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Research and Development of Novel Heavy Oil Catalytic Cracking Catalyst RCC-1 被引量:6
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作者 Zhang Jiexiao Zhou Yan +1 位作者 Xu Yun Tian Huiping 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2014年第4期7-11,共5页
A novel heavy oil catalytic cracking catalyst RCC-1 was developed by using the ultra-stable zeolite, which was hydrothermally treated and modified through cleaning its pores to serve as the active component. The chemi... A novel heavy oil catalytic cracking catalyst RCC-1 was developed by using the ultra-stable zeolite, which was hydrothermally treated and modified through cleaning its pores to serve as the active component. The chemical composition and physicochemical properties of RCC-1 catalyst were studied by XRF, BET, pore volume analysis, attrition index analysis, and particle size distribution determination methods, and its catalytic cracking performance was also evaluated by a microreactor for light oil cracking and the ACE device. The test results showed that the new type of heavy oil catalytic cracking catalyst RCC-1 had good physicochemical properties and heavy oil cracking ability, strong anti-metallic contamination capability, good product distribution, good coke selectivity and gasoline selectivity, and excellent reduction of gasoline olefin content characteristics. 展开更多
关键词 heavy oil catalytic cracking catalyst activity stability
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Effects of Temperature and Catalyst to Oil Weight Ratio on the Catalytic Conversion of Heavy Oil to Propylene Using ZSM-5 and USY Catalysts 被引量:10
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作者 Xiaohong Li Chunyi Li Jianfang Zhang Chaohe Yang Honghong Shan 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2007年第1期92-99,共8页
It is useful for practical operation to study the rules of production of propylene by the catalytic conversion of heavy oil in FCC (fluid catalytic cracking). The effects of temperature and C/O ratio (catalyst to o... It is useful for practical operation to study the rules of production of propylene by the catalytic conversion of heavy oil in FCC (fluid catalytic cracking). The effects of temperature and C/O ratio (catalyst to oil weight ratio) on the distribution of the product and the yield of propylene were investigated on a micro reactor unit with two model catalysts, namely ZSM-5/Al2O3 and USY/Al2O3, and Fushun vacuum gas oil (VGO) was used as the feedstock. The conversion of heavy oil over ZSM-5 catalyst can be comparable to that of USY catalyst at high temperature and high C/O ratio. The rate of conversion of heavy oil using the ZSM-5 equilibrium catalyst is lower compared with the USY equilibrium catalyst under the general FCC conditions and this can be attributed to the poor steam ability of the ZSM-5 equilibrium catalyst. The difference in pore topologies of USY and ZSM-5 is the reason why the principal products for the above two catalysts is different, namely gasoline and liquid petroleum gas (LPG), repspectively. So the LPG selectivity, especially the propylene selectivity, may decline if USY is added into the FCC catalyst for maximizing the production of propylene. Increasing the C/O ratio is the most economical method for the increase of LPG yield than the increase of the temperature of the two model catalysts, because the loss of light oil is less in the former case. There is an inverse correlation between HTC (hydrogen transfer coefficient) and the yield of propylene, and restricting the hydrogen transfer reaction is the more important measure in increasing the yield of propylene of the ZSM-5 catalyst. The ethylene yield of ZSM-5/A1203 is higher, but the gaseous side products with low value are not enhanced when ZSM-5 catalyst is used. Moreover, for LPG and the end products, dry gas and coke, their ranges of reaction conditions to which their yields are dependent are different, and that of end products is more severe than that of LPG. So it is clear that maximizing LPG and propylene and restricting dry gas and coke can be both achieved via increasing the severity of reaction conditions among the range of reaction conditions which LPG yield is sensitive to. 展开更多
