首页> 外文期刊>Quimica nova >SYNGAS PRODUCTION FROM CO2-REFORMING OF CH4 OVER SOL-GEL SYNTHESIZED Ni-Co/Al2O3-MgO-ZrO2 NANOCATALYST: EFFECT OF ZrO2 PRECURSOR ON CATALYST PROPERTIES AND PERFORMANCE
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SYNGAS PRODUCTION FROM CO2-REFORMING OF CH4 OVER SOL-GEL SYNTHESIZED Ni-Co/Al2O3-MgO-ZrO2 NANOCATALYST: EFFECT OF ZrO2 PRECURSOR ON CATALYST PROPERTIES AND PERFORMANCE

机译:溶胶-凝胶合成的Ni-Co / Al2O3-MgO-ZrO2纳米催化剂上CH4的CO2重整制得丁香,ZrO2前驱物对催化剂性能和性能的影响

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Ni-Co/Al2O3-MgO-ZrO2 nanocatalyst with utilization of two different zirconia precursors, namely, zirconyl nitrate hydrate (ZNH) and zirconyl nitrate solution (ZNS), was synthesized via the sol-gel method. The physiochemical properties of nanocatalysts were characterized by XRD, FESEM, EDX, BET and FTIR analyses and employed for syngas production from CO2-reforming of CH4. XRD patterns, exhibiting proper crystalline structure and homogeneous dispersion of active phase for the nanocatalyst ZNS precursor employed (NCAMZ-ZNS). FESEM and BET results of NCAMZ-ZNS presented more uniform morphology and smaller particle size and consequently higher surface areas. In addition, average particle size of NCAMZ-ZNS was 15.7 nm, which is close to the critical size for Ni-Co catalysts to avoid carbon formation. Moreover, FESEM analysis indicated both prepared samples were nanoscale. EDX analysis confirmed the existence of various elements used and also supported the statements made in the XRD and FESEM analyses regarding dispersion. Based on the excellent physiochemical properties, NCAMZ-ZNS exhibited the best reactant conversion across all of the evaluated temperatures, e.g. CH4 and CO2 conversions were 97.2 and 99% at 850 ?oC, respectively. Furthermore, NCAMZ-ZNS demonstrated a stable yield with H2/CO close to unit value during the 1440 min stability test.
机译:通过溶胶-凝胶法合成了利用两种不同的氧化锆前体即水合硝酸氧锆(ZNH)和硝酸氧锆溶液(ZNS)的Ni-Co / Al2O3-MgO-ZrO2纳米催化剂。通过XRD,FESEM,EDX,BET和FTIR分析表征了纳米催化剂的理化性质,并将其用于CH4的CO2重整生产合成气。 XRD图案,对于所使用的纳米催化剂ZNS前体(NCAMZ-ZNS),显示适当的晶体结构和活性相的均匀分散。 NCAMZ-ZNS的FESEM和BET结果显示出更均匀的形貌和更小的粒径,因此表面积更大。此外,NCAMZ-ZNS的平均粒径为15.7 nm,接近于Ni-Co催化剂避免形成碳的临界尺寸。此外,FESEM分析表明两个制备的样品均为纳米级。 EDX分析证实了所使用的各种元素的存在,也支持了XRD和FESEM分析中有关色散的陈述。基于出色的理化特性,NCAMZ-ZNS在所有评估的温度(例如,最高温度)下均表现出最佳的反应物转化率。在850°C下,CH4和CO2的转化率分别为97.2和99%。此外,在1440分钟稳定性测试中,NCAMZ-ZNS表现出稳定的产率,H2 / CO接近单位值。

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