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首页> 外文期刊>Fuel >Valorization of waste tires in the synthesis of an effective carbon based catalyst for biodiesel production from a mixture of non-edible oils
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Valorization of waste tires in the synthesis of an effective carbon based catalyst for biodiesel production from a mixture of non-edible oils

机译:在由非食用油的混合物合成有效的碳基催化剂用于生物柴油生产中,对废轮胎进行增值

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In this investigation, char derived by the pyrolysis of waste tires was steam activated, to prepare waste tires derived activated carbon (WTAC). The attained WTAC was then impregnated with KOH to synthesize a novel carbon base catalyst (KOH/WTAC). Transesterifcation reaction of a mixture of non-edible oils with methanol and mixed methanol/ethanol was conducted using so-prepared carbon base catalyst. X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), Scanning electron microscope (SEM), thermo-gravimetric analysis (TGA), energy dispersive spectrometer (EDS), and the Hammett indicator method, were applied to characterize the KOH/WTAC catalyst. The obtained outcomes disclosed that the WTAC impregnated with 50 wt% KOH and calcanied at 400 degrees C (50K(400)/WTAC) has exhibited the highest catalytic activity and basicity. The highest methyl ester yield of 94.50% was attained when the reaction was conducted under (4 wt%, g cat./g oil), reaction period of 2 h, 60 degrees C reaction temperature and 8/1 methanol/oil molar ratio, while a catalyst dosage of (4 wt%, g cat./g oil), 9/1 mixed methanol/ethanol molar ratio, 65 degrees C and 2 h, were the optimum reaction conditions, which synthesized the highest yield of methyl/ethyl esters (93.12%). After being reused for six cycles, the 50K(400)/WTAC remained owns a rather high catalytic activity. The FTIR and (HNMR)-H-1 spectroscopy affirmed the conversion of the oils mixture to biodiesel. Furthermore, the specified properties of biodiesel agreed with the quality necessities established by ASTM 6751 and EN 14214. Finally, The transesterifcation of the oil with both methanol and mixed methanol/ethanol adopted the pseudo-first-order model with an activation energy of 20.10 kJ/mol and 18.64 KJ/mol.
机译:在这项研究中,将废轮胎热解所产生的焦炭进行蒸汽活化,以制备废轮胎衍生的活性炭(WTAC)。然后将所获得的WTAC用KOH浸渍以合成新型碳碱催化剂(KOH / WTAC)。使用如此制备的碳碱催化剂进行非食用油与甲醇和甲醇/乙醇混合溶液的酯交换反应。使用X射线衍射(XRD),傅立叶变换红外光谱(FTIR),扫描电子显微镜(SEM),热重分析(TGA),能量色散光谱仪(EDS)和哈米特指示剂方法来表征KOH / WTAC催化剂。获得的结果表明,浸渍有50 wt%KOH并在400摄氏度下煅烧的WTAC(50K(400)/ WTAC)具有最高的催化活性和碱性。当反应在(4 wt%,g cat./g油),2 h反应时间,60°C反应温度和8/1甲醇/油摩尔比的条件下进行时,最高甲酯产率为94.50%,最佳的反应条件是催化剂用量(4 wt%,g cat / g油),9/1混合甲醇/乙醇摩尔比,65℃和2 h是最佳反应条件,合成了最高的甲基/乙基收率。酯(93.12%)。在重复使用六个循环后,50K(400)/ WTAC仍然具有相当高的催化活性。 FTIR和(HNMR)-H-1光谱证实了油混合物向生物柴油的转化。此外,生物柴油的特定特性符合ASTM 6751和EN 14214确立的质量要求。最后,油与甲醇和甲醇/甲醇混合乙醇的酯交换反应采用的伪一阶模型,活化能为20.10 kJ。 / mol和18.64 KJ / mol。

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