Aaron Zhen Yao Koe | Chemical Engineering | Best Researcher Award

Dr. Aaron Zhen Yao Koe | Chemical Engineering | Best Researcher Award

Postdoctoral Researcher at University Sains Malaysia

Aaron Zhen Yao Koe is a passionate and driven Chemical Engineer specializing in wastewater treatment, nutrient recovery, and catalytic degradation processes. With a Ph.D. in Chemical Engineering from Universiti Sains Malaysia (USM), Aaron has developed extensive expertise in membrane separation technologies, adsorption science, and sonocatalysis. His academic and professional journey is marked by an unwavering commitment to sustainability, innovation, and precision in engineering design. Proficient in MATLAB and skilled in Excel and data modeling tools, Aaron is also trilingual in English, Malay, and Mandarin, which enables him to work effectively in diverse, interdisciplinary teams. His dedication to cutting-edge research has culminated in the publication of two high-impact Q1 journal articles and a book chapter with Elsevier. With experience both in academia and industry, including roles as a process engineer and R&D lab technician, Aaron brings a versatile and application-oriented mindset to any project. His strength lies not only in technical execution but also in clear scientific communication and collaborative problem-solving. With a keen interest in resource-efficient engineering and a strong academic foundation, Aaron is poised to contribute significantly to sustainable technologies and future-focused innovations in chemical and environmental engineering.

Professional Profile

Education

Aaron Zhen Yao Koe’s educational background is rooted in excellence and innovation. He earned his Ph.D. in Chemical Engineering from Universiti Sains Malaysia (USM) between 2020 and 2024, graduating with a stellar CGPA of 3.8736. His doctoral research focused on sonocatalytic degradation using sustainable composite materials, highlighting his commitment to environmental remediation and resource recovery. Prior to this, he obtained a Bachelor of Engineering (Hons) in Chemical Engineering from Universiti Tunku Abdul Rahman (UTAR) from 2015 to 2019. This undergraduate foundation laid the groundwork for his strong competencies in transport phenomena, process design, and environmental engineering. Through his academic tenure, Aaron not only mastered technical subjects but also engaged in research that yielded significant findings, particularly in the application of zeolite-assisted forward osmosis for aquaculture effluent treatment. He has actively contributed to scientific literature with multiple peer-reviewed publications and a book chapter. His academic performance and research productivity demonstrate both analytical rigor and practical ingenuity. Aaron’s education has provided him with the theoretical knowledge, laboratory expertise, and research acumen to solve real-world challenges, and he continues to build on this strong foundation as an emerging thought leader in chemical and environmental engineering.

Professional Experience

Aaron’s professional experience bridges both industrial engineering and academic research. He began his industry journey as a Process Engineer at IBIDEN Electronics Malaysia (2019–2020), where he was tasked with surface defect analysis in the surface department. Utilizing advanced tools such as cross-sectional microscopy and Scanning Electron Microscopy (SEM), he systematically diagnosed production issues, performed root cause analysis, and prepared detailed technical reports for corrective actions. His ability to trace defects across complex processing lines illustrated his analytical depth and meticulous nature. Earlier in his career, he worked as an R&D Lab Technician during an internship at Ambu Sdn. Bhd. in 2017. There, he tested medical devices—mainly bronchoscopes—using instruments like Instron and Quickscope, ensuring compliance with high-quality standards. He also performed packaging and software evaluations, gaining exposure to the R&D lifecycle and quality control protocols. These hands-on roles not only enhanced his problem-solving and documentation skills but also reinforced his capability to adapt to diverse engineering environments. Aaron’s industrial background, combined with his research proficiency, equips him with a holistic understanding of the engineering pipeline—from ideation to implementation and continuous improvement.

Research Interest

Aaron Koe’s research interests are centered on the sustainable treatment of wastewater and resource recovery through advanced chemical engineering techniques. His core areas include nutrient recovery from aquaculture effluent, membrane-based separation processes, sonocatalytic degradation of organic pollutants, and adsorption using bio-derived materials. Aaron’s Ph.D. work on synthesizing graphitic carbon nitride/coconut-shell-derived carbon composites reflects his deep commitment to eco-friendly technologies and waste valorization. He is particularly intrigued by the intersection of nanomaterials and environmental engineering, focusing on the catalytic and sorptive properties of hybrid composites in real-world applications. His earlier project, which employed zeolite-assisted forward osmosis for ammonium and phosphate recovery, demonstrated a forward-thinking approach to circular water management. Aaron is motivated by the urgent global need for water sustainability and cleaner industrial processes. He envisions contributing to innovations that transform waste streams into valuable products, such as fertilizers and reusable water. With growing challenges posed by climate change and water scarcity, his interest lies in translating laboratory-scale findings into scalable, cost-effective, and environmentally viable solutions. Aaron’s research aspirations are further fueled by interdisciplinary collaboration, computational modeling, and the practical integration of engineering design and material science.

