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微波消解原子吸收光谱法测定催化裂化原料油中铁、铜、镍、钒 被引量:11
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作者 高文莉 荣丽丽 《石油与天然气化工》 CAS CSCD 2012年第2期226-228,242,共4页
采用微波消解技术处理催化裂化原料油,制备水相样品溶液,用原子吸收光谱法测定样品中的铁、铜、镍、钒。试验采用加镧抑制剂的方法消除了测定过程中共存元素的干扰。各元素的回收率均在96%~105%之间,相对标准偏差均小于5%。
关键词 微波消解 原子吸收光谱法 催化裂化原料油 Fe Cu NI V
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劣质催化裂化原料油的加氢预处理技术 被引量:1
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作者 钱伯章 《炼油技术与工程》 CAS 2010年第7期60-,共1页
目前炼油厂加工重质稠油的数量越来越多。这些原油除硫含量高外,氮、多环芳烃、镍、钒、砷和硅的含量也很高。催化裂化是炼油厂生产汽油用得最多的装置,目前全世界约有400套催化裂化装置,其中220套配有催化裂化原料油加氢预处理装置,这... 目前炼油厂加工重质稠油的数量越来越多。这些原油除硫含量高外,氮、多环芳烃、镍、钒、砷和硅的含量也很高。催化裂化是炼油厂生产汽油用得最多的装置,目前全世界约有400套催化裂化装置,其中220套配有催化裂化原料油加氢预处理装置,这些装置都是加工减压馏分油与沸腾床加氢裂化。 展开更多
关键词 加氢预处理 馏分油 炼油厂 装置 石油馏分 加工厂 催化裂化原料油 加氢处理
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Development and CommercialApplication of RSDS-II Technology for Selective Hydrodesulfurization of FCC Naphtha 被引量:6
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作者 Qu Jinhua Xi Yuanbing +4 位作者 Li Mingfeng Pan Guangcheng Jin Xin Gao Xiaodong Nie Hong 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2013年第3期1-6,共6页
The FCC naphtha selective hydrodesulfurization technology(RSDS-II)has been tested with different feedstocks in pilot scale.The results show that RSDS-II technology is viable in terms of its adaptability to different f... The FCC naphtha selective hydrodesulfurization technology(RSDS-II)has been tested with different feedstocks in pilot scale.The results show that RSDS-II technology is viable in terms of its adaptability to different feedstocks.To produce gasoline with a sulfur content of less than 50μg/g by the RSDS-II technology,the gasoline RON loss is less than 1.8,0.9and 0.2 units,respectively,upon processing the conventional high-sulfur and high-olefin FCC naphtha,the high-sulfur MIP naphtha,and the medium-sulfur or low-sulfur MIP naphtha.Upon using the naphtha produced from pre-hydrotreated FCC feedstock as the RSDS-II feedstock to manufacture gasoline with a sulfur content of lower than 10μg/g,the RON loss does not exceed 1.0 unit.The RSDS-II technology has been commercialized successfully at many refineries.The result of operating commercial RSDS-II unit at the Shanghai Petrochemical Company has revealed that upon processing a feedstock containing 38.7 v% —43.3 v% of olefins and 250—470 mg/g of sulfur,the sulfur content in the treated gasoline ranges from 33μg/g to 46μg/g and the RON loss is equal to only 0.3—0.6 units.Till now this RSDS-II unit has been operating smoothly over 30 months.Thanks to its high HDS activity and good selectivity,the RSDS-II technology can meet the refinery’s needs for adequate upgrading of gasoline. 展开更多
关键词 FCC naphtha selective HYDRODESULFURIZATION commercial application
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A new generic reaction for modeling fluid catalytic cracking risers
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作者 Yong Li Jizheng Chu Jiarui Zhang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第10期1449-1460,共12页
A new generic reaction in the form of PC_i→PC_m+[i,m]→PC_m+λi,m coke+surplusage has been proposed for describing the catalytic cracking behavior of petroleum narrow cuts or pseudo-components(PCs),where the rate con... A new generic reaction in the form of PC_i→PC_m+[i,m]→PC_m+λi,m coke+surplusage has been proposed for describing the catalytic cracking behavior of petroleum narrow cuts or pseudo-components(PCs),where the rate constant formula is derived from the transition state theory and the coking amount is correlated to the properties of the intermediate substance [i,m].In composing the cracking reaction network for feedstock and product oils,only the product PC m of the proposed generic reaction is used,which together with a criterion for excluding exothermic reactions,distinctly reduces the number of reactions in the network.With the proposed cracking reaction scheme coupled with special pseudo-components,a predictive one-dimensional steady state model for fluid catalytic cracking risers is formulated in the sense that for a given riser and given catalyst,the model parameters are independent of stock oils,product schemes and other operational conditions.The great correlating and predicting capability of the resulted model is tested with production data in different scenarios of four commercial risers. 展开更多
关键词 Fluid catalytic cracking riser Kinetic modeling Pseudo-component Petroleum Steady state model Parameter estimation
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