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Hydrogen production from glycerol using copper and nickel loaded zeolite based catalyst

机译:使用负载铜和镍的沸石基催化剂从甘油制氢

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摘要

The increasing of the growth rate for vehicles leads to the high production of biodiesel and gives a large amount of glycerol as the by-product via transesterification reaction. Moreover, the limited of the world demand for glycerol makes the glycerol as a waste and abundant substance. For that reason, glycerol conversion into valuable chemical such as hydrogen fuel production is essential since conventional source of hydrogen production is mainly from fossil. Commonly, the metal catalyst which been used for hydrogen production via steam reforming is costly that give worrisome to the industries. Therefore, in this study, copper (Cu) and nickel (Ni) metal loaded on HZSM-5 zeolite catalyst is used for hydrogen production from glycerol via steam reforming. The study is focusing in analyzed the performance of Cu and Ni metal loaded on HZSM-5 and investigates the optimum conditions for hydrogen production which include reaction temperature, glycerol feed concentration or water/glycerol molar ratio (WGMR) and feed flow rate. The hydrogen production through steam reforming was carried out using a fixed bed type reactor while the range of studied parameters for reaction temperature (350-750oC), glycerol feed concentration (3:1-11:1 of WGMR) and feed flow rate (0.25-1.25mL/min) were performed. The catalyst performance for hydrogen production was observed by different weight percentage of Cu (0.5-10%) and Ni (0.5-10%) loaded on HZSM-5 catalyst. It was found that 5wt% of Cu with 10wt% of Ni to be the best catalyst to produce higher hydrogen yield. By using statistical design, the optimum of hydrogen yield (3.98 of mol H2/mol C3H8O3 converted) was achieved at temperature 639oC, 8:1 of WGMR and flow rate of 0.65mL/min.
机译:车辆的生长速率的增加导致生物柴油的高产量,并通过酯交换反应产生大量的副产物甘油。而且,由于世界对甘油的需求的有限,使得甘油成为浪费和丰富的物质。因此,将甘油转化为有价值的化学品(例如生产氢燃料)至关重要,因为常规的氢生产来源主要来自化石。通常,用于通过蒸汽重整生产氢气的金属催化剂价格昂贵,这使工业令人担忧。因此,在这项研究中,负载在HZSM-5沸石催化剂上的铜(Cu)和镍(Ni)金属用于通过蒸汽重整从甘油制氢。该研究的重点是分析负载在HZSM-5上的Cu和Ni金属的性能,并研究制氢的最佳条件,包括反应温度,甘油进料浓度或水/甘油摩尔比(WGMR)和进料流速。使用固定床型反应器进行蒸汽重整制氢,同时研究反应温度(350-750oC),甘油进料浓度(WGMR的3:1-11:1)和进料流速(0.25)的研究参数范围-1.25mL / min)。通过负载在HZSM-5催化剂上的Cu(0.5-10%)和Ni(0.5-10%)的重量百分比不同,可以观察到制氢催化剂的性能。发现5wt%的Cu和10wt%的Ni是产生更高氢产率的最佳催化剂。通过统计设计,在639oC,WGMR为8:1和流速为0.65mL / min的条件下实现了最佳的氢产率(转化为3.98 mol H2 / mol C3H8O3)。

著录项

  • 作者

    Abdul Halim Yun Hafizah;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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