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1.
The exact mechanism of dealkylation has not been established.
脱烃作用的确切机制还没有确定。
2.
Study on Zeolite Catalysts for Removal of Trace Olefins from Aromatic Hydrocarbon;
芳烃精制脱除烯烃用分子筛催化剂的研究
3.
Study on MCM-22 catalysts of removing trace olefins from aromatic hydrocarbons
用于芳烃中微量烯烃脱除的MCM-22催化剂的研究
4.
Removal of trace olefins from aromatics by using ionic liquid
离子液体催化脱除芳烃中微量烯烃的研究
5.
Modification of Active Bentonite and Its Application in Olefins Removal from Aromatics
活性膨润土的改性及其在芳烃脱烯烃中的应用
6.
Removal Olefins from Reforming Aromatic by Ionic Liquid Catalyst
离子液体催化脱除重整芳烃中微量烯烃
7.
stripping plant
有脱轻烃装置的天然气压气站
8.
Degradation and Dechlorination of PVC-Containing Polyolefin Mixtures;
含PVC混合聚烯烃的降解及脱氯研究
9.
A Study on Removing C_5~+ Hydrocarbons from Natural Gas with Adsorption
吸附法脱除天然气中C_5~+重烃的研究
10.
Progress on Removal of Aromatic Hydrocarbons from Flue Gas by Sorbents
烟气中芳香烃吸附脱除技术研究进展
11.
Study on C_9 aromatics hydrodealkylation over zeolite catalysts
分子筛催化C_9芳烃脱烷基的研究
12.
After the decarboxylation process the alkane produced can be degraded or "cracked" =to lower carbon number alkanes.
脱羧基作用后,所形成的烷烃能被降解或“裂解”成低碳数烷烃。
13.
Removal of Trace Olefins from Reforming Aromatic Hydrocarbons over Y Zeolites Loading Phospho-Molybdic Acid Catalyst
Y型分子筛负载磷钼酸催化脱除重整芳烃中微量烯烃
14.
The main way for the reductive dechlorination of chloralkane is the direct transfer of electron.
电子直接转移是氯代烷烃还原脱氯的主要途径。
15.
THE PRETREATMENT PHENOL REMOVING OF HIGH CONCENTRATION AROMATIC HYDROCARBON RAW MATERIAL FCC WASTEWATER
高芳烃原料催化裂化废水脱酚预处理研究
16.
Catalytic Dechlorination of Chlorinated Aromatic Hydrocarbon in Water by Pd/Fe Bimetallic System;
钯/铁双金属体系对氯代芳烃的催化脱氯研究
17.
Influence of Dialkene on Gasoline Upgrading and Its Adsorptive Removal;
汽油改质过程二烯烃的影响及其吸附脱除
18.
Zeolite Catalysts for Removal of Trace Olefins in Reformate Without the Presence of Hydrogen
分子筛催化剂脱除重整油中微量烯烃的研究