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首页> 外文期刊>Energy Conversion & Management >Synthesis of carbonaceous solid acid magnetic catalyst from empty fruit bunch for esterification of palm fatty acid distillate (PFAD)
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Synthesis of carbonaceous solid acid magnetic catalyst from empty fruit bunch for esterification of palm fatty acid distillate (PFAD)

机译:从空果束中合成碳质固体酸磁性催化剂,用于棕榈脂肪酸馏出物(PFAD)的酯化

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摘要

A biomass-based magnetic catalyst was synthesised by way of a chemical activation-doping-sulphonation process using empty fruit bunch (EFB) char as a precursor for conversion of palm fatty acid distillate (PFAD) to biodiesel. The magnetic heterogeneous acid catalyst AC-Fe-(x)-SO3Cl, with x = 2, 5, 10 and 15 (%) was prepared, to synthesise the optimised magnetic catalyst. The optimised magnetic catalyst was identified by applying TPD-NH3, BET, XRD, XPS, VSM, TGA and FESEM. The prepared magnetic catalyst had a higher surface area (20.42 m(2)/g), high acidity (29,520 mu mol/g), and high magnetic properties (HC = 344.14G). The esterification activity of the AC-Fe-(10)-SO3Cl catalyst showed high free fatty acid conversion (98.6%) with optimal reaction conditions of 4 wt % catalyst, 3 h reaction time, 16:1 methanol/PFAD ratio and 100 degrees C reaction temperature. In addition, AC-Fe-(10)-SO3Cl showed the capability of maintaining esterification activity for six continuous cycles with no further treatment and gave a similar to 79% biodiesel conversion. The produced catalysts showed characteristics such as high durability during esterification, with metal leaching containing low activity after several cycles. The EFB waste-based acidic magnetic catalysts are potentially efficient, economical, and eco-friendly for the esterification of waste oils and fats for biodiesel production.
机译:以空果束(EFB)炭为前驱体,将棕榈脂肪酸馏出物(PFAD)转化为生物柴油,通过化学活化-掺杂-磺化工艺合成了基于生物质的磁性催化剂。制备了x = 2、5、10和15(%)的磁性多相酸催化剂AC-Fe-(x)-SO3Cl,合成了优化的磁性催化剂。通过应用TPD-NH3,BET,XRD,XPS,VSM,TGA和FESEM鉴定了优化的磁性催化剂。制备的磁性催化剂具有较高的表面积(20.42 m(2)/ g),高酸度(29,520μmol / g)和高磁性(HC = 344.14G)。 AC-Fe-(10)-SO3Cl催化剂的酯化活性显示出较高的游离脂肪酸转化率(98.6%),最佳反应条件为4 wt%催化剂,3 h反应时间,16:1甲醇/ PFAD比和100度C反应温度。此外,AC-Fe-(10)-SO3Cl显示了无需连续处理即可连续六个周期维持酯化活性的能力,并且生物柴油的转化率接近79%。所生产的催化剂表现出诸如在酯化过程中的高耐久性的特性,并且经过数次循环后金属浸出的活性降低。 EFB废物基酸性磁性催化剂对于生产生物柴油的废油脂进行酯化反应具有潜在的效率,经济性和生态友好性。

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