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Methanol dehydration to dimethyl ether over strong-acid-modified diatomite catalysts

机译:强酸改性硅藻土催化剂上甲醇脱水制二甲醚

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摘要

Dimethyl ether synthesis via methanol dehydration over strong-acid-modified (with sulfuric, hydrochloric and nitric acid) diatomite (DM) catalysts was conducted in a fixed-bed reactor with elevated temperature reaction from 250 to 350 degrees C. The modified DM catalysts were characterized by using X-ray diffraction, scanning electron microscopy, fourier transform infrared spectroscopy, fourier transform Raman spectroscopy, temperature-programmed desorption of ammonia, temperature-programmed of carbon dioxide, thermal gravimetric analysis, and solid-state 27Aluminum magic angle spinninguclear magnetic resonance spectroscopy. It was found that sulfuric-acid-modified DM catalyst yielded the highest DME selectivity (similar to 99%). It was also revealed that methanol conversion depended on Al ions. The methanol conversion increased with Al-(IV) but decreased with Al-(V) and Al-(VI).
机译:在固定床反应器中通过强酸改性(用硫酸,盐酸和硝酸)(在硫酸,盐酸和硝酸上)甲醇脱水合成二甲醚,反应温度为250至350℃。改性的DM催化剂为通过X射线衍射,扫描电子显微镜,傅立叶变换红外光谱,傅立叶变换拉曼光谱,温度编程的氨解吸,二氧化碳编程的温度,热重量分析和固态27铝魔角纺丝/核能进行表征磁共振波谱学。发现硫酸改性的DM催化剂产生最高的DME选择性(接近99%)。还揭示出甲醇转化取决于Al离子。甲醇转化率随Al-(IV)增加而降低,随Al-(V)和Al-(VI)降低。

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