Mn-Doped Ca2fe2o5 Oxygen Carrier for Chemical Looping Gasification of Biogas Residue : Effect of Oxygen Uncoupling
Anaerobic digestion is an important approach to treat and utilize kitchen waste, while its biogas residue (BR) disposal remains a serious problem. This study investigated the feasibility of chemical looping gasification (CLG) as an efficient way to treat and generate syngas from BR. Besides, Mn-doped Ca2Fe2O5 (MCF) as a novel oxygen carrier with mild oxygen uncoupling capability was developed, and its performance against traditional Ca2Fe2O5 (CF) oxygen carrier was compared. Results indicated that, significant oxygen release capability was observed on the prepared MCF oxygen carrier. CLG with MCF at 800 ℃ showed optimal syngas yield, carbon conversion, and gasification efficiency, which reached 0.56 Nm3 /kg, 98.56%, and 68.42%, respectively. According to the characterization results, the optimal performance of MCF could be attributed to oxygen uncoupling characteristic brought by Mn addition. The formation of the oxygen uncoupling capability could be explained by three reasons: (1) Mn in MCF mainly existed in Mn3+ and Mn4+ , which showed strong oxidability at a temperature as low as 250 ℃. (2) The higher Fe3+/Fe2+ ratio of 1.55 in MCF than CF led to greater oxidability of Fe ions. (3) MCF had 3.86% higher lattice oxygen amount than CF and the lattice oxygen in its crystal structure had been transformed into active lattice oxygen species. This paper demonstrated the potential of CLG to treat and utilized BR, and the superiority of CLG with oxygen uncoupling (CLGOU) on MCF was highlighted. It's hoped that this study could provide a fundamental knowledge on CLG and CLGOU of BR, and benefit to better downstream process design of anaerobic digestion industry
Year of publication: |
[2022]
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Authors: | Yan, Beibei ; Liu, Zibiao ; Wang, Jian ; Ge, Yadong ; Cheng, Zhanjun ; Tao, Junyu ; Chen, Guanyi |
Publisher: |
[S.l.] : SSRN |
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