Research Skills

Aaron Zhen Yao Koe possesses a robust suite of research skills that span experimental, computational, and analytical domains. His technical proficiency includes MATLAB for transport modeling, Excel for advanced data analysis, and Design Expert software for statistical optimization via Central Composite Design. He has demonstrated strong experimental skills in membrane technology, adsorption studies, and catalytic degradation. In his Ph.D. research, Aaron successfully synthesized composite catalysts from coconut shell husks and tested their performance in sonocatalytic dye degradation, reflecting his competence in materials engineering and environmental chemistry. He has also performed critical parameter optimization, kinetic studies, and mechanistic evaluations. During his aquaculture effluent project, Aaron designed a zeolite-assisted forward osmosis system, conducted ammonium sorption experiments, and successfully regenerated zeolites under complex ion interference, indicating a high level of lab precision and scientific reasoning. His ability to conduct thorough literature reviews, design experiments, interpret results, and prepare high-quality scientific publications further demonstrates his advanced research capabilities. Aaron is also well-versed in scientific communication, with experience in writing journal articles, book chapters, and technical reports. These skills collectively position him as a multidisciplinary researcher capable of leading impactful, sustainability-oriented projects.

Awards and Honors

Aaron Zhen Yao Koe has received recognition for his outstanding research contributions, especially in the field of chemical engineering and environmental sustainability. His scholarly excellence is evident in his successful publication of two research papers in Q1-ranked journals—Journal of Water Process Engineering and Journal of Environmental Chemical Engineering—which are well-regarded in the academic community for their focus on practical and high-impact environmental technologies. Furthermore, he contributed a book chapter to the prestigious Elsevier-published volume Integrated and Hybrid Process Technology for Water and Wastewater Treatment, marking a significant achievement early in his research career. His Ph.D. CGPA of 3.8736 from Universiti Sains Malaysia stands as a testament to his academic rigor and intellectual commitment. In addition to formal recognitions, Aaron’s research work has been supported and mentored by leading experts such as Prof. Dr. Ooi Boon Seng and Dr. Chang Ying Shi, indicating the trust and respect he has earned from senior researchers. His innovative thinking, precision, and interdisciplinary approach have also earned him praise during industrial stints, highlighting his adaptability and professionalism in various engineering settings. These honors reinforce Aaron’s trajectory as a promising and impactful chemical engineer.

Conclusion

In conclusion, Aaron Zhen Yao Koe exemplifies the qualities of a next-generation chemical engineer—analytical, innovative, and environmentally conscious. With a strong academic background culminating in a Ph.D. in Chemical Engineering, Aaron has developed advanced expertise in wastewater treatment, resource recovery, and catalytic materials. His dual exposure to academic research and industrial applications gives him a balanced, pragmatic perspective, allowing him to tackle real-world challenges with scientific rigor and technical acumen. Aaron’s portfolio of high-impact publications, experimental accomplishments, and collaborative projects highlights his capacity to contribute meaningfully to global sustainability goals. Beyond his technical skill set, Aaron brings strong communication abilities, multilingual proficiency, and a collaborative spirit to any team or project. His adaptability and continuous learning mindset enable him to thrive in dynamic research and engineering environments. As he continues his professional journey, Aaron remains committed to innovation, sustainability, and transformative research. With the right platforms and opportunities, he is poised to become a leader in green engineering and a valuable contributor to both academic and industrial advancement in environmental technology.

Publications Top Notes

Title:
Ammonium sorption and regeneration using Mg‑modified zeolites: A study on the interferences of competing ions from aquaculture effluent

Authors: Aaron Koe Zhen Yao, Lim Wei Jiun, Loh Chian Yong, Chang Ying Shi, and Ooi Boon Seng.

