Yeit Haan Teow | Chemical And Environmental | Best Researcher Award Universiti Kebangsaan Malaysia

Assoc. Prof. Dr Yeit Haan Teow | Chemical And Environmental | Best Researcher Award

Associate Professor, University Kebangsaan Malaysia, Malaysia

Teow Yeit Haan is an Associate Professor of Chemical Engineering at the Faculty of Chemical and Process Engineering, University Kebangsaan Malaysia. With a strong academic foundation and over a decade of expertise in water and wastewater treatment, membrane separation technology, and nanotechnology applications, Dr. Teow has made significant contributions to sustainable water solutions. He has authored numerous impactful publications and continues to lead innovative research in developing advanced materials and technologies for environmental challenges.

PROFESSIONAL PROFILE

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STRENGTHS FOR THE AWARD

Teow Yeit Haan is an outstanding researcher in the field of Chemical Engineering, specializing in water and wastewater treatment. His expertise in integrating membrane technology and nanotechnology for water treatment, as demonstrated by his research on nanofiltration membranes and novel membrane materials, positions him as a leading figure in this field. His substantial publication record, with works frequently cited in journals such as Desalination, Journal of Water Process Engineering, and Journal of Membrane Science, further attests to the impact and relevance of his contributions. He has shown great innovation in developing advanced materials such as nanocomposite membranes for water desalination and wastewater treatment.

AREAS FOR IMPROVEMENTS

While Teow’s research has advanced significantly in membrane technology and water treatment, there is potential for further interdisciplinary collaborations. Expanding his research to integrate more diverse environmental technologies and sustainability models could broaden the scope and applicability of his work. Additionally, focusing on practical, real-world implementation of his findings in collaboration with industries could increase the practical impact of his research.

EDUCATION

Dr. Teow earned his Doctorate of Philosophy in Chemical Engineering from Universiti Sains Malaysia (USM) in 2014, specializing in the integration of membrane technology and nanotechnology for water and wastewater treatment. He graduated with First-Class Honors in his Bachelor of Engineering (Chemical Engineering) from Universiti Tunku Abdul Rahman (UTAR) in 2010. His educational journey reflects his dedication to advancing the field of environmental and chemical engineering.

EXPERIENCE

Dr. Teow has over 10 years of research experience in water and wastewater treatment, reclamation, and reuse. His expertise spans membrane separation technology, adsorption processes, and sustainable water solutions. As an academic leader, he has mentored numerous students, collaborated on international projects, and contributed extensively to the scientific community with his innovative approaches to environmental challenges.

AWARDS AND HONORS

Dr. Teow has received multiple awards for his research excellence, including recognition for his contributions to membrane and nanotechnology. His work has been widely cited, underscoring its global impact. He continues to earn accolades for his advancements in chemical engineering and environmental sustainability.

RESEARCH FOCUS

Dr. Teow’s research focuses on water and wastewater treatment, membrane separation technology, adsorption processes, and the development of nanomaterials for sustainable water solutions. His groundbreaking work aims to address global water challenges through innovative technologies and environmental stewardship.

PUBLICATION TOP NOTES

  • Nanofiltration membranes review: Recent advances and future prospects 🌊📚
  • New generation nanomaterials for water desalination: A review 💧🌐
  • Preparation and characterization of PVDF/TiO2 mixed matrix membrane via in situ colloidal precipitation method 🧪🎯
  • Synthesis of cellulose hydrogel for copper (II) ions adsorption 🌿⚗️
  • Nanofiltration membrane processes for water recycling, reuse and product recovery 🚰♻️
  • A review of moving-bed biofilm reactor technology for palm oil mill effluent treatment 🏭🌏
  • Novel GO/OMWCNTs mixed-matrix membrane with enhanced antifouling property 🧑‍🔬💡
  • Development of graphene oxide/multi-walled carbon nanotubes conductive membranes 🌐💧
  • Preparation of novel polysulfone-Fe3O4/GO mixed-matrix membrane for humic acid rejection 🏗️🌿
  • Hybrid chitosan/FeCl3 coagulation–membrane processes: Performance evaluation ⚛️🌟
  • Current approaches for the exploration of antimicrobial activities of nanoparticles 🦠🔬
  • An overview of modification strategies in developing antifouling nanofiltration membranes 🛠️🚿
  • Studies on the surface properties of mixed-matrix membranes for humic acid removal 🧫🌀
  • Treatment of semiconductor-industry wastewater with ceramic and polymeric membranes ⚡💡
  • Water pathways through the ages: Integrated laundry wastewater treatment 💦📖
  • Fouling behaviors of PVDF-TiO2 mixed-matrix membranes in humic acid treatment 🌾🚰
  • Fouling assessment of tertiary palm oil mill effluent membrane treatment ♻️🌴
  • Improving membrane bioreactor performance with silver-decorated graphene oxide 🌟⚙️
  • Environmental impact of nanomaterials in composite membranes 🌍🧪
  • Investigation of anti-fouling and UV-cleaning properties of PVDF/TiO2 membranes 🌞🔬

