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Catalytic Conversion of Methanol by Oxidative Dehydrogenation
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作者 Toshihito Ohtake Tohru Mori Yutaka Morikawa 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2007年第1期1-5,共5页
This study investigates the effects of addition of oxygen on the oxidative dehydrogenation (ODH) of methanol when a fluorotetrasilicic mica ion-exchanged with palladium (Pd2^+-TSM) was used as the catalyst. The r... This study investigates the effects of addition of oxygen on the oxidative dehydrogenation (ODH) of methanol when a fluorotetrasilicic mica ion-exchanged with palladium (Pd2^+-TSM) was used as the catalyst. The reaction proceeded at a very low temperature in the presence of oxygen, and HCOOCH3 was obtained at high selectivity. By calculating the equilibrium conversion, it has been shown that substantial ODH took place for HCOOCH3 production. Consequently, this reaction would make dehydrogenation the dominant reaction at equilibrium. Not all the H dissociated from CH3OH was converted to H20 by oxidation. It has been shown that the H2O was not produced from oxidative dehydrogenation by the direct reaction of CH3OH and O2 when an attempt was made to carry out oxidative dehydrogenation using an isotope oxygen trace method in the gas phase. Therefore, when CHaOH was converted to CO2 and dehydrogenated to HCOOCH3, the C-O bonds were not dissociated. 展开更多
关键词 c1 chemistry CONVERSION methanol oxidative dehydrogenation CATALYSIS
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A review of C_1 chemistry synthesis using yttrium-stabilized zirconia catalyst 被引量:3
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作者 Antonius Indarto Jae-Wook Choi +1 位作者 Hwaung Lee Hyung Keun Song 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第1期1-6,共6页
C1 chemistry based on synthesis gas, methane, and carbon dioxide offers many routes to industrial chemicals. The reactions related to the synthesis of gas can be classified into direct and indirect approach for making... C1 chemistry based on synthesis gas, methane, and carbon dioxide offers many routes to industrial chemicals. The reactions related to the synthesis of gas can be classified into direct and indirect approach for making such products, such as acetic acid, dimethyl ether, and alcohol. Catalytic syngas processing is currently done at high temperatures and pressures, conditions that could be unfavorable for the life of the catalyst. Another issue of C1 chemistry is related to the methane-initiated process. It has been known that direct methane conversions are still suffering from low yields and selectivity of products resulting in unprofitable ways to produce products, such as higher hydrocarbons, methanol, and so on. However, many experts and researchers are still trying to find the best method to overcome these barriers, for example, by finding the best catalyst to reduce the high-energy barrier of the reactions and conduct only selective catalyst-surface reactions. The appli- cation of Yttria-Stabilized Zirconia (YSZ) and its combination with other metals for catalyzing purposes are increasing. The existence of an interesting site that acts as oxygen store could be the main reason for it. Moreover, formation of intermediate species on the surface of YSZ also contributes significantly in increasing the production of some specific products. Understanding the phenomena happening inside could be necessary. In this article, the use of YSZ for some C1 chemistry reactions was discussed and reviewed. 展开更多
关键词 c1 chemistry METHANE synthesis gas methanol yttria-stabilized zirconia CATALYST oxygen storage rare earths
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甲醇化工新进展 被引量:17
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作者 魏双绍 《天然气化工—C1化学与化工》 CAS CSCD 北大核心 2000年第1期56-61,共6页
论述了甲醇羰基化制醋酸、甲醇脱氢 (或羰化 )法制甲酸甲酯以及甲醇氧化羰基化法制碳酸二甲酯等已商业化的现代技术进展 ,还介绍了涉及甲醇制芳烃、原甲酸三甲酯、乙酸甲酯等新产品的开发现状 ,以及甲醇选择性生产二甲胺、二氯甲烷等市... 论述了甲醇羰基化制醋酸、甲醇脱氢 (或羰化 )法制甲酸甲酯以及甲醇氧化羰基化法制碳酸二甲酯等已商业化的现代技术进展 ,还介绍了涉及甲醇制芳烃、原甲酸三甲酯、乙酸甲酯等新产品的开发现状 ,以及甲醇选择性生产二甲胺、二氯甲烷等市场畅销产品的新技术。 展开更多
关键词 c1化学 甲醇化工 甲醇羰基化 二甲胺 二氯甲烷
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甲烷化学最新技术进展 被引量:9
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作者 李锦春 《天然气化工—C1化学与化工》 CAS CSCD 北大核心 1999年第5期49-55,共7页
论述了由甲烷为原料生产和制取合成气、合成汽油、高级烃( 主要是乙烯) 、甲醇、甲醛、苯、乙酸、乙酸甲酯、乙醛、乙醇、氢氰酸、乙炔、碳纤维、萘和甲酸等一碳化学产品的国内外新技术进展。
关键词 甲烷 合成气 甲醇 甲醛 乙炔 碳一化学
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甲醇的市场前景与对策
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作者 姚守信 《氮肥设计》 1995年第6期55-57,共3页
介绍甲醇直接或间接用作各种燃料和生产饲料添加剂的广阔市场前景,提出要重视科学管理和重点攻关。
关键词 甲醇 燃料 碳1 市场
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