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Conversion of glycerol to methanol over copper and nickel supported on HZSM-5 zeolite by hydrothermal process

机译:HZSM-5分子筛水热负载铜和镍将甘油转化为甲醇

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摘要

The use of biodiesel nowadays is in highly demand and forecasted to increase steadily in the future. Due to the surplus of glycerol as the major by-product from biodiesel processing, it gain attention to convert glycerol to methanol such a renewable and biodegradable fuel. This study discussed on conversion of glycerol to methanol in a benign environment. The reaction was conducted using hydrothermal process with reaction temperature within 250-380°C, 60-90 min reaction time and various feed concentration. The hydrothermal stability has also been evaluated using modified catalyst. The catalyst used was HZSM-5 zeolites modified by impregnation of Cu and Ni metal. The catalysts were characterized by X-ray diffraction (XRD), Infrared spectroscopy (FTIR), and scanning electron microscopy (SEM). The catalysts performances have been investigated for glycerol conversion and methanol yield. Under the reaction condition, higher Ni metal loaded was found to show higher methanol yield from glycerol conversion. This study was carried out on the effect of reaction temperature, reaction time and feed concentration where 16 experimental runs were conducted. CuNi-HZSM-5 catalyst was chosen for further tested to determine optimum condition on methanol yield. Optimization of methanol yield from glycerol via Response Surface Methodology (RSM) showed 0.0697 mole of methanol/mole of glycerol reacted was obtained at the optimum reaction temperature 302°C, 59.2 min reaction time and 41.7 wt. % of feed concentration
机译:如今,对生物柴油的使用有很高的需求,并且预计在将来会稳定增长。由于多余的甘油是生物柴油加工的主要副产品,因此人们越来越关注将甘油转化为甲醇,例如可再生和可生物降解的燃料。这项研究讨论了在良性环境中甘油向甲醇的转化。使用水热法进行反应,反应温度在250-380°C之间,反应时间为60-90分钟,并且进料浓度不同。还已经使用改性催化剂评估了水热稳定性。所使用的催化剂是通过浸渍Cu和Ni金属改性的HZSM-5沸石。通过X射线衍射(XRD),红外光谱(FTIR)和扫描电子显微镜(SEM)对催化剂进行表征。已经研究了甘油转化率和甲醇产率的催化剂性能。在反应条件下,发现较高的Ni金属负载量显示出较高的甘油转化甲醇产率。在反应温度,反应时间和进料浓度的影响下进行了该研究,其中进行了16次实验。选择CuNi-HZSM-5催化剂进行进一步测试,以确定甲醇收率的最佳条件。通过响应表面方法(RSM)优化甘油的甲醇产率,表明在最佳反应温度302℃,59.2分钟反应时间和41.7wt。%下获得0.0697摩尔甲醇/摩尔反应的甘油。进料浓度%

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    Spalie Nurul Syuhada;

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  • 年度 2013
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