Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting

Metal oxide-mediated CO2 splitting with the assistance of methane (aka chemical looping dry reforming of methane) is a novel and attractive approach for CO2 utilization. Herein, we demonstrate that doping and tailoring the redox window of strontium ferrite (SrFeO3-δ)-calcium oxide nanocomposites are...

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Main Authors: Cunzhuang Chen, Wenbo Yu, Yifei Duan, Xinhe Wang, Junshe Zhang
Format: Article
Language:English
Published: Elsevier 2020-12-01
Series:Chemical Engineering Journal Advances
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666821120300521
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spelling doaj-2ca6966bbba84bf98cfa3fafdaf76bb92021-04-22T13:41:57ZengElsevierChemical Engineering Journal Advances2666-82112020-12-014100052Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splittingCunzhuang Chen0Wenbo Yu1Yifei Duan2Xinhe Wang3Junshe Zhang4School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, ChinaSchool of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, ChinaSchool of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, ChinaState Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, ChinaSchool of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China; Corresponding author.Metal oxide-mediated CO2 splitting with the assistance of methane (aka chemical looping dry reforming of methane) is a novel and attractive approach for CO2 utilization. Herein, we demonstrate that doping and tailoring the redox window of strontium ferrite (SrFeO3-δ)-calcium oxide nanocomposites are effective strategies to improve the performance of chemical looping reforming. The oxygen storage capacity of this redox material is about 0.82 mol O/kg. Chlorine promotes coking in the reduction step; the tailored window not only suppresses complete oxidation of methane but also enhances CO2 transformation in a fixed-bed reactor. At 980 °C, the carbon efficiency is as high as 99%, very close to the equilibrium value. In this case, no recycling or downstream separation is needed, making the proposed scheme more efficient. In addition, both the yield of CO and the productivity of syngas remain stable over 10 redox cycles. This exceptional redox performance makes the chloride-promoted SrFeO3-δ-based nanocomposites a highly competitive and cost-effective chemical looping material.http://www.sciencedirect.com/science/article/pii/S2666821120300521Perovskite nanocompositeCO2 splittingMethaneChemical loopingChlorine
collection DOAJ
language English
format Article
sources DOAJ
author Cunzhuang Chen
Wenbo Yu
Yifei Duan
Xinhe Wang
Junshe Zhang
spellingShingle Cunzhuang Chen
Wenbo Yu
Yifei Duan
Xinhe Wang
Junshe Zhang
Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
Chemical Engineering Journal Advances
Perovskite nanocomposite
CO2 splitting
Methane
Chemical looping
Chlorine
author_facet Cunzhuang Chen
Wenbo Yu
Yifei Duan
Xinhe Wang
Junshe Zhang
author_sort Cunzhuang Chen
title Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
title_short Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
title_full Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
title_fullStr Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
title_full_unstemmed Chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted CO2 splitting
title_sort chlorine-promoted perovskite nanocomposite as a high-performance oxygen transfer agent for chemical looping methane-assisted co2 splitting
publisher Elsevier
series Chemical Engineering Journal Advances
issn 2666-8211
publishDate 2020-12-01
description Metal oxide-mediated CO2 splitting with the assistance of methane (aka chemical looping dry reforming of methane) is a novel and attractive approach for CO2 utilization. Herein, we demonstrate that doping and tailoring the redox window of strontium ferrite (SrFeO3-δ)-calcium oxide nanocomposites are effective strategies to improve the performance of chemical looping reforming. The oxygen storage capacity of this redox material is about 0.82 mol O/kg. Chlorine promotes coking in the reduction step; the tailored window not only suppresses complete oxidation of methane but also enhances CO2 transformation in a fixed-bed reactor. At 980 °C, the carbon efficiency is as high as 99%, very close to the equilibrium value. In this case, no recycling or downstream separation is needed, making the proposed scheme more efficient. In addition, both the yield of CO and the productivity of syngas remain stable over 10 redox cycles. This exceptional redox performance makes the chloride-promoted SrFeO3-δ-based nanocomposites a highly competitive and cost-effective chemical looping material.
topic Perovskite nanocomposite
CO2 splitting
Methane
Chemical looping
Chlorine
url http://www.sciencedirect.com/science/article/pii/S2666821120300521
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AT yifeiduan chlorinepromotedperovskitenanocompositeasahighperformanceoxygentransferagentforchemicalloopingmethaneassistedco2splitting
AT xinhewang chlorinepromotedperovskitenanocompositeasahighperformanceoxygentransferagentforchemicalloopingmethaneassistedco2splitting
AT junshezhang chlorinepromotedperovskitenanocompositeasahighperformanceoxygentransferagentforchemicalloopingmethaneassistedco2splitting
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