关键词 fluid catalytic cracking heavy oil PROPYLENE temperature catalyst to oil weight ratio ZSM-5 USY
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Study on Application of Bi-directional Combination Technology Integrating Residue Hydrotreating with Catalytic Cracking RICP 被引量:5
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作者 Niu Chuanfeng Gao Yongcan +1 位作者 Dai Lishun Li Dadong (Research Institute of Petroleum Processing, Beijing 100083) 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2008年第1期27-33,共7页
After analysing the disadvantages of the traditional residue hydrotreating-catalytic cracking combination process, RIPP has proposed a bi-directional combination technology integrating residue hydrotreating with catal... After analysing the disadvantages of the traditional residue hydrotreating-catalytic cracking combination process, RIPP has proposed a bi-directional combination technology integrating residue hydrotreating with catalytic cracking called RICP which does not further recycles the FCC heavy cycle oil (HCO) inside the FCC unit and delivers HCO to the residue hydrotreating unit as a diluting oil for the residue that is concurrently subjected to hydrotreating prior to being used as the FCC feed oil. The RICP technology can stimulate residue hydrotreating reactions through utilization of HCO along with an in- creased yield of FCC light distillate, resulting in enhanced petroleum utilization and economic benefits of the refinery. 展开更多
关键词 residue hydrotreating catalytic cracking bi-directional combination heavy cycle oil
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FCC Study of Canadian Heavy Gas Oils—Comparisons of Product Yields and Qualities between Reactors 被引量:3
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作者 SiauwH.Ng AdrianHumphries +2 位作者 CraigFairbridge ZhuYuxia SokYui 《Petroleum Science》 SCIE CAS CSCD 2005年第1期1-8,共8页
Several series of cracking tests in a comprehensive study were conducted on separate occasions involving all or parts of ten Canadian vacuum gas oils (VGOs) and two catalysts with bottoms-cracking or octane-barrel ca... Several series of cracking tests in a comprehensive study were conducted on separate occasions involving all or parts of ten Canadian vacuum gas oils (VGOs) and two catalysts with bottoms-cracking or octane-barrel capability. VGOs were cracked in fixed- and/or fluid-bed microactivity test (MAT) units, in an Advanced Cracking Evaluation (ACE) unit, and in a modified ARCO riser reactor. Individual yields of gas, liquid, and coke from the MATs at 55, 65, 70, and 81 wt% conversion levels were compared with their respective pilot plant data. Good linear correlations could be established between MAT and riser yields except for liquefied petroleum gas (LPG) and light cycle oil (LCO). At a given conversion, correlations existed among the fixed- and fluid-bed MAT units and the ACE for each product yield. Liquid products from the fixed or fluid-bed MAT were analyzed for hydrocarbon types, sulfur, nitrogen and density, most of which showed good agreement with those obtained from the riser study. When cracking Canadian oil-sands-derived VGOs, the bottoms-cracking catalyst containing a large-pore active matrix was found to be more suitable than the octane-barrel catalyst with smaller pores to produce higher yields of valuable distillates, but with less superior qualities (in terms of sulfur and nitrogen contents). The advantages of hydrotreating some poor feeds to improve product yields and qualities were demonstrated and discussed. 展开更多
