首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Effect of calcination/reduction conditions of Ni/La2O3-αAl2O3 catalyst on its activity and stability for hydrogen production by steam reforming of raw bio-oil/ethanol
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Effect of calcination/reduction conditions of Ni/La2O3-αAl2O3 catalyst on its activity and stability for hydrogen production by steam reforming of raw bio-oil/ethanol

机译:Ni /La2O3-αAl2O3催化剂的煅烧/还原条件对其原料生物油/乙醇进行蒸汽重整制氢活性和稳定性的影响

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摘要

The influence of calcination and reduction temperatures of Ni/La2O3-αAl2O3 catalyst used in the steam reforming of raw bio-oil was studied in the 550-850 °C range. The experiments were conducted by continuously feeding a mixture of raw bio-oil/ethanol (20 wt% of ethanol) in a two-step system: the first for thermal treatment of bip-oil at 500 °C, with pyrolytic lignin separation, and the second for the steam reforming of volatiles in a fluidized bed catalytic reactor at 700 °C. The properties of the catalysts were analyzed by N2 adsorption-desorption, hydrogen chemisorption, inductively coupled plasma atomic emission mass spectroscopy (Q,-ICP-MS), X-ray diffraction spectroscopy (XRD) and temperature programmed reduction (TPR). The coke deposited on the deactivated catalysts was quantified by temperature programmed oxidation (TPO). Both calcination and reduction temperatures have a significant effect on the amount and nature of the active metal dispersed on the support and they play an important role on the activity and stability of the catalyst throughout the reforming reaction. The catalyst calcined at 550 °C and reduced at 700 °C yielded the highest values of bio-oil conversion and hydrogen yield and were the most stable of the tested catalysts over 4 h reaction.
机译:在550-850°C范围内,研究了用于原料生物油蒸汽重整的Ni /La2O3-αAl2O3催化剂的煅烧和还原温度的影响。通过在两个步骤的系统中连续加入生物油/乙醇原料(乙醇的20 wt%)的混合物进行实验:第一个步骤是在500°C下热处理双酚油,并进行热解木质素分离;以及第二个用于在700°C的流化床催化反应器中对重整蒸气进行蒸汽重整。通过N2吸附-脱附,氢化学吸附,电感耦合等离子体原子发射质谱(Q,-ICP-MS),X射线衍射光谱(XRD)和程序升温还原(TPR)分析了催化剂的性能。沉积在失活催化剂上的焦炭通过程序升温氧化(TPO)进行定量。煅烧和还原温度均对分散在载体上的活性金属的量和性质具有重要影响,并且它们在整个重整反应中对催化剂的活性和稳定性均起重要作用。在550°C下煅烧并在700°C下还原的催化剂产生了最高的生物油转化率和氢气产率,并且在4小时的反应中是最稳定的测试催化剂。

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