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Regulating the Fe/Mo ratio of FeMoO_(x)/LaTiO_(y) to boost aerobic oxidative desulfurization of diesel
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作者 ZHANG Fengren YAN Ying +6 位作者 LIU Feng WU Yang LIANG Shuqin CHENG Huifang HAN Shanlei LIU Jixing ZHU Wenshuai 《燃料化学学报(中英文)》 北大核心 2025年第8期1255-1268,共14页
Catalytic oxidation desulfurization(CODS)technology has shown great promise for diesel desulfurization by virtue of its low cost,mild reaction conditions,and superior desulfurization performance.Herein,a series of FeM... Catalytic oxidation desulfurization(CODS)technology has shown great promise for diesel desulfurization by virtue of its low cost,mild reaction conditions,and superior desulfurization performance.Herein,a series of FeMoO_(x)/LaTiO_(y)-z samples with diverse Fe/Mo ratios were prepared via a facile citric acid-assisted method.The impact of Fe incorporation on the dispersion and surface elemental states of Mo species,as well as oxygen species content of the synthesized FeMoO_(x)/LaTiO_(y)-z catalysts were systematically characterized using TEM,BET,UV-vis DRS,XPS,XANES,and reaction kinetics,and their CODS performances were examined for 4,6-DMDBT removal.Experimental results demonstrated that Fe/Mo ratio significantly affected the Ti−O bond strength,surface dispersion and electronic structure of Mo O_(2)species on FeMoO_(x)/LaTiO_(y)-z catalysts.FeMoO_(x)/LaTiO_(y)-2 catalyst showed outstanding cycling durability and the best CODS performance with almost 100%removal of 4,6-DMDBT from model oil within 75 min due to its proper MoO3 dispersion,optimal redox property,and the most oxygen vacancy concentration.Nevertheless,further enhancing Fe content led to the increased dispersion of Mo species,while the decrease active Mo species as well as the increase of steric effect for 4,6-DMDBT accessing to the catalytic reactive sites considerably increase the apparent activation energy of FeMoO_(x)/LaTiO_(y)-z(z>2)catalysts during the CODS process,thereby seriously suppressing their CODS performances.Moreover,Radical trapping experiments reveal that the·,generated by the activation of O_(2)at the active sites,catalytic oxidized 4,6-DMDBT to the product of 4,6-DMDBTO_(2),thereby enabling both deep desulfurization and recovery of high-value 4,6-DMDBTO_(2).These findings offer an alternative strategy to achieve ultra deep desulfurization as well as separate and recover high economic value sulfone substances from diesel. 展开更多
关键词 catalytic oxidation desulfurization FeMoO_(x)/LaTiO_(y)catalyst Ti−O bond dispersion reaction kinetics
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六方片状氢氧化镁的合成及其第一性原理分析 被引量:14
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作者 周永红 范天博 +4 位作者 刘露萍 李莉 李雪 郭洪范 刘云义 《化工学报》 EI CAS CSCD 北大核心 2016年第9期3843-3849,共7页
分别以硝酸镁和氯化镁为原料,氨气为沉淀剂,采用一步水热法制备六方片状氢氧化镁,并利用扫描电镜(SEM)和X射线衍射(XRD)对产品进行表征。采用第一原理赝势平面波方法,对氢氧化镁的各个经常显露面族的能量、电子结构和布居数进行理论计... 分别以硝酸镁和氯化镁为原料,氨气为沉淀剂,采用一步水热法制备六方片状氢氧化镁,并利用扫描电镜(SEM)和X射线衍射(XRD)对产品进行表征。采用第一原理赝势平面波方法,对氢氧化镁的各个经常显露面族的能量、电子结构和布居数进行理论计算。结果表明,p轨道对氢氧化镁晶体各表面的结构稳定性起着主导作用,氢氧化镁晶体(001)面的总能量较低,O-Mg和H-Mg键的结合力较强,存在热力学稳定性,会成为顽强显露晶面,较好地解释了氢氧化镁六方片状形貌的成因。 展开更多
关键词 氢氧化镁 合成 第一性原理 表面 化学键力 形态学
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