锦西石化公司
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介绍了MMT抗爆剂在中国石油锦西石化公司的使用情况。
The article introduces the application status of MMT antiknock additive in Jinxi Petrochemical Company .
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中国石油锦西石化公司采用石油大学与华东设计院共同开发的双提升管催化裂化技术,对80万t/a催化裂化装置反应$C再生、分馏、吸收稳定、余热锅炉、汽油脱硫醇等部分进行改造。
The double lift pipe in a 800 kt / a catalytic cracking unit , including reaction – regeneration fractionation , absorption – stablization , waste heat boiler and gasoline mercaptan removal , was remoulded .
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对STS公司和StaMariaWaterAB公司针对锦西石化分公司的污水回用工艺进行中试研究,验证污水回用工艺的可行性。
The recycling techniques of sewage that STS and Sta Maria Water AB Companies aim at Jinxi Petrochemical Complex Company is researched to prove its feasibility .
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该技术在锦西石化分公司聚丙烯装置有机蒸汽膜法回收系统的运行结果表明,丙烯回收率为98%,每年可多回收丙烯850t左右,价值382.5万元。
The application of gas membrane separation technology in the recovery system of polypropylene in Jinxi Petrochemical Company shows that the recovery rate of propylene is 98 percent .
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针对锦西石化分公司300kt/a气体分馏装置的丙烯塔,建立了基于丙烯塔单位综合经济收益最大化的在线优化模型及与鲁棒多变量控制器(RMPCT)的接口。
For optimizing operation of propylene rectification tower in a 300 kt / a liquefied hydrocarbon separation installation , software consisting of online process optimization model and its interface with advanced controller ( RMPCT ) was developed .
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锦西石化分公司0.8Mt/a蜡油催化裂化装置在扩能改造时采用了石油大学(华东)开发的两段提升管催化裂化新技术,通过装置一年的运行取得了令人满意的效果。
A two stage riser fluidized catalytic cracking tecnology that is developed by University of Petroleum ( East China ) launch into commercial application on a 0.8Mt/a fluidized catalytic crack unit in Jinxi Petrochemical Company when it revamped to extend ability .
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锦西石化分公司气体分馏装置的扩能改造
Capacity expansion of a light ends plant in Jinxi Petrochemical Company
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锦西石化分公司连续重整装置的分析与标定
Analysis and Demarcating of the 600kt / a CCR Reforming Unit in Jinxi Petrochemical Company
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锦西石化分公司采用了双提升管的新技术,并委托华东设计院对锦西石化分公司的催化装置进行了改造设计。
Double riser technology has been adopted in Jinxi Petrochemical Branch Office and an transformative design has been made of its catalytic device .
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介绍了中国石油锦西石化分公司在气分装置丙烯精馏塔中应用先进控制技术的情况。
The application of advanced control in propylene rectifying tower of gas ends plant in Jinxi Company , China Petroleum Corporation is introduced .
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阐述污染物、污染源治理采取的政策措施和实施效果,并对在可持续发展中锦西石化分公司的环境保护工作提出建议。
This pollutants , pollution control measures and effects , and on the sustainable development of the environment - al protection work jinxi petrochemical branch are proposed .
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根据中国石油锦西石化分公司和西安交通大学共同建立的往复式空气压缩机油积炭倾向性台架评定方法,建立了往复式空气压缩机评定台架。
The evaluation bench for reciprocating air compressor oil was set up according to the bench evaluation method for coke formation tendency performance established by Xi'an Jiaotong University & Jinxi Petrochemical Company .
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锦西石化分公司是隶属于中国石油的国有特大型企业,在过去的几年里进行了一些改革和重组,但企业的组织机构仍很庞大,需要进一步调整和规范。
In the past few years , a number of reforms and restructuring has been carried out , but it is still a large business organization , need to be regulated and standardized .
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查摆锦西石化分公司在用水和排水方面的不足,提出节水减污技术方案,并对循环水处理药剂进行了开发研究。
The shortage is found in water supply and drainage , and the technical project of saving water and decreasing pollution is brought forward , furthermore the medicament of disposing recycling water is researched .
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对中石油锦西石化分公司以石蜡基和中间基原油混合炼制生产的0柴油测试,可降低CFPP3-5℃。
The improver is applied to the diesel of Huludao Petrochemistry Filiale , produced by paraffin rich crude oil and intermediate crude oil as raw material , CFPP of the 0 # diesel is lowed by 3 to 5 ℃ .
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运用上述组合密封方式,对锦西石化分公司焦化装置的P4-1、P6-2、P101-1、P103-1、P104-1泵现有密封结构做了改进,进行了具体结构设计计算、技术分析和经济效果测算。
With the aforesaid combined sealing , we improved the present sealing structure of pump 4-1 , 6-2 , 101-1,103-1 and 104-1 of delayed coke unit . We made detailed structure design calculation , technical analyses and economical benefit evaluation about the 5 sets of pump .
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最后,本文以锦西石化分公司120万吨/年催化汽油加氢安装工程项目为实例,通过采用两种模式的对比分析,阐述定额计价模式的不足及实行工程量清单计价模式的优越性。
Finally , in order to JinXi Petrochemical Company 1.2 million tons one year of gasoline hydrogenation installation project as an example , by using comparative analysis of two models to explain the lack of a fixed pricing model and the superiority of the implementation of bill of quantities .