Literature DB >> 31513974

Intensified Ethylene Production via Chemical Looping through an Exergetically Efficient Redox Scheme.

Luke M Neal1, Vasudev Pralhad Haribal1, Fanxing Li2.   

Abstract

Ethylene production via steam cracking of ethane and naphtha is one of the most energy and emission-intensive processes in the chemical industry. High operating temperatures, significant reaction endothermicity, and complex separations create hefty energy demands and result in substantial CO2 and NOx emissions. Meanwhile, decades of optimization have led to a thermally efficient, near-"perfect" process with ∼95% first law energy efficiency, leaving little room for further reduction in energy consumption and CO2 emissions. In this study, we demonstrate a transformational chemical looping-oxidative dehydrogenation (CL-ODH) process that offers 60%-87% emission reduction through exergy optimization. Through detailed exergy analyses, we show that CL-ODH leads to exergy savings of up to 58% in the upstream reactors and 26% in downstream separations. The feasibility of CL-ODH is supported by a robust redox catalyst that demonstrates stable activity and selectivity for over 1,400 redox cycles in a laboratory-scale fluidized bed reactor.
Copyright © 2019 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Chemical Engineering; Chemical Reaction Engineering; Industrial Chemistry

Year:  2019        PMID: 31513974      PMCID: PMC6739627          DOI: 10.1016/j.isci.2019.08.039

Source DB:  PubMed          Journal:  iScience        ISSN: 2589-0042


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Journal:  Nat Mater       Date:  2018-11-05       Impact factor: 43.841

  2 in total
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2.  A tailored multi-functional catalyst for ultra-efficient styrene production under a cyclic redox scheme.

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Journal:  Nat Commun       Date:  2021-02-26       Impact factor: 14.919

3.  Selective catalytic oxidation of ammonia to nitric oxide via chemical looping.

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Journal:  Nat Commun       Date:  2022-02-07       Impact factor: 17.694

4.  Alkali metal halide-coated perovskite redox catalysts for anaerobic oxidative dehydrogenation of n-butane.

Authors:  Yunfei Gao; Xijun Wang; Noel Corolla; Tim Eldred; Arnab Bose; Wenpei Gao; Fanxing Li
Journal:  Sci Adv       Date:  2022-07-27       Impact factor: 14.957

  4 in total

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