Dr. Noshabah Tabassum | Environmental Sciences | Best Researcher Award

Dr. Noshabah Tabassum | Environmental Sciences | Best Researcher Award 

Dr. Noshabah Tabassum, Fatima Jinnah women University Rawalpindi Pakistan, Pakistan

Dr. Noshabah Tabassum is a dedicated academic and researcher specializing in environmental chemistry and sustainable materials. She holds a Ph.D., M.Phil., and M.Sc. in Environmental Science from Fatima Jinnah Women University (FJWU), Rawalpindi, where she currently serves as a Lecturer. With over a decade of teaching and research experience, Dr. Tabassum has made significant contributions through her work on functionalized zeolites and green technologies. Her research has been supported by multiple funded projects, including the FJWU Research Grant and Pakistan Innovation Fund. In addition to her academic accomplishments, she is the Co-founder and Director of Green Plastic, a startup focused on eco-friendly solutions, and has been recognized in several national innovation competitions. Dr. Tabassum’s professional journey also includes international experience as a Research Associate at the University of Malaya, Malaysia, and she continues to inspire innovation in environmental sustainability.

Professional Profile:

GOOGLE SCHOLAR

SCOPUS

Summary of Suitability: Dr. Noshabah Tabassum – Best Researcher Award

Dr. Noshabah Tabassum is an outstanding academic and researcher in the field of environmental chemistry and sustainable materials, with a proven track record of impactful research, funded projects, and innovation. Her academic excellence, entrepreneurial initiative, and dedication to addressing pressing environmental challenges make her a strong candidate for the Best Researcher Award.

🎓 Education

  • Ph.D. in Environmental Science – Fatima Jinnah Women University, Rawalpindi – 1st Division
    🧪 Thesis: Development of Functionalized Zeolite Hybrids as Potential Adsorbents

  • M.Phil in Environmental Science – Fatima Jinnah Women University, Rawalpindi – 1st Division
    🧪 Thesis: Synthesis of Zeolites using Waste Materials and Applications for Wastewater Treatment

  • M.Sc in Environmental Science – Fatima Jinnah Women University, Rawalpindi – 1st Division
    🧪 Thesis: Chemodynamic Studies of Organophosphate Pesticides in Jhelum Soil Samples

  • B.ScUniversity of Punjab, Lahore1st Division

  • F.ScRawalpindi Board1st Division

  • MatricRawalpindi Board1st Division

💼 Work Experience

  • 👩‍🏫 Lecturer, Fatima Jinnah Women University, Rawalpindi
    (Sep 2017 – Present)

  • 👩‍🏫 Visiting Lecturer, Fatima Jinnah Women University, Rawalpindi
    (Feb 2014 – Jun 2014; Feb 2013 – Jun 2013)

  • 🔬 Research Associate, University of Malaya, Kuala Lumpur, Malaysia
    (Jul 2013 – Jan 2014)

  • 👩‍🏫 Lecturer, Fatima Jinnah Women University, Rawalpindi
    (Oct 2010 – Feb 2013)

  • 👩‍🏫 Lecturer, University of Education, NIP
    (Jun 2009 – Jun 2010)

  • 🧪 Teaching Assistant, Fatima Jinnah Women University
    (Sep 2008 – Jun 2009)

  • 🏭 Intern, Askari Cement Limited, Wah
    (Jul 2007 – Sep 2007)

  • 👩‍🏫 Instructor, NCHD Project
    (Jun 2003 – Jul 2003)

🏆 Achievements & Honors

  • 🌱 Co-founder & Director, Green Plastic (Since Oct 2022)

  • 🥈 Finalist, Pak Green Innovation Challenge (Top 7 – Dec 2021)

  • 🚀 Selected, 12th Cohort at National Incubation Center (Mar 2022)

  • 🌟 Top 100 Startups, National Startup Championship (2022)

  • 🎓 Certificate of Graduation, NIC Islamabad (May 2023)

Publication Top Notes:

New method for the adsorption of organic pollutants using natural zeolite incinerator ash (ZIA) and its application as an environmentally friendly and cost-effective adsorbent

CITED:48

Chemodynamics of methyl parathion and ethyl parathion: adsorption models for sustainable agriculture

CITED:46

Study on Ancient Chu Town Urban Green Space Evolution and Ecological and Environmental Benefits.

CITED:31

Hospital waste management: execution in Pakistan and environmental concerns—a review

CITED:30

Synthesis of zeolite from marble powder waste: a greener approach and its application for the removal of inorganic metals from wastewater

CITED:28

Biocompatible cellulose acetate supported ammonium based ionic liquid membranes; way forward to remediate water pollution

CITED:15

Lisandro von Mühlen | Environmental | Best Researcher Award

Dr. Lisandro von Mühlen | Environmental | Best Researcher Award

Dr. Lisandro von Mühlen, Federal University of Rio Grande do Sul, Brazil

Dr. Lisandro von Mühlen is a dedicated chemist specializing in analytical chemistry. He currently serves as a Laboratory Technician at the Federal University of Rio Grande do Sul, contributing to the Laboratory of Inspection and Technology of Milk and Dairy Products, Eggs, and Honey within the Veterinary School. Dr. von Mühlen’s professional journey encompasses significant roles in both academia and industry, reflecting his commitment to advancing chemical sciences.

Professional Profile:

ORCID

Summary of Suitability for the Best Researcher Award: Dr. Lisandro von Mühlen

Dr. Lisandro von Mühlen exhibits a strong foundation in analytical chemistry, with meaningful research contributions and international experience. To strengthen his candidacy for the Best Researcher Award, focusing on expanding his publication record and assuming research leadership roles would be beneficial.

