首页> 外文期刊>International journal of chemical engineering >Carbon-Based Catalyst from Pyrolysis of Waste Tire for Catalytic Ethanol Dehydration to Ethylene and Diethyl Ether
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Carbon-Based Catalyst from Pyrolysis of Waste Tire for Catalytic Ethanol Dehydration to Ethylene and Diethyl Ether

机译:碳基催化剂催化乙醇脱水对乙烯和乙醚的催化乙醇脱水

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This work investigated the use of waste tire as a source of carbon in preparation of carbon-based catalysts for applying in ethanol dehydration. The pyrolysis of waste tire was performed to obtain the solid carbon, and then it was treated with two different acids including HCl and HNO3 prior to the activation process with different temperatures to gain suitable carbon catalysts. All carbon catalysts were characterized using nitrogen physisorption, XRD, FTIR, and acid-base titration. The catalysts were tested for catalytic ethanol dehydration in a micropacked-bed reactor under the temperature range from 200°C to 400°C. It revealed that the ethanol conversion increased with increasing the reaction temperature for all catalysts. The carbon catalyst treated with HCl and calcined at 420°C (AC_H420) exhibited the highest ethanol conversion of 36.2% at 400°C having ethylene and diethyl ether selectivity of 65.9 and 33.5%, respectively. The high activity of this catalyst can be attributed to the high acid density at the surface (18.5?μmol/m2), which was significantly higher than those of most other catalysts (less than 8.0?μmol/m2).
机译:这项工作调查了使用废轮胎作为碳的源泉,用于制备碳基催化剂,用于施用乙醇脱水。进行废轮胎的热解以获得固体碳,然后用两种不同的酸处理,在活化过程之前用不同的温度在激活过程中,以获得合适的碳催化剂,以获得HCl和HNO 3。所有碳催化剂的特征在于使用氮原料,XRD,FTIR和酸碱滴定来表征。在温度范围为200℃至400℃的温度范围内测试催化剂的催化剂在微生物床反应器中进行催化乙醇脱水。揭示乙醇转化随着所有催化剂的反应温度而增加。用HCl处理并在420℃(AC_H420)下煅烧的碳催化剂在400℃下,具有65.9和33.5%的乙烯和乙醚选择性的最高乙醇转化率为36.2%。该催化剂的高活性可归因于表面(18.5Ωμmol/ m 2)的高酸密度,其显着高于大多数其他催化剂(小于8.0Ωμmol/ m2)。

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