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首页> 外文期刊>Energies >Investigation into the Catalytic Activity of Microporous and Mesoporous Catalysts in the Pyrolysis of Waste Polyethylene and Polypropylene Mixture
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Investigation into the Catalytic Activity of Microporous and Mesoporous Catalysts in the Pyrolysis of Waste Polyethylene and Polypropylene Mixture

机译:微孔和中孔催化剂在废聚乙烯和聚丙烯混合物热解中的催化活性研究

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Catalytic pyrolysis behavior of synthesized microporous catalysts (conventional Zeolite Socony Mobil–5 (C-ZSM-5), highly uniform nanocrystalline ZSM-5 (HUN-ZSM-5) and β-zeolite), Mesoporous catalysts (highly hydrothermally stable Al-MCM-41 with accessible void defects (Al-MCM-41(hhs)), Kanemite-derived folded silica (KFS-16B) and well-ordered Al-SBA-15 (Al-SBA-15(wo)) were studied with waste polyethylene (PE) and polypropylene (PP) mixture which are the main constituents in municipal solid waste. All the catalysts were characterized by Brunauer-Emmett-Teller (BET), X-ray powder diffraction (XRD), and NH3-temperature programmed desorption (TPD). The results demonstrated that microporous catalysts exhibited high yields of gas products and high selectivity for aromatics and alkene, whereas the mesoporous catalysts showed high yields of liquid products with considerable amounts of aliphatic compounds. The differences between the microporous and mesoporous catalysts could be attributed to their characteristic acidic and textural properties. A significant amount of C2–C4 gases were produced from both types of catalysts. The composition of the liquid and gas products from catalytic pyrolysis is similar to petroleum-derived fuels. In other words, products of catalytic pyrolysis of plastic waste can be potential alternatives to the petroleum-derived fuels.
机译:合成的微孔催化剂(常规的Socele Mobil-5(C-ZSM-5),高度均匀的纳米晶体ZSM-5(HUN-ZSM-5)和β-沸石),介孔催化剂(水热稳定的Al-MCM)的催化热解行为研究了具有可及的空隙缺陷的-41(Al-MCM-41(hhs)),衍生自金铝石的折叠二氧化硅(KFS-16B)和有序的Al-SBA-15(Al-SBA-15(wo))聚乙烯(PE)和聚丙烯(PP)混合物是城市生活垃圾的主要成分,所有催化剂均具有Brunauer-Emmett-Teller(BET),X射线粉末衍射(XRD)和NH3程序升温脱附的特征(TPD)。结果表明,微孔催化剂显示出高产率的气体产物,并且对芳烃和烯烃具有高选择性,而中孔催化剂显示出高产率的液体产物,其中包含大量的脂族化合物,因此微孔催化剂和中孔催化剂之间的差异可以归因于继承人的特征酸性和质地特性。两种催化剂都会产生大量的C2-C4气体。催化热解产生的液体和气体产物的组成类似于石油衍生的燃料。换句话说,塑料废料的催化热解产物可能是石油衍生燃料的潜在替代品。

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