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Catalytic cracking of palm oil to gasoline over pretreated Cu-ZSM-5

机译:预处理Cu-ZSM-5上棕榈油催化裂化为汽油

摘要

The catalytic conversion of palm oil to gasoline using hydrogen pretreatment onH-ZSM-5 with different copper loadings is discussed in this paper. The Cu-ZSM-5 catalysts were prepared using incipient wetness impregnation technique. The crystallinity, acidity and surface area were examined by X-ray diffraction (XRD), Pyridine adsorption - infra red spectroscopy (Py-IR), and Nitrogen Adsorption (NA). The results revealed that the crystallinity, acidity, and surface area of catalyst decreased with increasing copper loading. The catalytic testing was carried out in a fixed bed reactor at atmospheric pressure with hydrogen flow rate of 1 L/h for an hour for hydrogen pretreatment on catalysts. Then, the cracking process was continued at 500°C and weight hourly space velocity (WHSV) of 2.5 h–1 for four hours. Loading copper on the ZSM-5 catalyst showed adverse effects on catalytic activity. The highest gasoline component was aromatics, whichudwas about 11.45 wt % (all consisted of alkyl benzene) followed by 10.53 wt% of naphthenes and 4.06 wt% of isoparaffins for 6 wt% Cu-ZSM-5. Gas as side product consisted mainly of C3 compounds with 53.30 mol% followed by 29.84 mol% of C4 and 0.62 mol% of C5 compounds.ud
机译:本文讨论了在不同铜负载量的H-ZSM-5上通过氢气预处理将棕榈油催化转化为汽油的方法。采用初湿浸渍技术制备了Cu-ZSM-5催化剂。通过X射线衍射(XRD),吡啶吸附-红外光谱(Py-IR)和氮吸附(NA)检查结晶度,酸度和表面积。结果表明,随着铜载量的增加,催化剂的结晶度,酸度和表面积降低。在大气压下在固定床反应器中以1 L / h的氢气流速进行一小时的催化测试,以对催化剂进行氢气预处理。然后,在500°C和2.5 h-1的重时空速(WHSV)下继续开裂四个小时。将铜负载在ZSM-5催化剂上显示出对催化活性的不利影响。最高的汽油成分是芳烃,其芳香烃含量约为11.45 wt%(全部由烷基苯组成),其后是10.53 wt%的环烷烃和4.06 wt%的异链烷烃,含量为6 wt%的Cu-ZSM-5。作为副产物的气体主要由具有53.30 mol%的C3化合物,其次是29.84 mol%的C4和0.62 mol%的C5化合物组成。

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