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- Houdry adiabatic dehydrogenation process 胡得利固定床绝热催化脱氢过程
- adiabatic dehydrogenation 绝热脱氢
- First, the nature of dehydrogenation of ethylbenzene to styrene was studied in an experilmen-tal adiabatic reactor. 针对乙苯脱氢绝热反应器工程特点建立了有关转化率和选择性的数学模型。
- An adiabatic wall must be able to block radiation. 绝热壁必须能屏蔽辐射。
- The research of ethylbenzene dehydrogenation kinetics has been carried out in an experimental adiabatic reactor. 在实验室绝热反应器中进行了乙苯脱氢制苯乙烯的反应动力学研究。
- A new adiabatic calorimeter and its application. 一种新型绝热量热计及其应用
- High and low pressure spay gun with adiabatic grip. 高低压可调水枪,防热枪柄。
- An one dimensional homogenous adiabatic fixed bed reactor model was adopted to simulate a radial flow reactor for dehydrogenation of ethylbenzene to styrene under vacuum. 采用一维拟均相绝热径向反应器模型模拟乙苯负压脱氢径向反应器。
- The remainder of the power stroke is an adiabatic expansion. 动力冲程的后段是绝热膨胀过程。
- Advances in ethane dehydrogenation to ethene have been reviewed. 乙烷脱氢制乙烯是乙烷利用的有效途径。
- This method can be used to pipes of two-phase adiabatic flow. 该方法适合各类双相绝热流动管系的设计和计算.
- In an adiabatic process no heat is allowed to enter or leave the system. 在绝热过程中,不容许热量进入或离开系统。
- Liner gets together third warming plate, have effect of adiabatic, soundproof. 内衬聚丙保温板,起到隔热、隔音的效果。
- Preparation of W class states of multiparticle by adiabatic passage[J]. 引用该论文 吴晓东;费振乐;郭建友.
- Because hot conductibility is extremely low, adiabatic effect is good. 由于热传导性极低,绝热效果好。
- In-situ thermal degrdn. of a com. dehydrogenation catalyst in a fixed-bed reactor is studied exptl. 用实验研究了在固定床式反应器中一种普通脱氢用催化剂的实时热降解。
- The key for isobutane dehydrogenation is to synthesize non-noble mental catalysts. 详细总结了不同载体和助剂对脱氢反应的影响,尤其是载体和助剂的酸碱性以及载体的孔结构。
- In-situ thermal degrdn. of a.com. dehydrogenation catalyst in a fixed-bed reactor is studied exptl. 用实验研究了在固定床式反应器中一种普通脱氢用催化剂的实时热降解。
- Under the reaction conditions of 523K, 0.5mL MCH and 8g Raney-Ni, the dehydrogenation conversion was up to 65%. 在523K;0.;5mL甲基环己烷和8g Raney-Ni的反应条件下;甲基环己烷的脱氢转化率可达65%25。
- By means of DSC, the process of TiH2 dehydrogenation was studied, according to which the brazing schedule was made. 通过对TiH2的差热分析,解明其脱氢过程,制定出合理的钎焊工艺,一次完成TiH2的脱氢和Al2O3陶瓷与Kovar合金的钎焊连接。