Education 🎓

Dr. von Mühlen’s academic path is marked by a strong foundation in chemistry. He earned his Bachelor’s degree in Industrial Chemistry from the Federal University of Santa Maria (UFSM) in 2013, during which he completed a pivotal internship at Petrobras’s CENPES in the Hydrorefining and Special Processes department. He furthered his studies with a Master’s degree in Chemistry from UFSM, focusing on analytical chemistry. His doctoral research at UFSM, completed in 2023, centered on the determination of pharmaceuticals in hospital effluents using advanced UHPLC-MS/MS techniques, under the guidance of Dr. Osmar Damian Prestes.

Experience 🧪

Dr. von Mühlen’s professional experience bridges both industrial and academic settings. From 2013 to 2014, he contributed to Petrobras, focusing on the development and evaluation of catalysts for hydrotreatment processes. He then advanced to roles at Philip Morris Brazil between 2016 and 2019, where he was instrumental in quality control laboratories, ensuring product compliance and safety. Since 2019, he has been a Laboratory Technician at the Federal University of Rio Grande do Sul, where he applies his expertise to the analysis and quality assessment of dairy products, eggs, and honey.

Research Interests 🔬

Dr. von Mühlen’s research interests are deeply rooted in analytical chemistry, with a particular emphasis on environmental applications. He has focused on the detection and quantification of pharmaceutical contaminants in water systems, employing advanced techniques such as UHPLC-MS/MS. His work aims to assess environmental risk quotients and develop miniaturized methods for chemical oxygen demand determination, contributing to more sustainable and efficient analytical practices. Additionally, he has explored the adsorption behaviors of polycyclic aromatic hydrocarbons, enhancing the understanding of pollutant interactions in various matrices.

Awards 🏆

Throughout his career, Dr. von Mühlen has been recognized for his academic excellence and research contributions. He was awarded scholarships from the National Council for Scientific and Technological Development (CNPq) during his undergraduate and master’s studies, acknowledging his potential in scientific research. His doctoral studies were supported by a scholarship from the Coordination for the Improvement of Higher Education Personnel (CAPES), reflecting his commitment to advancing knowledge in analytical chemistry.

Top Noted Publications 📄

Dr. von Mühlen has contributed to several scientific publications that underscore his research endeavors:

  • “Combining Analytical Strategies to Provide Qualitative and Quantitative Analysis and Risk Assessment on Pharmaceuticals and Metabolites in Hospital Wastewaters” (2025) – Processes

    • Focus: Integrated analytical approaches to assess pharmaceutical contaminants in hospital wastewater.
    • Key Contribution: Provides both qualitative and quantitative analysis for effective risk assessment.
    • Application: Environmental pollution control and regulatory compliance.
  • “Miniaturized Method for Chemical Oxygen Demand Determination Using PhotoMetrix PRO Application” (2022) – Molecules

    • Focus: A miniaturized approach to COD analysis.
    • Key Contribution: Enhances efficiency and sustainability in environmental monitoring.
    • Application: Water quality assessment and pollution monitoring.
  • “Determination of the Titratable Acidity and the pH of Wine Based on Potentiometric Flow Injection Analysis” (2013) – Talanta

    • Focus: Potentiometric flow injection analysis for wine acidity and pH measurement.
    • Key Contribution: Contributes to quality control in the beverage industry.
    • Application: Winemaking and food quality assurance.
  • “Efficient Synthesis of 3-Selanyl- and 3-Sulfanylindoles Employing Trichloroisocyanuric Acid and Dichalcogenides” (2012) – Tetrahedron

    • Focus: Synthetic methodologies for indole derivatives.
    • Key Contribution: Advances pharmaceutical chemistry by developing novel compounds.
    • Application: Drug discovery and organic synthesis.

Best Environmental Sensing Technology

Introductio Best Environmental Sensing Technology

The Best Environmental Sensing Technology Award recognizes outstanding innovations in technology that contribute to environmental monitoring and sustainability. This award highlights advancements in sensor technology that enhance our ability to understand and protect the environment.

Award Eligibility:

This award is open to individuals, teams, and organizations worldwide that have developed innovative environmental sensing technologies. There are no age limits for applicants. Qualification requires a demonstrable impact on environmental monitoring and sustainability. Publications related to the technology are encouraged but not required.

Requirements:

Submissions must include a detailed description of the technology, its development process, and its environmental impact. Evaluation criteria include innovation, environmental impact, scalability, and potential for future applications. Submissions should be in English and follow the submission guidelines outlined below.

Submission Guidelines:

Submissions must be sent via email to the award committee and include a biography of the applicant(s), an abstract of the technology, and supporting files such as videos, images, or data sets. The deadline for submissions is [insert deadline here].

Recognition:

The winner(s) of the Best Environmental Sensing Technology Award will receive a monetary prize and recognition at a prestigious environmental conference. They will also be featured in press releases and on the award website.

Community Impact:

The winning technology will have a significant impact on environmental monitoring and sustainability, helping to protect ecosystems and improve the quality of life for communities around the world.

Biography:

Applicants should provide a brief biography highlighting their relevant experience and expertise in environmental sensing technology.

Abstract and Supporting Files:

The abstract should provide a concise overview of the technology, its development, and its environmental impact. Supporting files should include any additional information or media that helps to showcase the technology’s innovation and impact.