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Hydrogen Generation from Catalytic Steam Reforming of Acetic Acid by Ni/Attapulgite Catalysts

机译:Ni /凹凸棒石催化剂催化乙酸水蒸气重整制氢

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In this research, catalytic steam reforming of acetic acid derived from the aqueous portion of bio-oil for hydrogen production was investigated using different Ni/ATC (Attapulgite Clay) catalysts prepared by precipitation, impregnation and mechanical blending methods. The fresh and reduced catalysts were characterized by XRD, N 2 adsorption–desorption, TEM and temperature program reduction (H 2 -TPR). The comprehensive results demonstrated that the interaction between active metallic Ni and ATC carrier was significantly improved in Ni/ATC catalyst prepared by precipitation method, from which the mean of Ni particle size was the smallest (~13 nm), resulting in the highest metal dispersion (7.5%). The catalytic performance of the catalysts was evaluated by the process of steam reforming of acetic acid in a fixed-bed reactor under atmospheric pressure at two different temperatures: 550 °C and 650 °C. The test results showed the Ni/ATC prepared by way of precipitation method (PM-Ni/ATC) achieved the highest H 2 yield of ~82% and a little lower acetic acid conversion efficiency of ~85% than that of Ni/ATC prepared by way of impregnation method (IM-Ni/ATC) (~95%). In addition, the deactivation catalysts after reaction for 4 h were analyzed by XRD, TGA-DTG and TEM, which demonstrated the catalyst deactivation was not caused by the amount of carbon deposition, but owed to the significant agglomeration and sintering of Ni particles in the carrier.
机译:在这项研究中,使用沉淀,浸渍和机械混合方法制备的不同Ni / ATC(凹凸棒粘土)催化剂,研究了从生物油的含水部分衍生的乙酸的催化蒸汽重整以生产氢气。通过XRD,N 2吸附-脱附,TEM和温度程序还原(H 2 -TPR)表征了新鲜的和还原的催化剂。综合结果表明,采用沉淀法制备的Ni / ATC催化剂,活性金属Ni与ATC载体之间的相互作用得到了显着改善,其中Ni粒径的平均值最小(〜13 nm),从而金属分散度最高。 (7.5%)。催化剂的催化性能通过固定床反应器中乙酸的蒸汽重整工艺在大气压下在两个不同温度(550°C和650°C)下进行评估。测试结果表明,与制备的Ni / ATC相比,通过沉淀法制备的Ni / ATC(PM-Ni / ATC)的H 2收率最高,约为82%,乙酸转化效率略低,约为85%。通过浸渍方法(IM-Ni / ATC)(〜95%)。另外,通过XRD,TGA-DTG和TEM对反应4 h后的失活催化剂进行了分析,结果表明该催化剂失活不是由碳沉积量引起的,而是由于镍颗粒在烧结过程中的大量团聚和烧结所致。载体。

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