CONCLUSION

Teow Yeit Haan is highly deserving of the Best Researcher Award due to his groundbreaking work in water and wastewater treatment, specifically in membrane separation and nanotechnology. His extensive research portfolio, innovative approach, and contributions to improving water solutions make him an exceptional candidate for this recognition. With continued focus on industry collaborations and sustainable technologies, his work will undoubtedly have lasting global impact.

Nisar Ali – Chemistry and Chemical Engineering – Best Researcher Award

Nisar Ali - Chemistry and Chemical Engineering - Best Researcher Award

Huaiyin Institute of Technology - China

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Dr. Nisar Ali began his academic journey with a Bachelor of Science in Bio-Sciences from the University of Peshawar, Pakistan. He further specialized in Fuel/Polymer Chemistry, earning a Master of Science and subsequently an M.Phil in Applied Chemistry from the same institution. His pursuit of advanced knowledge led him to Northwestern Polytechnical University in Xi’an, China, where he completed his Ph.D. in Chemistry, focusing on the controlled synthesis of block copolymers and their application in magnetic composite particles for oil-water separation.

PROFESSIONAL ENDEAVORS

Dr. Nisar Ali has accumulated extensive teaching and research experience. He has served as an Associate Professor at the School of Chemistry and Chemical Engineering, Huaiyin Institute of Technology in China since 2018. His responsibilities include teaching undergraduate and postgraduate students, organizing syllabi, lesson plans, and research projects in Chemistry and Chemical Engineering. Prior to this, he was a Lecturer and Head of the Chemistry Department at Bright Future International School & College in Doha, Qatar, and an Assistant Chemist Trainee at the Oil and Gas Development Company in Islamabad. He also served as a Subject Specialist in Chemistry for the Education Department of KPK, Pakistan.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Nisar Ali's research interests are diverse and cutting-edge, encompassing the synthesis and preparation of polymeric and hybrid nano-materials, interfacially active and magnetically responsive nano-composites, and their applications in environmental remediation and the oil industry. He has significant expertise in polymer characterization, material characterization for heavy water and oil emulsion separation, and designing various types of polymeric nanomaterials using advanced techniques. His Ph.D. research focused on developing reusable nanoscale magnetic amphiphilic composites for efficient oil-water separation, demonstrating a novel application of nanotechnology in the oil and gas industry.

IMPACT AND INFLUENCE

Dr. Nisar Ali's work has considerable practical applications, particularly in the field of Chemistry and Chemical Engineering. His research on magnetic composite nanoparticles has potential implications for the oil industry, offering efficient solutions for water separation with minimal oil loss and sludge formation. His expertise in chromatography, spectroscopy, and the design of nanocomposites has contributed to advancements in environmental remediation and photocatalytic degradation of dyes.

ACADEMIC CITES

Dr. Nisar Ali's academic achievements have been recognized through several prestigious awards and scholarships. He received the Chinese Government Scholarship and the North-western Polytechnical University Xian China Postgraduate Scholarship for his excellent research performance. His work on polymeric magnetic hybrid materials for hydrocarbon remediation and demulsification continues to be influential, contributing valuable insights to the field of Chemistry and Chemical Engineering.

LEGACY AND FUTURE CONTRIBUTIONS

Dr. Nisar Ali's legacy in Chemistry and Chemical Engineering is marked by his innovative research and dedication to teaching. His ongoing projects, such as the development of polymeric magnetic hybrid materials, highlight his commitment to advancing nanotechnology applications for environmental and industrial challenges. As an educator and researcher, Dr. Ali's contributions will continue to shape the future of material science and environmental chemistry, fostering new solutions and inspiring future generations of chemists.

NOTABLE PUBLICATION

Efficient photodegradation of organic dyes from industrial wastewater using novel Ni-decorated g-C3N4-TiO2 photocatalysts 2024

Insight into microplastics in the aquatic ecosystem: Properties, sources, threats and mitigation strategies 2024 (4)

A comparative and comprehensive study on robust silver-immobilized chitosan/carboxy methyl chitosan macromolecules for elimination of dyes 2024 (1)

Therapeutic Physical Properties, Photocatalytic, and Anti-bacterial Activities of Hydrothermally Fabricated Cu-doped ZnO NPs 2024 (1)