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石蜡加氢催化剂固定床反应器器外预硫化 被引量:1
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作者 祁兴国 马守波 +1 位作者 王焱鹏 董群 《石化技术与应用》 CAS 2006年第3期199-201,共3页
采用固定床反应器,对石蜡加氢精制催化剂进行了干法器外预硫化,研究了预硫化工艺条件对加氢催化剂硫化度的影响。结果表明,大于400℃时,硫化度受H2S进料质量分数和空速的影响较小;在400℃,达到理论硫化时间(t0)的条件下,H2S完全穿透床层... 采用固定床反应器,对石蜡加氢精制催化剂进行了干法器外预硫化,研究了预硫化工艺条件对加氢催化剂硫化度的影响。结果表明,大于400℃时,硫化度受H2S进料质量分数和空速的影响较小;在400℃,达到理论硫化时间(t0)的条件下,H2S完全穿透床层;高温时,H2S初始穿透床层速度较慢。达到较高硫化度的适宜工艺条件为:硫化时间不小于1.2t0,硫化温度不低于400℃,H2S的进料质量分数不大于10.00%。 展开更多
关键词 石蜡加氢催化剂 器外预硫化 固定床反应器
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高压加氢制取食品级凡士林 被引量:2
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作者 王士新 《工业催化》 CAS 2016年第7期59-62,共4页
介绍了使用中国石化抚顺石油化工研究院研制的石蜡加氢催化剂进行高压一段串联加氢制取食品级凡士林的试验情况。结果表明,在试验条件下,选择适宜的凡士林原料和操作条件可以制取食品级凡士林,加氢产品质量符合SH/T0767-2005食品级凡士... 介绍了使用中国石化抚顺石油化工研究院研制的石蜡加氢催化剂进行高压一段串联加氢制取食品级凡士林的试验情况。结果表明,在试验条件下,选择适宜的凡士林原料和操作条件可以制取食品级凡士林,加氢产品质量符合SH/T0767-2005食品级凡士林标准,但操作条件调整空间较小,提高空速和降低反应温度空间受限;加氢制取食品级凡士林的运转周期约500 h,不能进行长周期运转;质量较差的凡士林原料不能制取食品级凡士林。 展开更多
关键词 石油化学工程 凡士林 精制 石蜡加氢催化剂
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凡士林生产技术研究 被引量:1
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作者 毕文卓 王士新 《工业催化》 CAS 2017年第8期64-67,共4页
介绍中国石化抚顺石油化工研究院以减三线馏分油、减三线脱蜡油和减三线蜡下油替代润滑油基础油调制凡士林原料并经高压一段串联加氢制取医药白凡士林的试验情况。结果表明,减三线馏分油、减三线脱蜡油和减三线蜡下油可以替代润滑油基... 介绍中国石化抚顺石油化工研究院以减三线馏分油、减三线脱蜡油和减三线蜡下油替代润滑油基础油调制凡士林原料并经高压一段串联加氢制取医药白凡士林的试验情况。结果表明,减三线馏分油、减三线脱蜡油和减三线蜡下油可以替代润滑油基础油调制物理性质符合产品要求的凡士林原料。减三线馏分油和减三线蜡下油等含石蜡组分在凡士林原料配方中的含量应在合理范围,含石蜡组分含量过高会影响调和物的拉丝性。在试验条件下,以减三线馏分油、减三线脱蜡油和减三线蜡下油为调和组分调制的凡士林原料,可以采用高压一段串联加氢工艺生产符合GB1790-2012医药凡士林标准的白凡士林产品。 展开更多
关键词 石油化学工程 凡士林 精制 石蜡加氢催化剂
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Effect of preparation methods on the structure and catalytic performance of Fe–Zn/K catalysts for CO2 hydrogenation to light olefins 被引量:7
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作者 Xu Wang Jianli Zhang +3 位作者 Jingyu Chen Qingxiang Ma Subing Fan Tiansheng Zhao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第4期761-767,共7页
Potassium promoted iron–zinc catalysts prepared by co-precipitation method(C–Fe–Zn/K),solvothermal method(S–Fe–Zn/K)and hydrothermal method(H–Fe–Zn/K)could selectively convert CO_2to light olefins,respectively.... Potassium promoted iron–zinc catalysts prepared by co-precipitation method(C–Fe–Zn/K),solvothermal method(S–Fe–Zn/K)and hydrothermal method(H–Fe–Zn/K)could selectively convert CO_2to light olefins,respectively.The physicochemical properties of the obtained catalysts were determined by SEM,N_2physisorption,XRD,H_2-TPR,CO_2-TPD and XPS measurements.The results demonstrated that preparation methods had great influences on the morphology,phase structures,reduction and adsorption behavior,and hence the catalytic performance of the catalysts.The samples prepared by hydrothermal and co-precipitation method generated small uniform particles and led to lower specific surface area.In contrast,microspheres with larger specific surface area were formed by self-assembly of nanosheets using solvothermal method.ZnFe_2O_4was the only detectable phase in the fresh C–2Fe–1Zn/K,S–3Fe–1Zn/K and S–2Fe–1Zn/K samples.ZnFe_2O_4and ZnO co-existed with increasing Zncontent in S–1Fe–1Zn/K sample,while ZnO and Fe_2O_3could be observed over H–2Fe–1Zn/K sample.All the used samples contained Fe_3O_4,ZnO and Fe_5C_2.The peak intensity of ZnO was strong in the AR-H–2Fe–1Zn/K sample while it was the lowest in the AR-C–2Fe–1Zn/K sample after reaction.The formation of ZnFe_2O_4increased the interaction between iron and zinc for C–2Fe–1Zn/K and S–Fe–Zn/K samples,causing easier reduction of Fe_2O_3to Fe_3O_4.The surface basicity of the sample prepared by co-precipitation method was much more than that of the other two methods.During CO_2hydrogenation,all the catalysts showed good activity and olefin selectivity.The CO selectivity was increased with increasing Zncontent over S–Fe–Zn/K samples.H–2Fe–1Zn/K catalyst preferred to the production of C_5^+hydrocarbons.CO_2conversion of 54.76%and C_2~=–C_4~=contents of 57.38%were obtained on C–2Fe–1Zn/K sample,respectively. 展开更多
关键词 CO2 hydrogenation Light olefins Preparation methods Iron–zinc catalyst
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Selective Hydrogen Transfer Reaction in FCC Process:Characterization and Application
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作者 Chen Beiyan He Mingyuan Da Zhijian(Research Institute of Petroleum Processing, Beijing, 100083) 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2003年第3期45-48,共4页
The product distribution and gasoline quality of FCC process, especially the olefin content,heavily depends on the catalyst performance in terms of selective/non-selective hydrogen transfer reaction selectivity. A rel... The product distribution and gasoline quality of FCC process, especially the olefin content,heavily depends on the catalyst performance in terms of selective/non-selective hydrogen transfer reaction selectivity. A reliable experimental protocol has been established by using n-dodecane as a probe molecule to characterize the selective hydrogen transfer ability of catalytic materials. The results obtained have been correlated with the performance of the practical catalysts. 展开更多
关键词 catalytic cracking hydrogen transfer olefin reduction.
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