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铁氧体吸附剂的穆斯堡尔谱解析及其反应吸附脱硫性能

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Date of Publication:2016-01-01

Journal:催化学报

Affiliation of Author(s):化工学院

Volume:37

Issue:5

Page Number:727-734

ISSN No.:0253-9837

Abstract:Sulfur in transportation fuels is a major source of air pollution. New strategies for the desulfuriza‐tion of fuels have been explored to meet the urgent need to produce cleaner gasoline. Adsorptive desulfurization (ADS) is one of the most promising complementary and alternative methods. Here‐in, nanocrystalline ferrite adsorbents were synthesized from metal nitrates and urea using a mi‐crowave assisted combustion method. A series of ADS experiments were performed using a fixed‐bed reactor to evaluate the ADS reactivity over the ferrites, which was found to have the order MgFe2O4>NiFe2O4>CuZnFe2O4>ZnFe2O4>CoFe2O4. This effect is explained by the fact that the low degree of alloying of Mg‐Fe and the doped Mg increased the interaction between Fe and S com‐pounds, leading to a significant improvement in the desulfurization capability of the adsorbent. Additionally, Mg can dramatically promote the decomposition of thiophene. X‐ray diffraction and M?ssbauer spectroscopy were used to characterize the fresh, regenerated, and sulfided adsorbents. Although the ferrite adsorbents were partially sulfided to bimetallic sulfides during the adsorption process, they were successfully regenerated after calcining at 500 °C in air.

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