Year: 2022

Citation Count: 8

 

Wei-Wei Yan | Chemical Engineering | Best Researcher Award

Dr. Wei-Wei Yan | Chemical Engineering | Best Researcher Award

Assistant Professor at Henan University of Technology, China

Dr. Yan Wei-Wei is a rising academic in the field of chemical engineering with a strong focus on membrane science, separation processes, and sustainable chemical technologies. She is currently an Assistant Professor (Special Appointment) at the School of Chemistry and Chemical Engineering at Henan University of Technology. Dr. Yan’s academic journey spans across prestigious institutions in China and Japan, having earned her Doctor of Engineering from Hiroshima University in 2024, her Master’s from China University of Mining & Technology in 2021, and her Bachelor’s degree from Linyi University in 2018. Over the past five years, she has made notable research contributions, publishing 23 articles in SCI-indexed journals, including top-tier publications such as Journal of Membrane Science, Chemical Engineering Journal, and AIChE Journal. Her research addresses critical issues in membrane fabrication, membrane reactor design, and the purification of complex mixtures. Her scientific work has not only expanded the understanding of transport mechanisms in organosilica membranes but also advanced energy-efficient approaches for ammonia production and aromatic compound purification. As a passionate and driven scholar, Dr. Yan combines rigorous experimentation with innovative thinking, demonstrating the potential to influence the future direction of chemical engineering, particularly in the domains of green chemistry and advanced separation technologies.

Professional Profiles

Education

Dr. Yan Wei-Wei has pursued a comprehensive and international education in chemical engineering, marked by a strong foundation in both theoretical principles and practical research methodologies. Her most recent academic achievement is the completion of a Doctor of Engineering degree in 2024 from the Graduate School of Engineering at Hiroshima University, Japan. During her doctoral studies, she focused on advanced membrane technology, gaining valuable insights into organosilica membrane synthesis and transport phenomena. Prior to this, she earned her Master of Engineering in 2021 from the School of Chemical Engineering & Technology at China University of Mining & Technology, where her research addressed challenges in process optimization and membrane separation systems. Her academic foundation was laid with a Bachelor of Engineering degree in 2018 from the School of Chemistry & Chemical Engineering at Linyi University. Additionally, she undertook earlier undergraduate studies in 2016 at the School of Chemical Engineering, Qingdao University of Science & Technology, which provided her with a strong grounding in chemical engineering principles. Dr. Yan’s educational background reflects a steady and progressive deepening of expertise, from general chemical engineering to highly specialized research in membrane science. This academic path has prepared her to contribute meaningfully to both academia and industry.

Professional Experience

Dr. Yan Wei-Wei began her academic career with an appointment as an Assistant Professor (Special Appointment) at the School of Chemistry and Chemical Engineering, Henan University of Technology, in December 2024. In this role, she has been actively engaged in teaching undergraduate and graduate courses, supervising student research projects, and developing her own research program centered on membrane technology and sustainable chemical processes. Her professional experience is characterized by a seamless transition from rigorous academic training to a dynamic research and teaching environment. At Henan University of Technology, Dr. Yan has taken a proactive role in contributing to interdisciplinary research initiatives, especially in the development of membrane reactors and their application in ammonia production. She has also participated in faculty collaborations aimed at improving laboratory facilities and integrating innovative experimental techniques into the curriculum. Prior to her current appointment, Dr. Yan was involved in various research projects during her doctoral and master’s studies, where she honed her skills in membrane fabrication, analytical techniques, and chemical process design. Her professional trajectory reflects a strong commitment to scientific advancement, collaborative research, and the mentorship of future engineers. Her current role marks the beginning of what promises to be a highly impactful academic career.

Research Interest

Dr. Yan Wei-Wei’s research interests lie at the intersection of membrane science, chemical separation, and sustainable chemical engineering. Her primary focus is on the preparation of organosilica membranes using sol-gel processes and the in-depth analysis of their transport mechanisms. She is particularly interested in how these membranes can be tailored at the molecular level to enhance selectivity and permeability for specific gas or liquid separation applications. Another key area of her research is the design and implementation of membrane reactors for ammonia synthesis. This innovative approach aims to improve energy efficiency and yield compared to conventional catalytic processes, representing a significant step toward green chemical production. Additionally, Dr. Yan is deeply engaged in the extraction and chromatographic purification of oxygen- and nitrogen-containing aromatic compounds, which are vital in the petrochemical and fine chemical industries. Her work explores how these complex mixtures can be efficiently separated using advanced membrane and chromatographic techniques. Dr. Yan’s research contributes to the development of energy-efficient, environmentally friendly, and economically viable solutions for chemical separation and synthesis. She continues to explore novel materials and process intensification strategies that align with global efforts toward sustainable industrial practices and circular economy principles.

