首页> 美国卫生研究院文献>Nanomaterials >Influence of the Ce4+/Ce3+ Redox-Couple on the Cyclic Regeneration for Adsorptive and Catalytic Performance of NiO-PdO/CeO2±δ Nanoparticles for n-C7 Asphaltene Steam Gasification
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Influence of the Ce4+/Ce3+ Redox-Couple on the Cyclic Regeneration for Adsorptive and Catalytic Performance of NiO-PdO/CeO2±δ Nanoparticles for n-C7 Asphaltene Steam Gasification

机译:Ce4 + / Ce3 +氧化还原偶合对循环再生NiO-PdO / CeO2±δ纳米颗粒对n-C7沥青蒸气气化的吸附和催化性能的影响

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摘要

The main objective of this study is to evaluate the regenerative effect of functionalized CeO2±δ nanoparticles with a mass fraction of 0.89% of NiO and 1.1% of PdO in adsorption and subsequent decomposition of n-C7 asphaltenes in steam gasification processes. During each regeneration cycle, the adsorption capacity and the catalytic activity of the nanoparticles were evaluated. To estimate the adsorption capacity of the nanoparticles, adsorption kinetics were studied at a fixed concentration of n-C7 asphaltenes of 10 mg·L−1 as well as adsorption isotherms at three different temperatures at 25 °C, 55 °C, and 75 °C. To evaluate the catalytic activity, the loss of mass of the nanoparticles was evaluated by isothermal conversions with a thermogravimetric analyzer at 230 °C, 240 °C, and 250 °C, and at non-isothermal conditions involving a heating from 100 °C to 600 °C at a 20 °C·min−1 heating rate. The asphaltenes showed a high affinity for being adsorbed over the nanoparticles surface, due to the nanoparticles-asphaltene interactions are stronger than those that occur between asphaltene-asphaltene, and this was maintained during nine evaluated regeneration cycles as observed in the Henry’s constant that increased slightly, with changes of 21%, 26% and 31% for 25 °C, 55 °C and 75 °C. Polanyi’s adsorption potential decreases by 2.6% for the same amount adsorbed from the first cycle to the ninth. In addition, the catalytic activity of the nanoparticles did not change significantly, showing that they decompose 100% of the n-C7 asphaltenes in all cycles. However, the small decrease in the adsorption capacity and catalytic activity of the nanoparticles is mainly due to the presence and change in concentration and ratio of certain elements such as oxygen, iron or others at the surface of the nanoparticle as shown by X-ray photoelectron spectroscopy (XPS) analyses. Thermodynamic parameters of adsorption such as ΔHadso, ΔSadso, and ΔGadso and the effective activation energy (Ea) were calculated to compare adsorptive and catalytic performance during each cycle. There is an increase of 9.3% and 2.6% in the case of entropy and enthalpy, respectively, and a decrease of 0.5%, 3.1% and 6.5% for 25 °C, 55 °C and 75 °C respectively for the Gibss free energy from cycle 1 to cycle 9. It was found that these parameters are correlated with the Ce concentration and oxidation state ratios (Ce3+/Ce4+ couple) at the surface.
机译:这项研究的主要目的是评估功能化的CeO2±δ纳米颗粒在蒸汽气化过程中对n-C7沥青质的吸附和后续分解中的再生作用,该纳米颗粒的质量分数为0.89%的NiO和1.1%的PdO。在每个再生循环中,评估纳米颗粒的吸附能力和催化活性。为了估算纳米颗粒的吸附能力,研究了在固定浓度的10 mg·L -1 的n-C7沥青质中的吸附动力学,以及在25°C下三个不同温度下的吸附等温线, 55°C和75°C。为了评估催化活性,使用热重分析仪在230°C,240°C和250°C以及在非等温条件下(从100°C加热到250°C),通过等温转化来评估纳米颗粒的质量损失在20°C·min -1 加热速率下为600°C。由于纳米颗粒与沥青质之间的相互作用比沥青质与沥青质之间的相互作用强,因此沥青质显示出对纳米颗粒表面吸附的高亲和力,并且在亨利常数中观察到的九个评估的再生周期中均保持了这种亲和力,亨利常数略有增加在25°C,55°C和75°C下变化分别为21%,26%和31%。从第一个循环到第九个循环,相同量的吸附量,波兰尼的吸附电位下降2.6%。另外,纳米颗粒的催化活性没有明显改变,表明它们在所有循环中分解了100%的n-C7沥青质。然而,纳米颗粒的吸附能力和催化活性的小幅下降主要是由于某些元素例如氧,铁或其他元素的浓度和比例的存在和变化,如X射线光电子所表明的那样光谱分析(XPS)分析。吸附的热力学参数,例如 Δ H a d s o Δ S a d < mi> s o Δ G < mi> a d s o 3 + / Ce 4 + 对)相关。 。

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