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Synthesis factors affecting the catalytic performance and stability of Ru/C catalysts for supercritical water gasification

机译:影响超临界水气化的RU/C催化剂的催化性能和稳定性的合成因子

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Catalytic supercritical water gasification of isopropanol (450 °C, 30 MPa) over Ru/C catalysts was carried out in a fixed-bed plug flow reactor. In the absence of Ru, isopropanol decomposed to solid carbon (coke), and H2 over the carbon support. The Ru/C catalyst was able to gasify efficiently 10 wt% isopropanol over a period of 96 h at WHSV_(gRu) = 1228 g_(Org) g_(Ru)~(-1) h~(-1) with the gas composition close to the calculated thermodynamic chemical equilibrium. The catalyst lifetime was affected by the decomposition of isopropanol to solid carbon (coke) over the carbon surface that progressively filled up the pores of the activated carbon and this resulted in a covering of the Ru nanoparticles (NPs). The Ru dispersion (D) was found to be a relevant parameter. The 0.5% Ru/C (D = 0.26) was more active than the 2% Ru/C (D = 0.14). The influence of the solvent (acetone vs. water) used during the catalyst impregnation was studied and the turnover frequency (TOF) was twicers high for the Ru/C catalyst prepared with acetone. The higher Ru dispersion and the lower content of residual chloride obtained for the catalyst prepared with acetone were both responsible.
机译:在RU/C催化剂上,在固定床塞流动反应器中进行了异丙醇(450°C,30 MPa)的催化超临界水气化。在不存在RU的情况下,异丙醇分解为固体碳(可乐)和H2在碳载体上。 RU/C催化剂能够在WHSV_(gru)= 1228 g_(org)g_(ru)〜(ru)〜(-1)H〜(-1)H〜(-1)的时间内有效地为10 wt%异丙醇加热10 wt%异丙醇接近计算出的热力学化学平衡。催化剂的寿命受到异丙醇在碳表面上固体碳(可乐)分解的影响,该碳表面逐渐填充了活化碳的孔,这导致了RU纳米颗粒(NPS)的覆盖。发现RU分散(D)是相关参数。 0.5%ru/c(d = 0.26)比2%ru/c(d = 0.14)更活跃。研究了用丙酮制备的RU/C催化剂,研究了催化剂浸渍过程中使用的溶剂(丙酮与水)的影响。用丙酮制备的催化剂获得的较高的RU分散体和较低的残留氯化物含量都是造成的。

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