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萃取助剂在润滑油糠醛精制中的应用研究 被引量:4
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作者 张伟伟 李林 唐晓东 《石化技术与应用》 CAS 2016年第2期121-124,共4页
以萃取剂LZ为助剂,将其与糠醛复配成糠醛复合剂,对某炼油厂减一线馏分油进行萃取精制,考察了工艺条件对精制效果的影响。结果表明,优选的精制条件如下:糠醛复合剂中萃取助剂LZ的体积分数为50%,萃取温度和相分离温度均为70℃,萃取时间为1... 以萃取剂LZ为助剂,将其与糠醛复配成糠醛复合剂,对某炼油厂减一线馏分油进行萃取精制,考察了工艺条件对精制效果的影响。结果表明,优选的精制条件如下:糠醛复合剂中萃取助剂LZ的体积分数为50%,萃取温度和相分离温度均为70℃,萃取时间为1.5 min,相分离时间为50 min,萃取剂与原料油的体积比为1.5,萃取级数为2;在此精制条件下,油品酸值可从3.84 mg/g降至0.73 mg/g,残炭值由0.039 0%降至0.006 8%,萃取后精制油的收率达82.8%(体积分数);同以糠醛作萃取剂相比,在精制油酸值相当的情况下,采用糠醛复合剂作萃取剂时,脱酸选择性提高了97.4%,精制油收率提高了13.4%。 展开更多
关键词 润滑油 萃取精制 糠醛 萃取助剂 复合萃取剂 精制油收率 脱酸选择性
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Highly dispersed V_2O_5/TiO_2 modified with transition metals(Cu,Fe,Mn,Co) as efficient catalysts for the selective reduction of NO with NH_3 被引量:31
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作者 赵欣 黄垒 +4 位作者 李红蕊 扈航 韩瑾 施利毅 张登松 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1886-1899,共14页
Different transition metals were used to modify V2O5-based catalysts (M-V, M = Cu, Fe, Mn, Co) on TiO2 via impregnation, for the selective reduction of NO with NH3. The introduced metals induced high dispersion in t... Different transition metals were used to modify V2O5-based catalysts (M-V, M = Cu, Fe, Mn, Co) on TiO2 via impregnation, for the selective reduction of NO with NH3. The introduced metals induced high dispersion in the vanadium species and the formation of vanadates on the TiO2 support, and increased the amount of surface acid sites and the strength of these acids. The strong acid sites might be responsible for the high N2 selectivity at higher temperatures. Among these catalysts, Cu-V/TiO2 showed the highest activity and N2 selectivity at 225-375 ~C. The results of X-ray photo- electron spectroscopy, NH3-temperature-programmed desorption, and in-situ diffuse reflectance infrared Fourier transform spectroscopy suggested that the improved performance was probably due to more active surface oxygen species and increased strong surface acid sites. The outstanding activity, stability, and SO2/H2O durability of Cu-V/TiO2 make it a candidate to be a NOx removal catalyst for stationary flue gas. 展开更多
关键词 deNOx Selective catalytic reduction Vanadate Transition metal
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Tuning catalytic selectivity of propane oxidative dehydrogenation via surface polymeric phosphate modification on nickel oxide nanoparticles 被引量:2
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作者 Kaimin Du Mengjia Hao +5 位作者 Zhinian Li Wei Hong Juanjuan Liu Liping Xiao Shihui Zou Jie Fan 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第7期1057-1062,共6页
Thermal stability has long been recognized as a major limitation for the application of ligand modification in high-temperature reactions. Herein, we demonstrate polymeric phosphate as an efficient and stable ligand t... Thermal stability has long been recognized as a major limitation for the application of ligand modification in high-temperature reactions. Herein, we demonstrate polymeric phosphate as an efficient and stable ligand to tune the selectivity of propane oxidative dehydrogenation. Beneficial from the weakened affinity of propene, NiO modified with polymeric phosphate shows a selectivity 2–3 times higher than NiO towards the production of propene. The success of this regulation verifies the feasibility of ligand modification in high-temperature gas-phase reactions and shines a light on its applications in other important industrial reactions. 展开更多
关键词 Nickel oxide nanoparticle Surface polymeric phosphate Propane oxidative dehydrogenation Tuning selectivity Adsorption
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