Chemical Looping Partial Oxidation Process for Syngas Production

Chemical Looping Partial Oxidation Process for Syngas Production
Author: Dikai Xu
Publisher:
Total Pages: 155
Release: 2017
Genre: Chemical engineering
ISBN:

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The chemical looping partial oxidation process is developed for the efficient conversion of gaseous and solid fuels into syngas via partial oxidation. The chemical looping partial oxidation process converts the fuels into high purity syngas with flexible H2:CO ratio that is suitable for downstream fuel or chemical synthesis. In the chemical looping partial oxidation process, the fuels are partially oxidized in the reducer reactor by the oxygen carrier to generate high purity syngas. The reduced oxygen carrier is regenerated in a fluidized bed combustor via the oxidation reaction with air. Compared to the conventional syngas generation processes, the chemical looping partial oxidation process eliminates the need for additional steam or molecular oxygen from an air separation unit (ASU), resulting in an increased cold gas efficiency and decreased fuel consumption. The chemical looping partial oxidation process features the combination of an iron-titanium composite metal oxide (ITCMO) oxygen carrier and a co-current gas-solid moving bed reducer reactor. The ITCMO oxygen carrier is selected for the chemical looping partial oxidation process due to its desired thermodynamic and kinetic properties. Theoretical analysis aided by a modified Ellingham Diagram illustrates that syngas production is thermodynamically favored in the presence of ITCMO oxygen carrier. The co-current moving bed reducer design provides a desirable gas-solid contacting pattern that minimizes carbon deposition while maximizing the syngas yield. Experimental studies in a fixed bed reactor and a bench scale reactor successfully demonstrate the production of high purity syngas from methane and biomass with the combination of moving bed reducer and ITCMO oxygen carrier. Further scale-up of the chemical looping partial oxidation process is demonstrated in an integrated sub-pilot scale reactor system using non-mechanical gas sealing and solid circulation devices. A dynamic modeling scheme is developed for studying the transient behavior and the control of the chemical looping system. A hierarchical control system based on sliding mode control concept is developed for the chemical looping technologies to simplify process operation.


Chemical Looping Partial Oxidation Process for Syngas Production
Language: en
Pages: 155
Authors: Dikai Xu
Categories: Chemical engineering
Type: BOOK - Published: 2017 - Publisher:

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The chemical looping partial oxidation process is developed for the efficient conversion of gaseous and solid fuels into syngas via partial oxidation. The chemi
Chemical Looping Partial Oxidation
Language: en
Pages: 497
Authors: Liang-Shih Fan
Categories: Technology & Engineering
Type: BOOK - Published: 2017-10-12 - Publisher: Cambridge University Press

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The first comprehensive guide to chemical looping partial oxidation processes, covering key principles, techniques, and applications.
Chemical Looping Partial Oxidation for the Conversion of Natural Gas and Biomass to Syngas
Language: en
Pages: 0
Authors: Cody Park
Categories: Chemical engineering
Type: BOOK - Published: 2022 - Publisher:

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Chemical looping partial oxidation is a process technology with the potential to enable clean, sustainable, and cost-effective valorization of hydrocarbon feeds
Nanoscaled Oxygen Carrier Development for Chemical Looping Partial Oxidation of Methane
Language: en
Pages: 177
Authors: Yan Liu
Categories: Methane
Type: BOOK - Published: 2021 - Publisher:

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Natural gas, which is mainly composed of methane, is an important industrial resource for syngas production. Nevertheless, the conventional methane to syngas co
Iron-based Chemical Looping Gasification Technologies for Flexible Syngas Production from Fossil Fuels with Carbon-di-oxide Capture
Language: en
Pages:
Authors: Mandar V. Kathe
Categories:
Type: BOOK - Published: 2016 - Publisher:

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The following study entails process simulations and techno-economic analysis based investigations of novel chemical looping partial oxidation processes. The mov