acid sites信息详情
酸性部位
sites───n.(Sites)(美)赛茨(人名);n.地点,位置;网站(site的复数);v.为……选址(site的第三人称单数)
booting sites───启动站点
researches sites───研究地点
funding sites───融资场所
rebate sites───折扣网站
blastoderm sites───胚层部位
bookselling sites───图书销售网站
auction sites───拍卖网站(auctionsite的复数)
excavations sites───挖掘现场
the acid sites are the easier coke deposition will be and more acid sites means more coking locations.───积炭的形成部位与酸中心在晶内外的分布关系密切。
Ethylation selectivity, was affected by strength of surface acid sites, location of acid sites and pore structure.───乙基化的选择性则与催化剂的表面酸强度、酸性中心位置和孔道结构等因素有关。
Enhancement of the quantity of strong acid sites is the trend in development of C4-olefins cracking catalysts.───提高催化剂表面强 酸的 酸量是C4烯烃催化裂解制丙烯反应催化剂的研制方向。
The results revealed that both the solid acid sites and the Pd active sites can catalyze this decomposition reaction.───结果显示,固体酸性中心和金属钯中心都可以催化亚硝酸乙酯的分解反应。
These results indicate that the presence of strong acid sites favors the improvement of both phenol conversion and 2, 4-DTBP selectivity.───这表明强酸中心的出现有利于提高苯酚的转化率和2,4-二叔丁基苯酚的选择性。
The results indicated that strong acid sites of the MCM-22 zeolite favored its OATS activity.───结果表明,催化剂的强酸有利于噻吩烷基化脱硫反应活性。
The surface acid sites of diatomite detected by pyridine-Raman spectrometry───运用吡啶吸附-拉曼光谱探测硅藻土表面酸位
Synthesis and Catalytic Performances of Mesoporous Aluminosilicates of Cubic and Hexagonal Structure with Stronger Acid Sites───具有强酸位的六方和立方介孔硅铝分子筛合成及催化活性比较
The calcination of HZSM-5 zeolite treated by sulfur acid not only could improve its acid quantity, but also increased strong acid sites with structure of super acid.
The superacid sites were attributed to Lewis acid sites and proved to be dominant active center.
The activity of the catalyst was the best when the proportion between B acid sites and...
The experimental results show that ammonia molecule is adsorbed preferentially on the B acid sites.
Ethylation selectivity, was affected by strength of surface acid sites, location of acid sites and pore structure.
The results indicated that the strong acid sites of MCM-22 zeolite benefit the aromatization reaction in opposite to the isomerization process.
The formation mechanism of acid sites, mainly the formation mechanism of Bronsted acid sites in HY and REY zeolite as well as Lewis acid sites in matrices and zeolite of FCC catalysts are analyzed.
It is shown that Bronsted acid sites are mainly formed from the hydroxyl groups in the main channels of mordenite.
It was found that basic organic compounds and coke mainly deposit on the L acid sites rather than B acid sites of the hydrocracking catalyst.