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Synthesis and characterisation of cement clinker-supported nickel catalyst for glycerol dry reforming

机译:水泥熟料负载型镍干法重整镍催化剂的合成与表征

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摘要

Glycerol dry reforming was performed in a packed-bed reactor containing 20wt.% nickel catalyst employing CO2-to-C3H8O3 feed ratios of 0.6 ≤ CGR ≤ 5.0 and reaction temperatures between 923 and 1023 K for syngas (H2 and CO) production studies. Liquid N2 physisorption revealed a significant 32-fold increase in the Brunauer-Emmett-Teller (BET) specific surface area upon the incorporation of nickel metal onto the cement clinker support, which was also corroborated by field emission scanning electron microscopy (FESEM). In addition, NH3- and CO2-temperature programmed desorption (TPD) analyses exhibited the presence of a strong pair of acid (1061.4 umol g_(cat)~(-1)) and basic (1.53 x 10~4 umol g_(cat)~(-1)) sites on the catalyst. A bunsenite (NiO) species with a crystallite size of 15-18 nm and calcium silicate were successfully identified from the X-ray diffraction (XRD) pattern. Subsequently, the results appraised from the reaction studies confirmed the absence of a direct interaction between CO2 and the glycerol compound during the glycerol dry reforming and that the H2 was primarily produced from the glycerol decomposition. This finding could be ascribed to the chemisorption of both compounds at different active sites, which resulted in glycerol decomposition as the primary reaction pathway. The optimum condition for H2 production via glycerol dry reforming was at a carbon dioxide-to-glycerol ratio (CGR) of unity (at constant P_(gly) =14 kPa) and 973 K. Moreover, the glycerol conversion ranged from 70% to 80% at a CGR of 1-1.67. Glycerol dry reforming was discovered to be more feasible for Fischer Tropsch synthesis, as the H2:CO product ratios were <2.0. The post-characterisation of the used catalysts confirmed the presence of whisker-type carbon, which fortunately can be easily removed via oxidation with O2.
机译:甘油干重整反应是在装有20%(重量)镍催化剂的填充床反应器中进行的,CO2-C3H8O3的进料比为0.6≤CGR≤5.0,反应温度在923和1023 K之间,用于合成气(H2和CO)的生产研究。液态N2的物理吸附表明,将镍金属掺入水泥熟料载体后,Brunauer-Emmett-Teller(BET)比表面积显着增加了32倍,这也得到了场发射扫描电子显微镜(FESEM)的证实。此外,NH3和CO2程序升温脱附(TPD)分析显示存在强酸对(1061.4 umol g_(cat)〜(-1))和碱性(1.53 x 10〜4 umol g_(cat)) 〜(-1))位在催化剂上。从X射线衍射(XRD)模式成功鉴定出晶粒尺寸为15-18 nm的亚砷酸盐(NiO)和硅酸钙。随后,根据反应研究评估的结果证实,在甘油干重整过程中,CO2和甘油化合物之间不存在直接相互作用,并且H2主要是由甘油分解产生的。该发现可归因于两种化合物在不同活性位点的化学吸附,这导致甘油分解为主要反应途径。通过甘油干重整生产H2的最佳条件是二氧化碳与甘油之比(CGR)为1(恒定P_(gly)= 14 kPa)和973K。此外,甘油转化率范围为70%至80%的CGR为1-1.67。发现甘油干重整对于费-托合成更可行,因为H 2 ∶CO产物的比率<2.0。使用过的催化剂的后表征证实了晶须型碳的存在,幸运的是,可通过用O2氧化轻松去除。

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