关键词 Fluid catalytic cracking (FCC) vacuum gas oil (VGO) heavy gas oil (HGO)
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Synthesis of La-Modified Ultra Stable Zeolite L and Its Application to Catalytic Cracking Catalyst 被引量:2
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作者 Pan Huifang Liu Xingyu +4 位作者 Wei Guoyou Yuan Hailiang Pan Xinghong Huo Quan Yan Pingxiang 《Petroleum Science》 SCIE CAS CSCD 2007年第2期75-81,共7页
A new type of zeolite La-USL (ultra stable zeolite L (zeolite USL) modified by La), which has superior activity, stability and selectivity in catalytic cracking of hydrocarbons and thus can be used as an active ca... A new type of zeolite La-USL (ultra stable zeolite L (zeolite USL) modified by La), which has superior activity, stability and selectivity in catalytic cracking of hydrocarbons and thus can be used as an active catalyst component, is reported in this paper. The zeolite L with relative crystallinity of above 90% was synthesized by the hydrothermal crystallization method under optimum conditions and characterized by means of XRD, NH3-TPD and isotherm adsorption techniques. The in-situ synthesized zeolite L with a SiO2/Al2O3 mole ratio of 5-6 was modified by cation ion exchange, hydrothermal dealumination and chemical modifications with La in order to prepare La-containing USL with a higher framework SiO2/Al2O3 mole ratio of 15-30. The modified zeolite La-USL was used as an active additive component of fluid catalytic cracking (FCC) catalyst and the resulting catalysts were evaluated by microactivity test (MAT) and fixed-fluidized bed (FFB) experiments using heavy oil as feedstock. The influence of La content in La- USL on cracking product distribution, gasoline group composition and research octane number (RON) was investigated. The results showed that when La content in La-USL was 0.8 wt%, the addition of the corresponding La-USL could result in a FCC catalyst that produced significant improvement in product distribution and gasoline quality. 展开更多
关键词 Zeolite L catalytic cracking catalyst GASOLINE YIELD research octane number heavy oil
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RFCC分子筛催化剂的失活机理及抗失活方法研究进展 被引量:2
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作者 周小钰 么秋香 +2 位作者 孙鸣 谢雨欣 杨志凡 《广东化工》 CAS 2024年第4期55-57,共3页
催化裂化是石油化工中最重要的炼油工艺之一,其中高活性沸石催化剂是重油催化裂化的关键。但重油的复杂组成和恶劣的反应环境使沸石催化剂易失活,不利于重油转化和产品质量提升。本文综述了沸石催化剂在重油催化裂化过程中的失活机理,... 催化裂化是石油化工中最重要的炼油工艺之一,其中高活性沸石催化剂是重油催化裂化的关键。但重油的复杂组成和恶劣的反应环境使沸石催化剂易失活,不利于重油转化和产品质量提升。本文综述了沸石催化剂在重油催化裂化过程中的失活机理,阐明了其抗失活方法,如金属负载改性、结构调控、尺寸调控及添加剂使用等。 展开更多
关键词 重油 催化裂化 沸石分子筛 失活
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TSRFCC-Ⅰ型两段提升管催化裂化掺炼焦化蜡油研究 被引量:6
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作者 杜峰 张新功 +1 位作者 张建芳 何长征 《炼油技术与工程》 CAS 北大核心 2006年第5期11-15,共5页
将两段提升管催化裂化(TSRFCC)新技术应用于焦化蜡油的加工,设计出了五种TSRFCC-Ⅰ工艺的进料方案,在XTL-5小型提升管催化裂化试验装置上对这些方案逐一进行了考察,结果表明TSRFCC-Ⅰ型工艺由于其催化剂接力、分段反应、短反应时间和大... 将两段提升管催化裂化(TSRFCC)新技术应用于焦化蜡油的加工,设计出了五种TSRFCC-Ⅰ工艺的进料方案,在XTL-5小型提升管催化裂化试验装置上对这些方案逐一进行了考察,结果表明TSRFCC-Ⅰ型工艺由于其催化剂接力、分段反应、短反应时间和大剂油比等鲜明的技术特点,使其在处理掺兑焦化蜡油的原料时,能在提高转化深度的同时改善产品分布和汽油质量,解决传统催化裂化装置因为掺炼焦化蜡油而带来的诸多难题。 展开更多
关键词 焦化蜡油 流化催化裂化 两段提升管 产品分布 产品质量 TSrfcc工艺 实验室规模
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RFCC柴油非加氢精制技术及其应用 被引量:1
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作者 杨基和 范洪波 黄荣荣 《化学工业与工程技术》 CAS 2003年第6期3-5,共3页
采用多种非加氢手段对RFCC柴油进行精制。在油品中加入少量酚类或胺类物质能终止自 由基链反应;某些活性固体物质对碱性氮有良好的吸附能力;在极性环境中能进一步萃取含氮、硫杂质。 四种复合非加氢技术精制的柴油指标达GB252-2000标准... 采用多种非加氢手段对RFCC柴油进行精制。在油品中加入少量酚类或胺类物质能终止自 由基链反应;某些活性固体物质对碱性氮有良好的吸附能力;在极性环境中能进一步萃取含氮、硫杂质。 四种复合非加氢技术精制的柴油指标达GB252-2000标准要求。 展开更多
关键词 重油 催化裂化 柴油 非加氢精制 吸附 萃取
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RFCC气体分离脱硫系统的腐蚀及控制 被引量:3
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作者 宋洪建 高向东 杜进 《石油化工腐蚀与防护》 CAS 2002年第1期10-12,共3页
通过脱硫剂、贫液、富液对碳钢的腐蚀试验证明 ,贫液中游离活性H2 S、CO2 是造成RFCC气体分离脱硫再生系统产生腐蚀的主要原因。采取投加缓蚀剂的方法可使腐蚀得到控制 ,当溶剂中缓蚀剂含量达到0 .0 2 %时 ,碳钢的腐蚀速率可控制在 0 .
