The using of the orthogonal experimental method in determining the best operation conditions for the reaction of the n-butane to Maleic Anhydride 正交实验法在确定丁烷法顺酐生产装置反应器最佳操作条件中的运用
It is obtained by the reaction of the compound, which is prepared through the Thio-alkylation of PCl_3 with n-butane thiol, and hydrogen peroxide. 以三氯化磷与正丁基硫醇经硫代烷基化反应,得到的化合物被双氧水氧化即可得到该产品。
VO_x/ SiO_2 Catalysts Undoped and Doped for the Oxidative Dehydrogenation of n-Butane 正丁烷氧化脱氢VOx/SiO2催化剂及其改性研究
The studies in the catalysts for dehydroisomerization of n-butane are reviewed. 综述了正丁烷一步脱氢异构催化剂的研究现状。
Development of reaction process of n-butane oxidation to maleic anhydride in a fixed bed 正丁烷固定床氧化制顺酐反应过程的开发
Molecular Dynamics Simulation for Diffusion of 1-Butene and n-Butane in MCM-22 Zeolite 分子动力学模拟1-丁烯和正丁烷在MCM-22分子筛中的扩散行为
Effects of Re-oxidation Temperature and Oxygen Species on n-butane Selective Oxidation to MA 再氧化温度及氧物种对正丁烷选择氧化的影响
The technologies of benzene fixed oxidization, the catalyst for n-butane fluidized-bed and the development of lattice oxygen catalyst are emphatically introduced. 重点介绍了苯固定床氧化工艺和正丁烷流化床氧化工艺路线以及正丁烷氧化流化床用催化剂及晶格氧催化剂的研究发展。
The study on catalytic oxidation of n-butane to maleic anhydride, in fluidized-bed reactor was investigated. 对正丁烷氧化制顺丁烯二酸酐(以下简称顺酐)流化床催化剂进行了研究。
Study in the n-Butane Oxidative Dehydrogenation Reaction Over Vanadium-based Oxide Catalysts 钒基催化剂上正丁烷氧化脱氢反应研究
Studies on the liquid phase air oxidation of n-butane for preparing acetic acid and organic solvents 正丁烷在压力下的液相空气氧化制取乙酸和有机溶剂的研究
The Current Development of Isomerization of n-Butane 正丁烷异构化的研究进展
The mechanism of n-butane isomerization is dependent on the type of solid acid catalyst. 正丁烷的异构化反应机理与催化剂的类型有关。
Application of Supercritical Fluid Desiccation to Preparation of VPO Catalysts for n-Butane Selective Oxidation to Maleic Anhydride 超临界流体干燥方法在丁烷选择性氧化制顺酐VPO催化剂制备中的应用
Using Heteropoly acid ( HPA) catalyst system, this article studied the n-butane isomerization performance of supported HPA catalysts and conditions required for keeping their acidity. 本文采用杂多酸催化剂体系,深入研究了负载型杂多酸催化剂的正丁烷异构化性能,及其酸性的稳定条件;
The main idea of this paper summarizes the isomerization of n-butane from catalysts and reaction mechanism. The current researches in isomerization of n-butane focus on the enhance activity and selectivity of catalysts and make the reaction mechanism more clearly. 主要从催化剂体系和反应机理两个方面对近年来正了烷异构化的研究进展作一综述,提高催化剂的活性和选择性及探究反应机理是目前研究的主要方向。
Oxidative Dehydrogenation of n-Butane over Metal Molybdates 正丁烷在金属钼酸盐催化剂上的氧化脱氢
Preparation, Characterization and Property of New Precursors of V-P-O Catalyst for n-Butane Oxidation to Maleic Anhydride 正丁烷氧化制顺酐V-P-O催化剂新前驱物合成、表征及性能
A Study on the Preparation of Fixed Bed Catalyst for Oxidation of n-Butane to Maleic Anhydride 正丁烷氧化制顺酐固定床催化剂制备研究
Progress in technology of n-butane oxidation to maleic anhydride 正丁烷选择性氧化制顺酐技术发展
Surface Species on VPO Catalyst in n-Butane Selective Oxidation 正丁烷选择氧化过程中VPO体系的表面物种
The influence of the operation conditions on the liquid phase air oxidation of n-butane and the reaction product distribution has been studied. 考察了正丁烷在压力下和溶剂中液相空气氧化时各种操作因素对反应过程和产物分布的影响。
Effects of thermal crack of n-butane on steam reforming reaction 正丁烷水蒸气重整中热裂解的研究
In this paper, the preparation of fixed bed catalyst for oxidation of n-butane to maleic anhydride has been studied, and the influence of different technological conditions on the catalyst behavior was investigated. 本论文对正丁烷氧化制顺酐固定床催化剂制备过程进行了研究,考察了不同工艺条件对催化剂性能的影响。
A reaction mechanism of laser stimulated n-butane cracking on the solid surfaces and a model of energy transfer and relaxation in such a process are proposed based on the experimental results. 证实了固体表面键激发模式的有效性,探讨了激光表面反应过程中能量吸收、积累、传递和损失的途径,提出了激光促进丁烷裂解的表面反应机理。
Preparation of Gallium-Promoted SO_4~ ( 2-)/ ZrO_2 and Its Catalytic Performance for Isomerization of n-Butane 镓掺杂SO4~(2-)/ZrO2的制备及其对正丁烷异构化反应的催化性能
The effects of reaction temperature and S/ C on thermal crack of n-butane are investigated. 采用常压固定床管式反应器,考察了反应温度、水碳比等因素对正丁烷水蒸气重整中热裂解过程的影响。
Molybdates of the first-row transition metals ( Cr, Mn, Fe, Co, Ni, Cu, Zn) and Mg have been prepared by the citrate method and their catalytic performance for the n-butane oxidative dehydrogenation has been studied. 用柠檬酸盐法合成了第一系列过渡金属(Cr,Mn,Fe,Co,Ni,Cu和Zn)及Mg的钼酸盐催化剂,研究了它们对正丁烷氧化脱氢反应的催化作用。
The Effect of Preparation Method on the Characteristic of V-P-O Catalyst for Production of Maleic Anhydride from n-Butane 制备方法对正丁烷氧化制顺酐的V-P-O催化剂性能的影响
The silica gel which was more suitable for dehydrogenation of n-butane was chosen as carrier from several carriers. 通过载体优选,选用硅胶作为其载体更适合正丁烷的催化脱氢反应。