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Elucidating the nature of the optimal active site for 2,3‑butanediol dehydration to 1,3-butadiene

Beruk Alemu Bekele (UGent) , Jeroen Poissonnier (UGent) and Joris Thybaut (UGent)
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MLA
Bekele, Beruk Alemu, et al. “Elucidating the Nature of the Optimal Active Site for 2,3‑butanediol Dehydration to 1,3-Butadiene.” NAM27 : The 27th North American Catalysis Society Meeting, Abstracts, 2022.
APA
Bekele, B. A., Poissonnier, J., & Thybaut, J. (2022). Elucidating the nature of the optimal active site for 2,3‑butanediol dehydration to 1,3-butadiene. NAM27 : The 27th North American Catalysis Society Meeting, Abstracts. Presented at the The 27th North American Catalysis Society Meeting (NAM27), New York, USA.
Chicago author-date
Bekele, Beruk Alemu, Jeroen Poissonnier, and Joris Thybaut. 2022. “Elucidating the Nature of the Optimal Active Site for 2,3‑butanediol Dehydration to 1,3-Butadiene.” In NAM27 : The 27th North American Catalysis Society Meeting, Abstracts.
Chicago author-date (all authors)
Bekele, Beruk Alemu, Jeroen Poissonnier, and Joris Thybaut. 2022. “Elucidating the Nature of the Optimal Active Site for 2,3‑butanediol Dehydration to 1,3-Butadiene.” In NAM27 : The 27th North American Catalysis Society Meeting, Abstracts.
Vancouver
1.
Bekele BA, Poissonnier J, Thybaut J. Elucidating the nature of the optimal active site for 2,3‑butanediol dehydration to 1,3-butadiene. In: NAM27 : the 27th North American Catalysis Society Meeting, Abstracts. 2022.
IEEE
[1]
B. A. Bekele, J. Poissonnier, and J. Thybaut, “Elucidating the nature of the optimal active site for 2,3‑butanediol dehydration to 1,3-butadiene,” in NAM27 : the 27th North American Catalysis Society Meeting, Abstracts, New York, USA, 2022.
@inproceedings{01GQHYH3E5JDAV43CDZ2ZJSZEW,
  author       = {{Bekele, Beruk Alemu and Poissonnier, Jeroen and Thybaut, Joris}},
  booktitle    = {{NAM27 : the 27th North American Catalysis Society Meeting, Abstracts}},
  language     = {{eng}},
  location     = {{New York, USA}},
  pages        = {{1}},
  title        = {{Elucidating the nature of the optimal active site for 2,3‑butanediol dehydration to 1,3-butadiene}},
  year         = {{2022}},
}