关键词 rfcc气体分离脱硫系统 重油 催化裂化 腐蚀 脱硫剂 N-甲基二乙醇胺 缓蚀剂 硫化氢 二氧化碳
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分子筛抗焦活化剂在RFCCU上的工业应用 被引量:4
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作者 韩荣贤 王梅正 《石化技术与应用》 CAS 2005年第5期371-373,共3页
在青岛石油化工有限责任公司1Mt/aRFCCU上进行了Z-18型分子筛抗焦活化剂的工业应用。结果表明:该剂对装置生产操作和产品质量无不良影响;加剂后可使焦炭产率下降1.99个百分点,轻油和轻液收率分别提高1.67和1.16个百分点,创效约3000万元/a。
关键词 rfccU 分子筛抗焦活化剂 工业应用 性能评价
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用于RFCC催化剂的Y型分子筛的研究进展 被引量:1
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作者 孙志国 高雄厚 +3 位作者 马建泰 张莉 刘宏海 王宝杰 《现代化工》 CAS CSCD 北大核心 2016年第1期45-48,共4页
指出了目前重油催化裂化(RFCC)催化剂研究的核心在于减少重油分子在Y型分子筛中的扩散限制;研究方向主要集中在制备具有介-微孔结构的Y型分子筛和制备小晶粒Y型分子筛。分别介绍了介-微孔结构Y型分子筛和小晶粒Y型分子筛的优势、存在的... 指出了目前重油催化裂化(RFCC)催化剂研究的核心在于减少重油分子在Y型分子筛中的扩散限制;研究方向主要集中在制备具有介-微孔结构的Y型分子筛和制备小晶粒Y型分子筛。分别介绍了介-微孔结构Y型分子筛和小晶粒Y型分子筛的优势、存在的问题以及制备的方法。最后提出了制备用于RFCC催化剂的新型Y型分子筛的发展趋势。 展开更多
关键词 重油 催化裂化 扩散限制 介-微孔结构Y型分子筛 小晶粒Y型分子筛
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新型余热锅炉在RFCCU上的应用
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作者 丁泉 董国森 《黑龙江石油化工》 2000年第4期14-16,20,共4页
锦州石化公司投产的1.4 M t/a重油催化裂化装置的烟气余热锅炉成功应用了美国德尔塔公司锅炉技术,与国内设计比较具有结构简单、布置紧凑、工艺技术先进等优点.
关键词 余热锅炉 重油 催化裂化装置 积木式结构
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Application of the Endurance Catalyst in RFCCU Unit
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作者 Li Bin Zhao Hua Wang Mingdong (SINOPEC Luoyang Petrochemical Company, Luoyang 471012) 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2008年第2期23-28,共6页
In order to improve the capability of the RFCC unit for heavy oil conversion, reduce the yields of coke and oil slurry, and increase the economic benefits of the unit, starting August 2007 the SINOPEC Luoyang Branch C... In order to improve the capability of the RFCC unit for heavy oil conversion, reduce the yields of coke and oil slurry, and increase the economic benefits of the unit, starting August 2007 the SINOPEC Luoyang Branch Company began to apply in its No. 2 RFCC unit the Endurance catalyst featuring strong heavy oil conversion ability, low yields of coke and oil slurry, and high total light liquid yield. The results on calibration of the Endurance catalyst conducted in November 2007 indi-cated that under the circumstances of using deteriorating feedstock quality and lower unit consump-tion of catalyst, the yields of coke, oil slurry and gas decreased by 0.28 %, 1.24 % and 0.35 %, respectively. The light distillate yield and total light liquid yield increased by 0.8 % and 1.88%, respectively. 展开更多
