用CO2催化氧化乙烷脱氢:一个小综述

LARISSA SOARES LIMA, MARIA LUIZA ANDRADE DA SILVA, MARIA DO CARMO RANGEL SANTOS VARELA
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引用次数: 0

摘要

温室效应的一个后果是,全世界越来越关注减少大气中二氧化碳的含量,科学界也在不断努力扩大其在各种应用中的应用。近年来,CO2作为一种替代物,作为轻氧化剂应用于乙烷氧化脱氢反应中,实现了比现有方法更高效、更经济的乙烯制取新途径。因此,乙烷与二氧化碳的氧化脱氢是最有前途的替代品之一,因为它是一个经济和生态的过程,消耗了一种温室气体。分析乙烷催化氧化脱氢反应作为乙烯生产替代途径的相关文献。本文以ELSEVIER、SPRINGER和CAPES数据库的描述词“ODHE”、“Oxidative catalytic dehydrogenation with CO2”和“乙烯”为来源进行文献综述。采用纳入标准,对2012 - 2023年间发表的50篇英语和葡萄牙语文章以及一本技术书籍进行了分析。在乙烷与O2的氧化脱氢反应中,CO2是一种很有前途的替代品,该反应由于形成焦炭和降低对主要产物的选择性而导致催化剂失活。从使用CO2作为氧化剂在反应中,我们有产生活性氧,减少结焦和提高选择性的优势。然而,最大的挑战是开发对乙烯具有活性和选择性的催化剂,氧化镍和氧化铈因具有高催化活性和有利于氧化还原循环而成为有前途的替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DESIDROGENAÇÃO CATALÍTICA OXIDATIVA DO ETANO UTILIZANDO CO2: UMA MINI REVISÃO
As a consequence of the greenhouse effect, there is a growing concern worldwide to reduce the amount of atmospheric carbon dioxide and a continuous effort by the scientific community to expand its use in various applications. Recently, CO2 has been used as an alternative, being applied as a light oxidant in the ethane oxidative dehydrogenation reaction, enabling new routes to obtain ethylene that are more efficient and economical than the current ones. Thus, the oxidative dehydrogenation of ethane with carbon dioxide stands out as one of the most promising alternatives, as it is an economical and ecological process, consuming one of the greenhouse gases. To analyze the literature on the relevance of the catalytic oxidative dehydrogenation reaction of ethane as an alternative route to ethylene production. This is a bibliographic review that used as source the databases of ELSEVIER, SPRINGER and CAPES from the descriptors "ODHE", "Oxidative catalytic dehydrogenation with CO2" and "ethene". Using the inclusion criteria, 50 articles in English and Portuguese published from 2012 to 2023 and a technical book were analyzed. CO2 is a promising alternative for the oxidative dehydrogenation reaction of ethane with O2, which suffers from catalyst deactivation due to coke formation and reducing selectivity to the main product. From the use of CO2 as an oxidant in the reaction, we have the advantage of producing active oxygen species, reducing coking and increasing selectivity. However, the great challenge is the development of catalysts that are active and selective to ethylene, with nickel oxide and cerium oxide emerging as promising alternatives, with high catalytic activity and favoring the redox cycle.
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