1)  H Y zeolite
HY 分子筛
1.
In this paper,H Y zeolite is modified with silane coupling agent 3-aminopropyl-triethoxysilane(APTES),and mixed with alginate embedded with yeast as a hybrid carrier.
介绍了一种改性 HY 分子筛与海藻酸钙形成复合载体固定化酵母的方法。
2)  HY zeolite
HY分子筛
1.
In this study,zeolite catalysts,in which HY zeolite was used as active component and alumina gel,silica-alumina gel and titania-alumina gel as binders,were prepared for removal of trace olefin in aromatics.
本研究以铝胶、硅铝胶及钛铝胶为粘合剂,以HY分子筛为主要活性组分制备了芳烃脱烯烃分子筛催化剂。
2.
The acetalization and ketalization of various aldehydes and ketones with catechol by using HY zeolite as catalyst were studied.
研究了HY分子筛催化邻苯二酚与环己酮、丁酮、丙酮、丙醛、丁醛、异丁醛、戊醛、异戊醛、正己醛、正辛醛、苯甲醛、二苯甲酮等十余种醛(酮)的缩合反应。
3.
Using trimethylphosphine(TMP) and d5-pyridine (deuterated pyridine) as the basic probe molecules, the concentrations of Bronsted acid sites on both HY zeolite and dealuminated HY zeolite have been quantitatively determined using solid-state 1H and 31P magic-angle spinning(MAS) NMR.
用氘代吡啶和三甲基膦(TMP)作为碱性探针分子,用1H和31P魔角旋转(MAS)NMR谱对脱铝和未脱铝微孔HY分子筛中的Br#nsted酸(B酸)进行了定量研究。
3)  HY molecular sieve
HY分子筛
1.
The HY molecular sieve was prepared bv the NaY molecular sieve catalyst after ionic exchan- ging and calcination process.
采用NaY分子筛催化剂经离子交换和高温焙烧得到的HY分子筛,以乙醇和叔丁醇为原料在钢密封间歇反应釜进行醚化反应实验研究。
2.
The grafting reaction of tetrabutyl tin(SnBu_4)on surface of Pt/HY molecular sieve supercages was studied in vacuum.
研究了真空条件下四丁基锡(SnBu4)在Pt/HY分子筛超笼表面的接枝反应,并用元素分析、ICP、GC-MS、XRD、FTIR、TG、BET、UV-Vis等方法对产物的组成、结构和性质进行了表征。
3.
The alkylation of aniline with isopropanol was studied over HY molecular sieve catalysts.
研究了HY分子筛上苯胺和异丙醇烷基化反应。
4)  HY molecular sieves
HY型分子筛
1.
The isomerization reaction of α-pinene,βpinene and their mixed system catalyzed by HY molecular sieves was studied.
以HY型分子筛为催化剂,开展了α-蒎烯、β-蒎烯及其混合体系的异构化反应研究,考察了α-蒎烯和β-蒎烯含量、催化剂用量、反应温度对异构化反应的影响。
5)  Pt/HY zeolite
Pt/HY分子筛
6)  HY-zeolite
HY沸石分子筛
参考词条
补充资料:10X分子筛
分子式:0.70CaO·0.30Na2O·Al2O3·(2~3)SiO2·6.0H2
CAS号:

性质:白色粉末。具有高的吸附性和抗毒性。由水玻璃、偏铝酸钠、氢氧化钠按一定摩尔比混合后,发生反应,经结晶,过滤,洗涤,加入氯化钙进行离子交换(交换率70%)再过滤,再洗涤,烘干,加入粘接剂捏合,成型,灼烧活化制得。用于气体、液体的干燥,气体中硫化物、二氧化碳的脱除,芳烃的分离,以及用作催化剂及载体。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。