Hot gas desulfurization with vanadium-promoted zinc ferrite sorbents

Jale F. Akyurtlu, Ates Akyurtlu
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引用次数: 32

Abstract

The performance of zinc ferrite promoted with V2O5 was investigated as a hot gas desulfurization sorbent. The sorbents were prepared by the incipient impregnation technique, and the vanadium loading and the calcination temperature were varied. The sorbents were tested in a packed-bed microreactor set-up for five sulfidation-regeneration cycles to investigate their breakthrough behaviour. Sulfidation was performed at 873–973 K with H2S-H2-H2O-N2 mixtures, while regeneration was carried out at 923–973 K with O2-N2 mixtures. The fresh, sulfided, and regenerated sorbents were characterized by atomic absorption spectroscopy, X-ray diffraction, surface area and porosity measurements. The results of the investigation indicated that the sorbents exhibited a more stable cyclic performance with higher vanadium loading, all vanadium-promoted sorbents reduced the H2S content of the gas to levels below the equilibrium level for zinc oxide, some H2S was chemisorbed by vanadium, and two-step calcination imparted structural stability to the sorbents.

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钒促进铁酸锌吸附剂的热气体脱硫
研究了用V2O5促进铁酸锌作为热气体脱硫吸附剂的性能。采用初浸法制备了吸附剂,并对载钒量和煅烧温度进行了调整。吸附剂在填充床微反应器中进行了5次硫化-再生循环测试,以研究其突破行为。用H2S-H2-H2O-N2混合物在873-973 K下进行硫化,用O2-N2混合物在923-973 K下进行再生。采用原子吸收光谱、x射线衍射、比表面积和孔隙度测量对新鲜、硫化和再生吸附剂进行了表征。研究结果表明,钒负载越高,吸附剂的循环性能越稳定,所有钒促进吸附剂都能将气体中H2S含量降低到氧化锌平衡水平以下,部分H2S被钒化学吸附,两步煅烧使吸附剂的结构稳定。
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