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- It was pointed out that supports would be the focus for development of cyclohexanol dehydrogenation catalysts. 最后对环己醇脱氢制环己酮催化剂的发展方向进行了展望,提出了载体是环己醇脱氢催化剂需要突破的重点。
- The performances and application status of several cyclohexanol dehydrogenation catalysts in home and abroad are compared. 对几种国内外工业用环己醇脱氢催化剂的性能及使用情况进行了比较。
- Advances in cyclohexanol dehydrogenation catalysis 环己醇脱氢催化剂技术进展
- Development and performance of a Cu-Zn cyclohexanol dehydrogenation catalyst 铜锌系环己醇脱氢催化剂的开发与应用
- Researches in cyclohexanol dehydrogenation catalysts and the reaction mechanism 环己醇脱氢催化剂及催化机理研究进展
- Compare on performances of several cyclohexanol dehydrogenation catalysts 几种环己醇脱氢催化剂性能的比较
- Keywords Cyclohexanol Dehydrogenation Catalyst Cyclohexanone Catalytic Activity Side Crush Strength; 环己醇;脱氢催化剂;环己酮;催化活性;侧压强度;
- Keywords cyclohexanol dehydrogenation catalyst;cyclohexanone;catalytic mechanism; 环己醇;环己酮;脱氢催化剂;催化机理;
- cyclohexanol dehydrogenation 环己醇脱氢
- It was summariyed in thispaper for the technology and experimental methods in use of heatpipe reactors to cyclohexanol and ethyl benzene dehydrogenation reaction processes. 介绍了热管式反应器在乙苯脱氢和环己醇脱氢反应中应用的试验过程和结果。
- Further hydrogenation of phenol leads to cyclohexanol very cleanly. 苯酚加氢进一步导致环非常清廉.
- 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。
- Catalyst for Dehydrogenation of Cyclohexanol 环己醇脱氢新型催化剂的研究
- 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 reaction of cyclohexene from cyclohexanol by dehydration using aluminosilicate as catalyst was stud-ied . 研究了以硅铝酸盐(Al_2O_3/SiO_2)为催化剂,环己醇脱水制备环己烯的反应。
- From campholenic aldehyde,sandalwood fragrance campholenyl methyl cyclohexanol was synthesized. 从龙脑烯醛合成了檀香香料龙脑烯基甲基环己醇。
- Cyclohexanol was synthesized into adipic acid using ammonium tungstate as catalyst and hydrogen peroxide as oxi- dant. 以钨酸铵为催化剂,用过氧化氢氧化环己醇合成己二酸。
- Extraction capacities of n-Butanol, iso-Butyl alcohol, iso-Amyl alcohol, Cyclohexanol, TBP, SSF and SF2 are examined. 研究了正丁醇、异丁醇、异戊醇、环己醇、TBP、SSF和SF2萃取剂的萃取性能,确定了SSF为一种综合性能比较好的混合萃取剂;
- 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。
- The process of hydration of cyclohexene to prepare cyclohexanol was industrialized in Japan in 1990. 1990年日本实现了环已烯水合制环已醇的工业化。
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- 深远海浮式风电平台 - deep-sea floating wind power platform
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