Research Skills

Dr. Yan Wei-Wei possesses a robust set of research skills developed through years of academic training and hands-on laboratory experience. She is highly proficient in sol-gel chemistry and membrane fabrication techniques, particularly for organosilica-based materials. Her expertise extends to the characterization of membranes using advanced analytical tools such as SEM, TEM, XRD, FTIR, and TGA, allowing her to comprehensively evaluate membrane structure, thermal stability, and chemical functionality. Dr. Yan is also skilled in gas permeation and separation performance testing, which she employs to understand transport mechanisms and optimize membrane functionality. Her work with membrane reactors involves designing experimental setups for catalytic reactions under controlled conditions, including ammonia synthesis. In addition, she has experience in chromatographic purification and extraction techniques, particularly for aromatic compounds, which require precision and selectivity. Dr. Yan is well-versed in chemical process simulation software and data analysis tools, enabling her to model reaction kinetics and separation efficiencies. Her scientific writing and publication skills are evidenced by her 23 SCI-indexed journal articles, and she is adept at preparing research proposals and managing experimental workflows. These comprehensive research competencies make her an asset to any collaborative or interdisciplinary scientific environment focused on sustainable and advanced chemical engineering technologies.

Awards and Honors

Dr. Yan Wei-Wei has been recognized for her academic excellence and research contributions through multiple awards and honors throughout her academic career. While pursuing her doctoral studies at Hiroshima University, she was distinguished for her outstanding research performance in membrane science, earning accolades for several of her high-impact publications. She was frequently acknowledged by her academic advisors and peers for her dedication, innovative thinking, and perseverance in the laboratory. During her master’s and undergraduate studies in China, Dr. Yan was a recipient of various academic scholarships, including merit-based awards recognizing her strong academic standing and research potential. Her early achievements also include top rankings in departmental research presentations and poster competitions, where she demonstrated clarity in communication and deep understanding of complex chemical engineering concepts. In addition to institutional honors, her publications in highly regarded journals have positioned her as an emerging expert in the field, drawing interest from both national and international collaborators. These recognitions underscore her commitment to excellence, her capacity for independent and team-oriented research, and her potential to make significant contributions to the advancement of chemical engineering. Dr. Yan continues to pursue opportunities that challenge her skills and further her impact on sustainable science and technology.

Conclusion

In summary, Dr. Yan Wei-Wei stands out as a dedicated and innovative chemical engineer whose academic and research pursuits reflect a strong commitment to scientific advancement and sustainability. From her foundational education in China to her doctoral training in Japan, she has cultivated a rich knowledge base in membrane technology, separation processes, and sustainable chemical production. Her current role as an Assistant Professor at Henan University of Technology marks the beginning of a promising academic career characterized by research excellence, interdisciplinary collaboration, and impactful teaching. With 23 publications in well-regarded scientific journals, she has already contributed significantly to the field of chemical engineering, particularly in membrane science and green process design. Dr. Yan’s expertise in sol-gel membrane fabrication, reactor engineering, and purification technologies positions her to tackle some of the pressing challenges facing the chemical industry today. As she continues to build her academic portfolio, she aims to mentor students, lead collaborative research initiatives, and drive innovation in sustainable chemical engineering practices. Her passion, precision, and perseverance make her a valuable contributor to the academic community and a potential leader in advancing environmentally conscious chemical technologies.

 Publications Top Notes

1. Chemical Bond Dissociation Insights into Organic Macerals Pyrolysis of Qinghua Bituminous Coal: Vitrinite vs Inertinite

  • Authors: Shu Yan, Ning Mao, Meilin Zhu, Na Li, Weiwei Yan, Binyan He, Jing-Pei Cao, Yuhua Wu, Jianbo Wu, Hui Zhang, Hongcun Bai

  • Year: 2024

  • Citations:

2. Synergetic Polymetallic Activation: Boosting Performance of Calcium Ferrite Oxygen Carriers in Chemical Looping Combustion

  • Authors: Shu Yan, Liangliang Meng, Chang Geng, Hongcun Bai

  • Year: 2024

  • Citations: 3