关键词 heavy oil catalytic cracking CATALYST COKE oil slurry
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催化裂化催化剂LPC-65的工业应用
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作者 谢恒 张振莉 +4 位作者 陈军 崔文广 姜健 白吉云 胡清勋 《工业催化》 CAS 2024年第8期64-67,共4页
介绍LPC-65催化裂化催化剂在中国石油兰州石化公司1.20 Mt·a^(-1)重油催化裂化装置上的工业应用。结果表明,当LPC-65催化剂加入量达到系统藏量的50%时,与空白标定期相比,重油转化率和汽油收率分别增加1.24和0.62个百分点,柴油收率... 介绍LPC-65催化裂化催化剂在中国石油兰州石化公司1.20 Mt·a^(-1)重油催化裂化装置上的工业应用。结果表明,当LPC-65催化剂加入量达到系统藏量的50%时,与空白标定期相比,重油转化率和汽油收率分别增加1.24和0.62个百分点,柴油收率降低1.24个百分点,汽油烯烃下降4.09个百分点,异构烷烃和芳烃分别上升4.09个百分点和0.67个百分点。表明使用LPC-65催化剂后,重油转化能力增加,汽油降烯烃效果显著。 展开更多
关键词 石油化学工程 催化裂化 重油转化 柴汽比 汽油烯烃
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“双碳”政策下重油催化裂解技术研究进展
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作者 彭特 龚剑洪 朱金泉 《应用化工》 CAS CSCD 北大核心 2024年第1期200-205,217,共7页
从重油催化裂解反应机理的研究概况、重油催化裂解分子筛催化材料的分析对比、不同重油催化裂解工艺的技术特点和工业应用情况等三个方面进行了总结,综述了国内外重油催化裂解技术的研究进展。改性分子筛催化剂材料、小晶粒分子筛、多... 从重油催化裂解反应机理的研究概况、重油催化裂解分子筛催化材料的分析对比、不同重油催化裂解工艺的技术特点和工业应用情况等三个方面进行了总结,综述了国内外重油催化裂解技术的研究进展。改性分子筛催化剂材料、小晶粒分子筛、多级孔分子筛等成为目前研究和应用的热点,以强化重油催化裂解的催化剂的水热稳定性、晶内扩散和重油大分子在梯级孔内的分级裂化,基于催化裂解反应正碳离子机理和自由基机理等研究,DCC、CPP、HCC、RTC和HSFCC等重油催化裂解技术的反应苛刻度不断提高,为匹配不同进料所需最优反应环境的差异,新型反应器或多反应器组合技术成为工艺技术研发的主要方向,已达到提高低碳烯烃产率和选择性的目的。 展开更多
关键词 重油 催化裂解 分子筛催化剂
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LC-6型降汽油烯烃催化剂在重油催化裂化装置的工业应用及标定
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作者 马致远 王辉 田巧巧 《石化技术与应用》 CAS 2024年第6期451-454,464,共5页
响应国ⅥB汽油产品调和组分质量升级要求,中海石油中捷石化有限公司120万t/a重油催化裂化(RFCC)装置于2023年10月开始加注中国石油兰州化工研究中心开发的LC-6型降汽油烯烃催化剂。结果表明:使用LC-6型降汽油烯烃催化剂后,该装置RFCC汽... 响应国ⅥB汽油产品调和组分质量升级要求,中海石油中捷石化有限公司120万t/a重油催化裂化(RFCC)装置于2023年10月开始加注中国石油兰州化工研究中心开发的LC-6型降汽油烯烃催化剂。结果表明:使用LC-6型降汽油烯烃催化剂后,该装置RFCC汽油的烯烃体积分数由31%~34%降至26%~29%,满足国ⅥB汽油产品调和组分质量升级要求,保障了出厂汽油成品达标合格(烯烃体积分数不大于15%);与空白标定期相比,在LC-6型降汽油烯烃催化剂单耗降低至1.21 kg/t及加工原料为劣质高金属重油的工况下,该RFCC装置的干气、液化气、汽油、油浆、总液体收率分别下降了0.29,0.24,1.90,0.49,0.14个百分点,而焦炭、柴油收率分别增加了0.43,2.49个百分点;同时,使RFCC汽油的烯烃体积分数下降了5个百分点,液化气中的丙烯体积分数提高了1.29个百分点。 展开更多
关键词 重油催化裂化(rfcc) 降汽油烯烃催化剂 柴油收率 丙烯
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重油催化裂化装置回炼加氢催化轻柴油
