抗爆剂

kànɡ bào jì
  • antiknock;antidetonants;octane promoter
抗爆剂抗爆剂
  1. 几种无铅汽油抗爆剂作用机理及工业应用

    The Mechanism and Industrial Application of Several Unlead Gasoline Octane Promoter

  2. 基于BP神经网络的汽油抗爆剂敏感性预测

    The Sensitivity of Gasoline Antiknock Forecast Based on BP Neural Network

  3. 二茂铁在汽油抗爆剂组分中电子转移性能及H2O2的影响

    Electron-Transfer Properties of Ferrocene and Influence of Hydrogen Peroxide on Them in Antiknock Additive for Gasoline

  4. 高效汽油抗爆剂MMT的合成与应用

    Synthesis and application of MMT-a high effective gasoline antiknock

  5. 因此为了解决以上矛盾,可以使用抗爆剂或采用废气再循环(EGR)的方法。

    For solving the paradox , the antiknock and EGR can be used .

  6. 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 .

  7. 而实际上采用胺类化合物作抗爆剂时,一般使用N-甲基苯胺、苯胺、邻甲苯胺及间甲苯胺,尚未见到使用对甲苯胺和N,N-二甲基苯胺的报道。

    As a matter of fact , N-methylaniline and aniline and toluidine is generally employed . We have not found any reports that o-toluidine and N , N-dimethylaniline can be used as antiknock .

  8. 邻甲酚型Mannich碱作为汽油抗爆剂

    Mannich bases of o-methylphenol as gasoline antiknock additives

  9. 新型汽油抗爆剂NMT的发展及其市场前景

    The Development of the New Gasoline Antiknock NMT and Its Market Foreground

  10. FE-1抗爆剂对汽油性能影响的研究

    The Effect of FE & 1 Antiknock Additive on Characteristic of Gasoline

  11. 抗爆剂的实质是消除汽缸中产生的过氧化物。本文研究了在TKC抗爆组分中邻甲苯胺的电子转移性质,并进一步研究过氧化氢对邻甲苯胺电子转移性质的影响。

    We have explored the electron-transfer property of o-toluidine in TKC antiknock contribution , followed by the studying of the case that peroxide has effect on the electron-transfer property of o-toluidine .

  12. 烃类爆震燃烧机理和抗爆剂作用机理的探讨

    The analysis on Mechanism of knock combustion and anti knock additives

  13. 含锰抗爆剂对发动机的影响及其缓解措施

    The Influence of Manganese Based Antiknock on Engine and Releasing Measures

  14. 混合稀土羧酸盐作为汽油抗爆剂的研究

    Study on mixture of rare earth metal carboxylate as gasoline antiknock additives

  15. 探讨了稀土化合物用作环保汽油抗爆剂的可能性。

    Capabilities using rare earth compounds as environmentally friendly gasoline antiknocks were explored .

  16. 含碱金属的有机抗爆剂

    The Alkali Metal - containing Organic Antiknock Agents

  17. 无铅汽油中抗爆剂含量的测定

    FAAS Determination of antiknock agent in unleaded gasoline

  18. 混合型抗爆剂在石脑油调和汽油中的应用研究

    Application research on mixed type antiknock used in refine gasoline interfused with petroleum naphtha

  19. 羧酸镧作为车用汽油抗爆剂的研究

    Study on carboxylic lanthanum as gasoline ANTIKNOCKS

  20. 有学者认为以酯类抗爆剂为基础的复合添加剂将是热点。

    Scholars believe that the efficient additives based on ester antiknock agents will be hot spots .

  21. 以抗爆剂的常用调合组分1,2-二氯乙烷做溶剂利用循环伏安法研究二苯胺的电子转移性质。

    Electron transfer properties of dipHenylamine was studied by cyclic voltammetry in 1,2-Dichloromethane elected from TKC Antiknock .

  22. 苯胺类化合物是一类性能良好的非金属抗爆剂,间甲基苯胺就是其中的一种代表性物质。

    Aniline compounds has a good performance of the non-metallic antiknock additive , m-Toluidine which has the nature of electro .

  23. 使用汽油添加剂包括汽油辛烷值改进剂(抗爆剂)是提高车用汽油质量最有效和最经济的方法。

    Using gasoline additives including octane improvement agents ( anti-knock agents ) is one of the most efficient and economical way to improve the gasoline quality .

  24. 但由于非金属抗爆剂电子转移机理复杂或在一般条件下不发生电子转移反应,从而使其抗爆机理的研究进展缓慢。

    But the study of the mechanisms of non-metal antiknock has developed slowly due to the complex of the electron-transfer mechanisms or no electron-transfer properties under common condition .

  25. 本文采用循环伏安法、现场紫外-可见光谱法、交流阻抗法,以抗爆剂中的常用辅助组分1,2-二氯乙烷作溶剂,研究了苯胺类化合物的电子转移性质。

    We investigated the electron-transfer properties of aromatic amine in 1,2-dichloroethane which is a common auxiliary ingredient of antiknock by cyclic voltammetry and situ UV spectra and ac impedance spectroscopy .

  26. 对含碱金属有机抗爆剂的结构、合成方法、抗爆效果等作了综合评述,并讨论了可能的研发方向。

    The chemical structure , synthesis process and application effects of alkaline metal containing organic anti - knock agent are reviewed as a whole , and the feasible formulation approaches are discussed .

  27. 许多苯胺类化合物,如苯胺、N-甲基苯胺、二苯胺是性能良好的非金属抗爆制,也是抗爆剂常用的调合组分,且具有电子转移性质,适于电化学研究。

    Many aromatic amine , such as aniline and N-methylaniline and diphenylamine , whose antidetonating quality are excellent , are not only often employed as concocting ingredient of antiknock but also suitable to research with electrochemical methods .