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首页> 外文期刊>Journal of CO2 Utilization >Tailoring the properties of electrolyzed Ni/mesostructured silica nanoparticles (MSN) via different Ni-loading methods for CO2 reforming of CH4
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Tailoring the properties of electrolyzed Ni/mesostructured silica nanoparticles (MSN) via different Ni-loading methods for CO2 reforming of CH4

机译:通过不同的Ni加载方法针对CH4的CO2重整来调整电解Ni /介晶二氧化硅纳米粒子(MSN)的性能

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A series of Ni/mesostructured silica nanoparticles (NiM) catalysts from an electrolyzed Ni precursor were prepared by in-situ (NiM_IS), impregnation (NiM_IM), and physical mixing (NiM_PM) methods for CO2 reforming of CH4. N-2 physisorption indicated that all preparation methods decreased the surface area and pore volume of the mesostructured silica nanoparticles (MSN) which may be attributed to the blockage of the pores by the deposition of NiO particles onto the MSN support. The XRD and H-2-TPR analyses indicated that the in-situ method dispersed smaller Ni-0 crystallites and exhibited a stronger metal-support interaction compared to the other methods. IR results indicated that the presence of an alkaline electrolyte during the introduction of Ni promoted sequential desilication-substitution of MSN, forming Si-O-Ni. CO2 adsorbed IR and ESR spectroscopies showed that NiM_IS possessed a higher basicity and more defect structures compared to NiM_IM and NiM_PM, owing to the abundant silanol groups and the formation of metal-deficient Ni2O3. At 800 degrees C, the CH4 and CO2 conversions occur in the order of NiM_IM (CH4 = 45.6 %, CO2 = 52.4%)
机译:通过原位(NiM_IS),浸渍(NiM_IM)和物理混合(NiM_PM)方法从CH2的CO2重整制备了一系列由Ni电解前驱体制备的Ni /介晶二氧化硅纳米颗粒(NiM)催化剂。 N-2的物理吸附表明,所有制备方法均降低了介孔结构二氧化硅纳米颗粒(MSN)的表面积和孔体积,这可能归因于NiO颗粒沉积在MSN载体上而堵塞了孔。 XRD和H-2-TPR分析表明,与其他方法相比,原位方法分散了较小的Ni-0晶体,并表现出更强的金属-载体相互作用。红外结果表明,在引入镍过程中碱性电解质的存在促进了MSN的顺序脱硅取代,形成了Si-O-Ni。 CO2吸附的IR和ESR光谱表明,与NiM_IM和NiM_PM相比,NiM_IS具有更高的碱度和更多的缺陷结构,这归因于硅烷醇基团丰富且形成了金属缺陷的Ni2O3。在800摄氏度下,CH4和CO2的转换顺序为NiM_IM(CH4 = 45.6%,CO2 = 52.4%)

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