1) heptene
['hepti:n]
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。
2) heptylene
['heptə,li:n]
庚烯
1.
The photocatalytic activity was examined by the photocatalytic degradation of heptylene.
采用新的合成路线制得掺铁TiO2 纳米粒子, 通过光催化降解庚烯研究其气固复相光催化性能, 用XRD, UV vis和XPS等方法研究了掺铁TiO2 纳米粒子的晶体结构、光吸收特性及表面化学形态。
3) 1-heptene
庚烯-1
1.
The reaction chemistry of 1-heptene was investigated by cracking under 300℃,400℃,450℃,respectively,in fixed fluid bed(FFB) reactor.
在小型固定流化床上研究了庚烯-1在300、400、450℃下的裂化反应。
2.
The reaction behaviors of 1-heptene were studied under the different reaction temperature over MLC-500 catalyst.
以庚烯-1为原料进行催化转化试验,探讨了不同反应温度下庚烯-1的反应性能。
4) 1-heptene
1-庚烯
1.
Synthesis of C_(60)[Pd(PPh_3)_2] and Study on Its Catalytic Performance for Hydrogenation of 1-Heptene;
C_(60)[Pd(PPh_3)_2]的合成及其对1-庚烯氢化反应的催化性能研究
2.
Effect of temperature on gasoline olefins cracking reaction over acid catalysts in fixed fluidized bed(FFB)reactor was studied and 1-heptene was used as model compound.
以1-庚烯为模型化合物,在小型固定流化床上研究了反应温度对汽油烯烃在酸性催化剂上反应的影响。
6) cycloheptene
[,saikləu'hepti:n]
环庚烯
补充资料:庚烯
分子式:
分子量:
CAS号:
性质:C7H14 1-庚烯、2-庚烯及3-庚烯的混合物。无色液体。相对密度0.711(15.56/15.56℃)。熔点-119.2℃。折射率1.3994。不溶于水。溶于乙醇、乙醚、丙酮。易燃。用作经羰基合成制异辛醇的原料,经加氢成高辛烷值汽油的调制组分。由丙烯和丁烯共聚而得。也可由叠合汽油中分出。
分子量:
CAS号:
性质:C7H14 1-庚烯、2-庚烯及3-庚烯的混合物。无色液体。相对密度0.711(15.56/15.56℃)。熔点-119.2℃。折射率1.3994。不溶于水。溶于乙醇、乙醚、丙酮。易燃。用作经羰基合成制异辛醇的原料,经加氢成高辛烷值汽油的调制组分。由丙烯和丁烯共聚而得。也可由叠合汽油中分出。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条