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Two-Dimensional Layered Double Hydroxide Derived from Vermiculite Waste Water Supported Highly Dispersed Ni Nanoparticles for CO Methanation

机译:Ver石废水的二维层状双氢氧化物负载高分散Ni纳米颗粒用于CO甲烷化

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Expanded multilayered vermiculite (VMT) was successfully used as catalyst support and Ni/VMT synthesized by microwave irradiation assisted synthesis (MIAS) exhibited excellent performance in our previous work. We also developed a two-dimensional porous SiO2 nanomesh (2D VMT-SiO2) by mixed-acid etching of VMT. Compared with three-dimensional (3D) MCM-41, 2D VMT-SiO2 as a catalyst support provided a superior position for implantation of NiO species and the as-obtained catalyst exhibited excellent performance. In this paper, we successfully synthesized a layered double hydroxide (LDH) using the spent liquor after mixed-acid etching of VMT, which mainly contained Mg2+ and Al3+. The as-calcined layered double oxide (LDO) was used as a catalyst support for CO methanation. Compared with Ni/MgAl-LDO, Ni/VMT-LDO had smaller active component particles; therefore, in this study, it exhibited excellent catalytic performance over the whole temperature range of 250–500 °C. Ni/VMT-LDO achieved the best activity with 87.88% CO conversion, 89.97% CH4 selectivity, and 12.47 × 10?2·s?1 turn over frequency (TOF) at 400 °C under a gas hourly space velocity of 20,000 mL/g/h. This study demonstrated that VMT-LDO as a catalyst support provided an efficient way to develop high-performance catalysts for synthetic natural gas (SNG) from syngas.
机译:膨胀的ver石(VMT)被成功地用作催化剂载体,通过微波辐照辅助合成(MIAS)合成的Ni / VMT在我们以前的工作中表现出优异的性能。我们还通过VMT的混合酸蚀刻技术开发了二维多孔SiO2纳米网孔(2D VMT-SiO2)。与三维(3D)MCM-41相比,二维VMT-SiO2作为催化剂载体为NiO物种的注入提供了优越的位置,并且所获得的催化剂表现出出色的性能。在本文中,我们用废液成功地合成了层状双氢氧化物(LDH),该废液经VMT混合酸蚀刻后,主要含有Mg2 +和Al3 +。煅烧后的层状双氧化物(LDO)用作CO甲烷化的催化剂载体。与Ni / MgAl-LDO相比,Ni / VMT-LDO的活性成分颗粒更小;因此,在这项研究中,它在250–500°C的整个温度范围内均表现出出色的催化性能。 Ni / VMT-LDO在400°C的气体时空速为20,000 mL / min时,CO转化率为87.88%,CH4选择性为89.97%,转换频率(TOF)为12.47×10?2·s?1,达到了最佳活性。克/小时这项研究表明,VMT-LDO作为催化剂载体为从合成气开发用于合成天然气(SNG)的高性能催化剂提供了有效途径。

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