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1)  gasoline blending
汽油调合
1.
Computer assisted gasoline blending design;
计算机辅助汽油调合设计
2.
Optimization of training set based on particle swarm optimization in gasoline blending design;
微粒群算法优化样本集在汽油调合设计中的应用
3.
The study on the on-line coordination of the double headers in the gasoline blending
汽油调合中双调合头在线协调控制的研究
2)  gasoline blend
汽油调合
1.
According to the uncertainty of feedstock and combining with the Ethyl RT-70 blending models of some important properties of gasoline,the gasoline blend optimization problem with uncertainty variable in the constrain is produced.
针对汽油调合过程中组分油存在的不确定性,结合Ethyl RT-70汽油调合质量指标模型,形成约束条件带随机变量的汽油调合随机规划问题。
2.
The results show that the control method is valid, the gasoline blend system i.
在简要回顾汽油调合控制的研究进展和介绍其主要工艺流程的基础上,设计开发了汽油管道调合的辛烷值专家模糊控制系统,并在某炼油厂进行了调试和投运,投运结果表明所采用的控制方法是有效的,所开发的汽油管道调合先进控制系统可为企业带来显著的经济效益。
3.
By introducing many advanced technologies of gasoline blending into the long-term development planning, product schedule and on-line control, we reached the goal of making full use of the blend components and obtaining rather considerable economic benefit.
许多企业在长远规划、生产排产、在线调合等工作过程中,都充分利用汽油调合的先进技术。
3)  blended gasoline
调合汽油
1.
Application of near - infrared spectrometry in control analysis of blended gasoline was introduced in this paper.
介绍了近红外光谱法在调合汽油试验控制分析中的应用。
2.
The optimization of the prices for the blended gasolines with different blending ratios based on thesaid model was obtaine.
建立了适用于MTBE-重整汽油-烷基化油-直馏汽油-催化裂化汽油调合汽油的研究法辛烷值模型。
4)  gasoline blender
汽油调合剂
1.
The market demand and technology status of the gasoline blender—tertiary amyl methyl ether (TAME) and its developmental trend in China are discussed in this paper.
介绍了汽油调合剂——甲基叔戊基醚(TAME)的市场情况、技术状况及国内发展动向。
5)  gasoline blending model
汽油调合模型
6)  gasoline on-line blending
汽油在线调合
1.
Theory of gasoline on-line blending,functions and features of Blending & Movement Automation system and benefits from this system is presented too.
介绍了Honeywell汽油在线调合及移动自动化系统在大连石化公司的应用情况,同时,介绍汽油在线调合原理、油品调合及移动自动化系统的主要功能和效益。
补充资料:叠合汽油
分子式:
CAS号:

性质:无色至微黄色液体。石油加工过程生成的碳三或碳四烯烃,在磷酸或硅酸铝催化剂上经正碳离子反应叠合生成较大分子的烯烃,通过控制反应条件,可生成主要含碳九至碳十二烯烃的馏分。其初馏点不低于80℃,终馏点不高于210℃。马达法辛烷值达82MON,研究法辛烷值达93~96RON。可作为高辛烷值汽油的调合组分,亦可切割其中的碳九或碳十二烯烃,作为石油化工原料,生产润滑油添加剂、表面活性剂等。

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