.

Spandan pursued a Bachelor’s degree in Chemistry from Jupiter Degree College, graduating in 2019 with an impressive CGPA of 8.76. His academic curiosity led him to a postgraduate program in Chemistry at the Institute of Technical Education and Research (ITER) under Siksha ‘O’ Anusandhan (SOA) University, where he excelled with a CGPA of 9.32. His deep-seated interest in the field of chemistry paved the way for his ongoing Ph.D. at the College of Basic Science and Humanities (CBSH), OUAT, where he has completed his coursework and is actively engaged in research.

Professional Endeavors 💼

Spandan Nanda’s professional journey is marked by his significant contribution as a Senior Research Fellow (SRF) at the BPCL-Biofuel Project, CAET, OUAT, from April 2022 to April 2023. In this role, he was deeply involved in pioneering research that aligns with the global shift toward sustainable energy solutions. His work focused on the extraction and processing of biomass, highlighting his commitment to advancing bioenergy technologies.

During his tenure, Spandan worked on diverse projects, including the BOD & COD analysis of wastewater at Tata Steel Plant, Kalinga Nagar, during his graduation. His postgraduate projects further demonstrated his expertise, with a minor project on the extraction of Europium using different extractants, and a major project on the synthesis and application of Fe2O3@SiO2.Ag from red mud.

Contributions and Research Focus 🔬

Spandan’s research is characterized by a strong focus on bioenergy and environmental sustainability. His work spans various aspects of biofuel production, from the extraction of biomass and oils from oilseed crops to the gasification of biomass using advanced technologies. He has developed expertise in the safe handling of chemicals, operation of sophisticated laboratory equipment, and adherence to Good Laboratory Practices (GLP).

His publication record reflects his contributions to the field, with research papers in high-impact journals. Notable publications include:

  • “Bioenergy potential of different varieties of paddy straw biomass” in Bioresource Technology Reports (I.F-4.8).
  • “A comparative study on pyrolysis, kinetics, and thermodynamic parameters of little millet and sunflower stem biomass using thermogravimetric analysis” in Bioresource Technology (I.F-11.8).
  • “Biochemical and SSR based molecular characterization of elite rice varieties for straw lignocellulose” in Molecular Biology Reports (I.F-2.74).
  • “Study on biofuel efficiency of tropical banana leaf biomass using spectroscopy, kinetic, and thermodynamic parameters” in Bioresource Technology Reports (I.F-4.8).

These publications not only highlight his research capabilities but also his dedication to advancing knowledge in the field of bioenergy.

Accolades and Recognition 🏆

Throughout his academic and professional career, Spandan Nanda has received recognition for his contributions to science and research. His work on bioenergy, particularly in the context of sustainable development, has positioned him as a promising researcher in the field of chemistry. His dedication to his studies and his professional roles have earned him respect among his peers and mentors.

Impact and Influence 🌍

Spandan’s work in bioenergy is highly relevant in today’s context of climate change and the global energy crisis. By focusing on the development of biofuels and sustainable energy sources, he contributes to reducing dependence on fossil fuels and promoting environmental sustainability. His research on the gasification of biomass and production of biochar has practical implications for the energy sector, offering alternative energy solutions that are both sustainable and economically viable.

Legacy and Future Contributions 🚀

As Spandan Nanda continues his Ph.D. and further professional endeavors, his contributions to the field of chemistry and bioenergy are expected to grow. His research holds the potential to influence future developments in sustainable energy, with the promise of making significant strides in the field of biofuels. Spandan’s legacy will likely be one of innovation and commitment to environmental sustainability, with his work serving as a foundation for future research in this critical area.

His ongoing research and future projects are anticipated to further the understanding of bioenergy and its applications, contributing to the global efforts in combating climate change. Spandan Nanda is poised to be a leading figure in his field, with his work leaving a lasting impact on both the scientific community and the world at large.

Notable Publications 

Synergistic cobalt oxide/reduced graphene oxide/biochar nano-composite catalyst: harnessing the power of the catalyst for sustainable remediation of organic dyes and chromium(vi)

Authors: Amrita Priyadarsini, Chirasmayee Mohanty, Spandan Nanda, Abinash Mishra, Nigamananda Das, Nandita Swain, Manasi Dash, Pradip Kumar Jena
Journal: RSC Advances
Year: 2024

 A comparative thermo-chemical characterization of oilseed, millet and pulse stem biomass for bioethanol production

Authors: Spandan Nanda, Abinash Mishra, Amrita Priyadarsini, Tanya Barpanda, Amiya Kumar Baral, Supriya Jena, Pradip Kumar Jena, Bipranarayan Mallick, Manasi Dash, Nandita Swain
Journal: Heliyon
Year: 2024

Thermodynamic, spectroscopic, and molecular characterization of rice straw biomass for use as biofuel feedstock

Authors: Spandan Nanda, Bishnupriya Swain, Amrita Priyadarsini, Abinash Mishra, Manas Ranjan Parida, Pradip Kumar Jena, Mahendra Kumar Mohanty, Manasi Dash
Journal: The Canadian Journal of Chemical Engineering
Year: 2024

 A Comprehensive Molecular, Biochemical, Histochemical, and Spectroscopic Characterization of Early and Medium Duration Rice Genotypes Investigating Dry Matter Accumulation Efficiencies

Authors: Abinash Mishra, Manasi Dash, Tanya Barpanda, Agnija Sibadatta, Pragati Sahu, Priyadarshini Sahu, Pasupuleti Jahnavi, Amrita Priyadarsini, Spandan Nanda, Mahendra Kumar Mohanty
Journal: Applied Biochemistry and Biotechnology
Year: 2024

 Understanding the biochemical, physiological, molecular, and synthetic biology approaches towards the development of C4 rice (Oryza sativa L.)

Authors: Jyoti Prakash Sahoo, Debashis Mahapatra, Manaswini Mahapatra, Tuward J. Dweh, Salma Kayastha, Pranaya Pradhan, Swapan Kumar Tripathy, Kailash Chandra Samal, Abinash Mishra, Manasi Dash
Journal: Cereal Research Communications
Year: 2024