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首页> 外文期刊>Catalysis science & technology >Identifying and controlling the acid site distributions in mordenite zeolite for dimethyl ether carbonylation reaction by means of selective ion-exchange
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Identifying and controlling the acid site distributions in mordenite zeolite for dimethyl ether carbonylation reaction by means of selective ion-exchange

机译:识别和控制酸的网站分布在丝光沸石为二甲沸石通过醚羰基化反应选择性离子交换

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As Bronsted acid sites in different types of channels exhibit distinct catalytic behaviors in the dimethyl ether (DME) carbonylation reaction over acidic mordenite (H-MOR) zeolites (e.g.acid sites in 8-membered ring channels for carbonylation reaction, acid sites in 12-membered ring channels for methanol-to-hydrocarbons reactions), the identification and regulation of acid site distribution in mordenite zeolites are of great importance to improve the catalytic performance. In this work, we employ the selective ion-exchange method to identify and control the acid site distribution in mordenite zeolites, and the chemical properties of acid sites in different channels are investigated by NH3-TPD and CD3CN FT-IR. Additionally, the effect of selective ion-exchange on the catalytic performance of DME carbonylation reaction is also discussed. The selective ion-exchange is realized by using tetramethylammonium (TMA(+)) ions, which can selectively remove the counter ions in the 12-membered ring channels but are inaccessible to the counter ions in 8-membered ring channels due to the steric hindrance. The selective ion-exchange reveals that the relative amounts of acid sites in 12-membered ring channels and 8-membered ring channels are 68% and 32%, respectively. Interestingly, it is found that introducing TMA(+)into H-MOR zeolites significantly improves the catalytic activity and stability in DME carbonylation reaction as a result of depressing the methanol-to-hydrocarbons reactions. The 3TMA-H-MOR catalyst shows high stability for 210 hours on stream. The present work opens a new avenue for designing carbonylation catalysts with excellent stability in DME carbonylation reaction.
机译:在不同类型的布仑斯惕酸网站渠道表现出不同的催化行为二甲醚(测距装置)羰基化反应在酸性丝光沸石(H-MOR)沸石(e.g.acid网站8-membered环渠道由12人组成的羰基化反应,酸的网站环methanol-to-hydrocarbons渠道反应),识别和管理酸站点分布在丝光沸石沸石重视改善催化的性能。识别和选择性离子交换方法控制在丝光沸石酸站点分布沸石和酸的化学性质在不同的渠道调查网站NH3-TPD CD3CN红外光谱。在催化选择性离子交换的测距装置的性能也是羰基化反应进行了讨论。通过使用tetramethylammonium (TMA(+)离子可以有选择地删除的反离子由12人组成的环形通道,但无法进入8-membered环的反离子通道位阻。离子交换显示的相对数量酸网站频道和由12人组成的戒指8-membered环通道是68%和32%,分别。TMA(+)引入H-MOR沸石大大提高了催化活性和稳定的测距装置作为羰基化反应压低methanol-to-hydrocarbons的结果反应。稳定210小时。工作设计开辟了新的途径羰基化反应催化剂的稳定性在测距装置羰基化反应。

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