1) the Study in the US at the Expenditure of War Loss Indemnity of the Year 1900"
“庚款留美”
2) study abroad in Boxer Indemnity period
庚款留美
3) heptyl heptylate
庚酸庚酯
4) heptaldehyde
庚醛
1.
Preparation of catalyst for low pressure hydrogenation of heptaldehyde;
庚醛低压催化加氢催化剂的制备
2.
α-Hydroxyl octanoic acid(1) was synthesized from heptaldehyde by a four-step reaction of nucleophilic substitution,displacement reaction,acid hydrolysis and deaminization.
以正庚醛为原料,经过亲核取代、置换反应、酸水解及碱化脱氨等4步反应合成了制备3,6-二己基-1,4-二氧杂-2,5-二酮(辛交酯)的中间体——α-羟基辛酸(1);1经对甲苯磺酸催化脱水得辛交酯。
3.
Aim\ Enanthal diethyl acetal is prepared with heptaldehyde and triethyl orthoformate as raw materials.
目的 研究以庚醛和原甲酸三乙酯为原料制备庚醛二乙缩醛的工艺条件 。
5) heptane
庚烷
1.
The cata lytic performance of Pd/WO3-ZrO2 for hydroisomerization of n-heptane w as investigated under the reaction cond.
采用共沉淀方法制备了固体酸载体WO3-ZrO2,考察了W含量和焙烧温度等对WO3-ZrO2酸性和物相结构的影响,并且考察了Pd/WO3-ZrO2催化剂对正庚烷异构化反应的催化性能。
2.
The photocatalytic reactivity of the samples were tested by the gas-phase photocatalytic oxidation of heptane.
以气态庚烷为反应体系,来比较上述两种催化剂的光催化活性。
3.
The photocatalytic activities were measured with the photocatalytic degradation of heptane.
以乙酰丙酮铁和钛酸四丁酯为前驱体 ,制备掺铁TiO2 复合光催化剂 ,以光催化降解正庚烷为反应模型 ,测定掺铁对TiO2 光催化剂的结构、光吸收和光催化活性的影响 。
6) heptene
庚烯
1.
In Situ IR Characterization on Hydroformylation and Hydrogenation for Oxosynthesis of Alcohol from Heptene;
庚烯羰化制醇的原位红外光谱表征
2.
At 60 ℃ and under 2 MPa,the Wacker reaction of 1-heptene oxidized with molecular oxygen to 2-heptanone with PdCl2-CuCl2 as the catalyst was studied in different reaction media,bmimPF6,acidic aqueous solution and solvent-free.
在60℃及2 MPa条件下,以PdCl2-CuCl2为催化剂,分别在无溶剂、酸性水溶液、1-丁基-3-甲基咪唑六氟磷酸盐(bmimPF6)离子液体为溶剂研究了分子氧氧化1-庚烯生成2-庚酮的Wacker反应。
3.
Nano-TiO_2/(SiO_2) was used as catalyst to investigate the influence of different calcined(temperatures) on the photocatalytic activity of the catalyst for the photocatalytic degradation of heptene.
以TiO2/SiO2纳米粒子为催化剂,研究了催化剂不同焙烧温度对二氧化硫与庚烯光催化反应的影响。
参考词条
补充资料:美替诺龙庚酸酯
分子式:C27H42O3
分子量:414.63
CAS号:303-42-4
性质:暂无
制备方法:暂无
用途:暂无
分子量:414.63
CAS号:303-42-4
性质:暂无
制备方法:暂无
用途:暂无
说明:补充资料仅用于学习参考,请勿用于其它任何用途。