
Thaddeus Ezeji
· Professor, & Associate Chair, Wooster campusOhio State University · Animal Sciences
Active 2002–2026
Academic metrics are sourced from OpenAlex and public funding records; values may differ from Google Scholar.
About
Thaddeus Ezeji is a Professor and Associate Chair at The Ohio State University, working on the Wooster campus. His role involves academic leadership within the Department of Animal Sciences. The page indicates his position and contact information but does not provide specific details about his research focus, background, or key contributions.
Research topics
- Chemistry
- Biology
- Food science
- Biochemistry
- Pulp and paper industry
- Biotechnology
- Genetics
- Microbiology
- Agronomy
- Environmental science
Selected publications
Industrial Crops and Products · 2020 · 41 citations
Senior authorCorrespondingFermentation · 2020 · 41 citations
Worldwide, there are various feedstocks such as straws, corn stover, sugarcane bagasse, sweet sorghum bagasse (SSB), grasses, leaves, whey permeate, household organic waste, and food waste (FW) that can be converted to valuable biofuels such as butanol. For the present studies, an economic analysis was performed to compare butanol production from three feedstocks (SSB; FW; and yellow top presscake, YTP or YT) using a standard process and an advanced integrated process design. The total plant cap…
Microbial Biotechnology · 2024-05-01 · 33 citations
editorialOpen accessEXECUTIVE SUMMARY: Microbes are all pervasive in their distribution and influence on the functioning and well-being of humans, life in general and the planet. Microbially-based technologies contribute hugely to the supply of important goods and services we depend upon, such as the provision of food, medicines and clean water. They also offer mechanisms and strategies to mitigate and solve a wide range of problems and crises facing humanity at all levels, including those encapsulated in the susta…
Next Sustainability · 2025-01-01 · 32 citations
articleOpen accessSenior authorCorrespondingDeveloping efficient strategies to capture carbon dioxide (CO 2 ) is essential to addressing the escalating challenges of global warming. Despite being a major greenhouse gas, CO 2 holds significant potential as a sustainable feedstock for chemical production. It can serve as a solvent, a preservative, a raw material for producing fuels, carbonates, polymers, and chemicals, and as a recovery agent for processes such as enhanced coal bed methane and oil recovery. This review highlights significan…
Sustainable Chemistry One World · 2024-05-10 · 32 citations
articleSenior authorCorresponding
Recent grants
Frequent coauthors
- 69 shared
Nasib Qureshi
United States Department of Agriculture
- 35 shared
Victor Ujor
University of Wisconsin–Madison
- 34 shared
Hans P. Blaschek
University of Illinois Urbana-Champaign
- 25 shared
Christopher Chukwudi Okonkwo
Northeastern University
- 13 shared
Adriano Pinto Mariano
Universidade Estadual de Campinas (UNICAMP)
- 10 shared
Okezie Emmanuel
The Ohio State University
- 10 shared
Siqing Liu
National Center for Agricultural Utilization Research
- 10 shared
Rozina Rozina
The Ohio State University
Education
- 2001
PhD, Microbiology
Unversity of Rostock
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