Applied Catalysis2022,Vol.30412.DOI:10.1016/j.apcatb.2021.120968

Pulse pyrolysis of waste cooking oil over CaO: Exploration of catalyst deactivation pathway based on feedstock characteristics

Wu, Qiuhao Ke, Linyao Zhou, Nan Li, Hui Yang, Qi Xu, Jiamin Dai, Leilei Zou, Rongge Liu, Yuhuan Ruan, Roger Wang, Yunpu
Applied Catalysis2022,Vol.30412.DOI:10.1016/j.apcatb.2021.120968

Pulse pyrolysis of waste cooking oil over CaO: Exploration of catalyst deactivation pathway based on feedstock characteristics

Wu, Qiuhao 1Ke, Linyao 1Zhou, Nan 2Li, Hui 3Yang, Qi 1Xu, Jiamin 1Dai, Leilei 1Zou, Rongge 4Liu, Yuhuan 1Ruan, Roger 2Wang, Yunpu1
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作者信息

  • 1. Nanchang Univ
  • 2. Univ Minnesota
  • 3. Shandong Jianzhu Univ
  • 4. Washington State Univ
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Abstract

Pulse pyrolysis was carried out to realize real-time monitoring of CaO catalyst deactivation and regeneration in the catalytic pyrolysis of waste cooking oil (WCO) and free fatty acids (FFAs) based on the pyrolysis characteristics of feed stocks. The high unsaturation of the feedstock decreases the initial decomposition temperature and reduces the content of oxygen-containing compounds. CaO catalyst was completely deactivated after several times of pulse pyrolysis. During the pyrolysis of WCO, the catalytic activity of CaO did not recover after the pause of pulse pyrolysis. However, the catalytic activity all recovered during the pyrolysis of FFAs, but the rate of deactivation was accelerated. A large amount of Ca(OH)2 and CaCO3 were detected in the deactivated catalyst, and soluble coke was not detected. The research suggested that the change of crystal phases and agglomeration were the vital cause that impact the CaO catalyst stability.

Key words

Waste cooking oil/Free fatty acid/Pulse pyrolysis/CaO/Deactivation/BIO-OIL/HYDROGEN-PRODUCTION/ACTIVATED CARBON/CO-PYROLYSIS/FATTY-ACIDS/OLEIC-ACID/DEOXYGENATION/TRIGLYCERIDES/CONVERSION/BIOMASS

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量23
参考文献量59
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