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排序方式: 共有214条查询结果,搜索用时 0 毫秒
1.
丙烯腈装置回收塔内聚合物生成原因的分析 总被引:2,自引:0,他引:2
针对丙烯腈生产过程中回收塔内聚合物堵塞降液管造成回收塔运行周期短的问题,通过对丙烯腈回收塔内各组分分布的模拟计算,直观显示了回收塔内各组分的浓度分布,发现了回收塔的聚合段与丙烯醛的富集段相吻合的现象,初步得出了回收塔内局部聚合的原因;通过对塔内聚合物的特性分析和评判,进一步证实了“回收塔内局部聚合严重是由于在聚合段丙烯醛聚集引起”这一现象;根据模拟计算结果和实际运行经验,提出了预防聚合物堵塞降液管的措施,并进行了部分生产验证,为丙烯腈生产企业延长装置运行周期提供了理论指导。 相似文献
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Experimentally determined p,V,T data are reported for toluene, trichloromethane, dichloromethane, acetonitrile, aniline, and n-dodecane at 278, 288, 298, 313, and 323 K, except for dichloromethane, for which the highest temperature was 298 K. At each temperature, measurements were done at pressures up to about 280 MPa or (for aniline and n-dodecane) at a lower pressure slightly below the freezing pressure at the temperature of measurement. Values of the isobaric expansivity isothermal compressibility and (for toluene, trichloromethane, dichloromethane, and acetonitrile) internal pressure, derived from the p,V,T data, are presented. 相似文献
5.
高沸点溶剂法合成原乙酸三甲酯 总被引:2,自引:0,他引:2
对低沸点溶剂法制备原乙酸三甲酯工艺进行了改进,比较了煤油、2-乙基己醇、氯苯、异佛尔酮、邻苯二甲酸二丁酯、乙二醇二丁醚等高沸点溶剂对反应的影响,筛选出最优高沸点溶剂煤油:研究了新反应体系的醇解pH值、溶剂的循环使用次数对反应的影响及溶剂循环损耗率,结果表明,醇解的最佳pH值为5.6;随着溶剂循环次数增加,原乙酸三甲酯收率从83.6%(1次)逐渐下降到76.7%(16次);溶剂次平均损耗率4.6%。实现了直接蒸馏产品,溶剂循环使用的新工艺。避免了旧工艺先蒸溶剂,后蒸产品,产品大量分解,收率低等缺点。 相似文献
6.
4-甲氧基苯乙腈的又一种合成法 总被引:1,自引:0,他引:1
以4-羟基苯乙酰胺为原料,经甲基化和脱水两步反应合成了4-甲氧基苯乙腈,总收率76.5%。 相似文献
7.
Ionic liquids as electrolytes 总被引:5,自引:0,他引:5
Salts having a low melting point are liquid at room temperature, or even below, and form a new class of liquids usually called room temperature ionic liquids (RTIL). Information about RTILs can be found in the literature with such key words as: room temperature molten salt, low-temperature molten salt, ambient-temperature molten salt, liquid organic salt or simply ionic liquid. Their physicochemical properties are the same as high temperature ionic liquids, but the practical aspects of their maintenance or handling are different enough to merit a distinction. The class of ionic liquids, based on tetraalkylammonium cation and chloroaluminate anion, has been extensively studied since late 1970s of the XX century, following the works of Osteryoung. Systematic research on the application of chloroaluminate ionic liquids as solvents was performed in 1980s. However, ionic liquids based on aluminium halides are moisture sensitive. During the last decade an increasing number of new ionic liquids have been prepared and used as solvents. The general aim of this paper was to review the physical and chemical properties of RTILs from the point of view of their possible application as electrolytes in electrochemical processes and devices. The following points are discussed: melting and freezing, conductivity, viscosity, temperature dependence of conductivity, transport and transference numbers, electrochemical stability, possible application in aluminium electroplating, lithium batteries and in electrochemical capacitors. 相似文献
8.
乙腈生产及其在工业上的主要利用 总被引:1,自引:0,他引:1
介绍了工业上生产乙腈的主要工艺和国内乙腈厂家产能情况;重点介绍了乙腈在工业上的主要开发利用途径,为乙腈大规模开发利用指明了方向。 相似文献
9.
A series of N-alkylacetonitrilium ions were characterized by IR spectroscopy on an activated H-ZSM-5 sample pretreated by CD3CN with various adsorbed olefins. Two kinds of(CN) band were evidenced according to whether the carbenium ion is secondary (2387 cm–1) or tertiary (2376 cm–1). The method is able to detect the isomerization intermediates of cyclohexene into methyl-cyclopentene. 相似文献
10.
Zihao Zhang Zirong He Nan Wang Fengmei Wang Chongyu Du Jiafeng Ruan Qin Li Dalin Sun Fang Fang Fei Wang 《Advanced functional materials》2023,33(27):2214648
Rechargeable aqueous zinc batteries are promising energy storage devices because of their low cost, high safety, and high energy density. However, their performance is plagued by the unsatisfied cyclability due to the dendrite growth and hydrogen evolution reaction (HER) at the Zn anode. Herein, it is demonstrated that the concentrated hybrid aqueous/non-aqueous ZnCl2 electrolytes constitute a peculiar chemical environment for not only the Zn-ions but also water molecules. The high concentration of chloride ions substitutes the H2O molecular in the solvation structure of Zn2+, while the acetonitrile further interacts with H2O to decrease its activity. The hybrid electrolytes both inhibit the dendrite formation and HER, enabling an ultrahigh average Coulombic efficiency of 99.9% in the Zn||Cu half-cell and a highly reversible Zn plating/stripping with a low overpotential of 21 mV. Using this hybrid electrolyte, the Zn||polytriphenylamine (PTPAn) full cell deliveres a high discharge capacity of 110 mAh g−1, a high power density of 9200 W kg−1 at 100 °C and maintains 85% of the capacity for over 6000 cycles at 10 °C. This study provides a deep understanding between the solvation structure and columbic efficiency of Zn anode, thus inspiring the development for stable Zn batteries. 相似文献