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作者 崔俊峰 许长辉 《石化技术与应用》 CAS 2024年第1期52-56,共5页
介绍了中国石油大庆石化公司1.4 Mt/a重油催化裂化装置回炼加氢催化轻柴油(LCO)后装置的运行情况。结果表明:当重油催化裂化装置回炼加氢LCO后,原料在密度和馏程方面均显现出变轻的趋势,随着加氢LCO掺炼比提高,提升管出口温度由514℃降... 介绍了中国石油大庆石化公司1.4 Mt/a重油催化裂化装置回炼加氢催化轻柴油(LCO)后装置的运行情况。结果表明:当重油催化裂化装置回炼加氢LCO后,原料在密度和馏程方面均显现出变轻的趋势,随着加氢LCO掺炼比提高,提升管出口温度由514℃降至509℃,反应器稀相压力由0.192 MPa提高到0.207 MPa;随着加氢LCO掺炼比的提高,干气收率由3.3%降至2.6%,液态烃收率由21.0%降至18.2%,汽油收率由43.8%降至40.1%,轻柴油收率由14.4%提高至24.1%;稳定汽油芳烃体积分数变化不大,烯烃体积分数呈现快速下降的趋势,轻柴油密度也降低;全厂柴汽比由回炼加氢LCO前的0.89降至0.80。 展开更多
关键词 重油 催化裂化 MIP-CGP 催化轻柴油 回炼 汽油 烯烃
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催化裂解制低碳烯烃工艺及催化剂研究进展
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作者 易天立 王琦 桂薇 《石化技术与应用》 CAS 2024年第4期306-313,共8页
综述了国内外催化裂解制低碳烯烃工艺的特点,阐述了催化裂解制低碳烯烃催化剂以及反应机理,指出开发多功能复合活性组元催化剂、创新催化裂解反应器型式、优化催化裂解工艺是未来催化裂解技术发展的3个方向。
关键词 催化裂解 低碳烯烃 轻油 重油 催化剂 反应机理
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重质油催化裂化用催化剂的研制及性能评价
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作者 孙鹏 《化学工程师》 CAS 2024年第4期14-17,68,共5页
催化裂化是提高重质油资源利用效率的一种常用加工技术,为了提高重质油资源催化裂化的效率,以Ni(NO_(3))_(2)、FeCl_(3)和脂肪酸为主要原料,制备出一种适用于重质油催化裂化的新型油溶性催化剂FN-1,并采用小型固定流化床装置考察了不同... 催化裂化是提高重质油资源利用效率的一种常用加工技术,为了提高重质油资源催化裂化的效率,以Ni(NO_(3))_(2)、FeCl_(3)和脂肪酸为主要原料,制备出一种适用于重质油催化裂化的新型油溶性催化剂FN-1,并采用小型固定流化床装置考察了不同因素对重质油催化裂化反应的影响。实验结果表明,随反应温度的升高,重质油转化率逐渐增大,生成的汽油成分中烯烃和芳烃含量逐渐增大;随剂油质量比的逐渐增大,重质油转化率逐渐增大,汽油中异构烷烃和烯烃的含量逐渐减小,芳烃含量逐渐增大;随质量空速的逐渐增大,重质油转化率逐渐减小,汽油中异构烷烃和烯烃的含量逐渐增大,芳烃含量逐渐减小,但变化的幅度比较小。当重质油催化裂化的反应温度为520℃、剂油质量比为6、质量空速为15h-1时,重质油的转化率可以达到95.38%,催化裂化效果较好。 展开更多
关键词 重质油 催化裂化 油溶性催化剂 影响因素 性能评价
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重油MIP-CGP装置加工俄罗斯原油常三线馏分
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作者 许长辉 崔俊峰 宁海涛 《石化技术与应用》 CAS 2024年第3期201-204,共4页
在中国石油大庆石化公司2.0 Mt/a重油多产异构烷烃并增产丙烯的催化裂化(MIP-CGP)装置上,进行了加工俄罗斯原油常三线馏分(以下简称常三线)催化裂化转化生产液化气和汽油的工业应用,旨在降低柴汽比。结果表明:当常三线在重油MIP-CGP装... 在中国石油大庆石化公司2.0 Mt/a重油多产异构烷烃并增产丙烯的催化裂化(MIP-CGP)装置上,进行了加工俄罗斯原油常三线馏分(以下简称常三线)催化裂化转化生产液化气和汽油的工业应用,旨在降低柴汽比。结果表明:当常三线在重油MIP-CGP装置混合加工原料中的质量占比为15.45%时,产物中干气、油浆、焦炭收率较加工常三线前依次下降了0.03,0.02,0.20个百分点;而液化气、汽油、柴油收率依次上升了0.19,0.05,0.01个百分点;常三线的裂化反应表观转化率高达81.13%,液化气、汽油的表观收率分别为25.86%,37.63%;液化气、稳定汽油、轻柴油的性质均较加工前变化不大。 展开更多
关键词 催化裂化 重油MIP-CGP工艺 俄罗斯原油 常三线馏分 柴油产量 降低
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