Suppr超能文献

铈的添加对负载于二氧化钛上的镍用于一氧化碳甲烷化反应的催化活性增强作用。

The role of Ce addition in catalytic activity enhancement of TiO-supported Ni for CO methanation reaction.

作者信息

Makdee Ammarika, Chanapattharapol Kingkaew Chayakul, Kidkhunthod Pinit, Poo-Arporn Yingyot, Ohno Teruhisa

机构信息

Materials Chemistry Research Center, Department of Chemistry, Center of Excellence for Innovation in Chemistry, Faculty of Science, Khon Kaen University Khon Kaen 40002 Thailand

Synchrotron Light Research Institute (Public Organization) Nakhon Ratchasima 30000 Thailand.

出版信息

RSC Adv. 2020 Jul 20;10(45):26952-26971. doi: 10.1039/d0ra04934d. eCollection 2020 Jul 15.

Abstract

In this work, various amounts of Ce were added to TiO to form a mixed oxide support; Ce Ti O ( = 0, 0.003, 0.05, 0.10 and 0.15) and then those synthesized supports were impregnated by 10 wt% Ni to produce a catalysts. The 10 wt% Ni-Ce Ti O ( = 0, 0.003, 0.05, 0.10 and 0.15) catalysts were tested for CO methanation reaction by using a fixed-bed reactor in the temperature range of 100-500 °C. The sample was pretreated at 450 °C under H and then a mixed feed gas of CO and H was switched into the reactor to start the reaction. The results showed that 10 wt% Ni-CeTiO catalyst (the lowest Ce content) exhibited the highest CO conversion and CH yield. Moreover, 10 wt% Ni-CeTiO showed highly stable during the stability test (50 h.). The results indicated that upon addition of small amount of Ce into TiO-supported Ni, the surface, structural, electrical and redox properties of the catalyst were improved to the extent that these properties can promote the catalytic activities for CO methanation. The Ce addition can improve the CO methanation catalytic activity by several ways. First, higher dispersion of Ni on catalysts surface upon addition of Ce was observed which resulted in higher adsorption rate of H on this metal active site. Second, formation of a larger amounts of oxygen vacancies as well as basicity improvement upon addition of Ce were occurred which can increase the CO adsorption on catalyst surface. Third, incorporation of Ce resulted in improving of a starting reduction temperature of Ni to Ni for TiO-supported Ni catalyst which can indicate that the reducibility of Ce-doped TiO-supported Ni catalyst was enhanced and then alter its catalytic activity. However, increasing of Ce content led to lowering of CO methanation activities which resulted from increasing of basicity by Ce addition. The excess amounts of adsorbed CO would lead to competitive adsorption to H and then lead to a decrease of catalytic activity. Therefore, an appropriate amount of H and CO adsorption ability on catalyst surface was a prominent factor to dominate the catalytic activity.

摘要

在本工作中,向TiO中添加不同量的Ce以形成混合氧化物载体;CeTiOx(x = 0、0.003、0.05、0.10和0.15),然后将这些合成的载体用10 wt%的Ni浸渍以制备催化剂。采用固定床反应器在100 - 500℃温度范围内对10 wt%的Ni - CeTiOx(x = 0、0.003、0.05、0.10和0.15)催化剂进行CO甲烷化反应测试。样品在450℃下用H2预处理,然后将CO和H2的混合进料气切换到反应器中开始反应。结果表明,10 wt%的Ni - CeTiO(Ce含量最低)催化剂表现出最高的CO转化率和CH4产率。此外,10 wt%的Ni - CeTiO在稳定性测试(50小时)期间表现出高度稳定性。结果表明,向TiO负载的Ni中添加少量Ce后,催化剂的表面、结构、电学和氧化还原性质得到改善,以至于这些性质能够促进CO甲烷化的催化活性。添加Ce可以通过几种方式提高CO甲烷化催化活性。首先,观察到添加Ce后Ni在催化剂表面的分散性更高,这导致H2在该金属活性位点上的吸附速率更高。其次,添加Ce后会形成大量的氧空位以及碱性增强,这可以增加CO在催化剂表面的吸附。第三,Ce的掺入导致TiO负载的Ni催化剂中Ni从NiO开始的还原温度降低,这表明Ce掺杂的TiO负载的Ni催化剂的还原性增强,进而改变其催化活性。然而,Ce含量的增加导致CO甲烷化活性降低,这是由于Ce的添加导致碱性增加。过量吸附的CO会导致对H2的竞争性吸附,进而导致催化活性降低。因此,催化剂表面上适当量的H2和CO吸附能力是主导催化活性的一个重要因素。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验