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钴钼基钙钛矿型耐硫变换反应催化剂及其制备方法
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作者 《齐鲁石油化工》 2023年第4期312-312,共1页
本发明涉及一种钴钼基钙钛矿型耐硫变换反应催化剂及其制备方法,属于耐硫变换反应催化剂技术领域。本发明所述的钴钼基钙钛矿型耐硫变换反应催化剂,其结构表达式为MoO_(2)-Co_(2)O_(3)@A_(1-x)B_(x)Mo_(0.55)Co_(0.45)O_(3)其中0≤x≤0.... 本发明涉及一种钴钼基钙钛矿型耐硫变换反应催化剂及其制备方法,属于耐硫变换反应催化剂技术领域。本发明所述的钴钼基钙钛矿型耐硫变换反应催化剂,其结构表达式为MoO_(2)-Co_(2)O_(3)@A_(1-x)B_(x)Mo_(0.55)Co_(0.45)O_(3)其中0≤x≤0.5,A为镧或者铈,B为碱金属或者碱土金属。将本发明制备的催化剂用于催化耐硫水煤气变换反应,效果优于传统耐硫水煤气变换催化剂,且其制备工艺简单,操作方便,成本低,稳定性强,具有明显的工业应用价值。 展开更多
关键词 耐硫变换 水煤气变换反应 水煤气变换催化剂 反应催化剂 钴钼 钙钛矿型 碱土金属 碱金属
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化学肥料工业
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《石油石化节能与减排》 2007年第6期34-36,共3页
关键词 大氮肥 化肥工业 原料气 水煤气变换催化剂 合成氮 化学 流程模拟软件 化工 集团公司 尿素合成塔
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Performance Comparison of Two Newly Developed Bimetallic(X-Mo/Al2O3, X=Fe or Co) Catalysts for Reverse Water Gas Shift Reaction
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作者 Abolfazl Gharibi Kharaji Ahmad Shariati 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2016年第1期51-58,共8页
The performance of the two newly developed bimetallic catalysts based on the precursor, Mo/Al_2O_3, was compared for reverse water gas shift(RWGS) reaction. The structures of the precursor and the catalysts were studi... The performance of the two newly developed bimetallic catalysts based on the precursor, Mo/Al_2O_3, was compared for reverse water gas shift(RWGS) reaction. The structures of the precursor and the catalysts were studied using X-ray diffraction(XRD), Brunauer–Emmett–Teller(BET) analysis, inductively coupled plasma-atomic emission spectrometry(ICP-AES), CO chemisorption, temperature programmed reduction of hydrogen(H_2-TPR) and scanning electron microscopy(SEM) techniques. The activity of Fe-Mo and Co-Mo catalysts was compared in a fixed bed reactor at different temperatures. It is shown that the Co-Mo catalyst has higher CO_2 conversion at all temperature level. The time-on-stream(TOS) analysis of the activity of catalysts for the RWGS reaction was carried out over a continuous period of 60h for both catalysts. The Fe-Mo/Al_2O_3 catalyst exhibits good stability within a period of 60h, however, the Co-Mo/Al_2O_3 is gradually deactivated after 50h of reaction time. Existence of(Fe_2(MoO4_))_3 phase in Fe-Mo/Al_2O_3 catalyst makes this catalyst more stable for RWGS reaction. 展开更多
关键词 RWGS reaction bimetallic catalysts activity stability
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