首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Catalytic carbonization of polypropylene by the combined catalysis of activated carbon with Ni2O3 into carbon nanotubes and its mechanism
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Catalytic carbonization of polypropylene by the combined catalysis of activated carbon with Ni2O3 into carbon nanotubes and its mechanism

机译:活性炭与Ni2O3联合催化合成碳纳米管催化聚丙烯的碳化。

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摘要

A one-pot approach was established to prepare carbon nanotubes (CNTs) through the carbonization of polypropylene (PP) by the combined catalysts of activated carbon (AC) with Ni2O3. The combination of AC with Ni2O3 showed a synergistic catalysis on the catalytic conversion of PP to form CNTs. The effects of the content of AC and carbonization temperature on the yield of CNTs were studied. The morphology, phase structure and thermal stability of the obtained CNTs were analyzed by means of SEM, TEM, XRD, TGA and Raman. In this synergistic catalysis, the surface functional groups (especially carboxylic groups) of AC were proved to be the key factor. AC not only promoted the cracking of PP fragment radicals into light hydrocarbons and the dehydrogenation and aromatization of the resultant light hydrocarbons into aromatic compounds, but also promoted the formation of the intermediate aromatic compounds or polycyclic aromatic hydrocarbons (PAHs) from the reaction of light hydrocarbon products and aromatic compounds. Additionally, AC assisted in situ Ni catalyst (originated from the reduction of Ni2O3) catalyzing the dehydrogenation and aromatization of intermediate aromatic compounds or PAHs products to form CNTs. At last, a layer-by-layer assembled mechanism based on benzene rings for the growth of CNTs using PP as carbon source and combined AC/Ni2O3 as catalysts was proposed. This mechanism will help to understand the growth mechanism of CNTs using virgin or waste plastics as carbon sources. More importantly, this approach offers a new potential way for large-scale production of CNTs from waste plastics using cheap AC as a cocatalyst.
机译:建立了一种一锅法,通过活性炭(AC)与Ni2O3的组合催化剂将聚丙烯(PP)碳化来制备碳纳米管(CNT)。 AC与Ni2O3的结合对PP催化转化为CNT表现出协同催化作用。研究了AC含量和碳化温度对CNTs收率的影响。利用SEM,TEM,XRD,TGA和Raman对所得碳纳米管的形貌,相结构和热稳定性进行了分析。在这种协同催化中,AC的表面官能团(尤其是羧基)被证明是关键因素。 AC不仅促进PP片段自由基裂解为轻烃,并将所得的轻烃脱氢和芳构化为芳族化合物,而且还促进了轻烃反应形成中间芳族化合物或多环芳烃(PAHs)产品和芳香化合物。另外,AC辅助原位Ni催化剂(源自Ni2O3的还原)催化中间芳族化合物或PAHs产物的脱氢和芳构化以形成CNT。最后提出了一种以苯环为基础的层状组装机理,以PP为碳源,以AC / Ni2O3为催化剂,进行CNT的生长。这种机制将有助于了解使用原始塑料或废塑料作为碳源的CNT的生长机制。更重要的是,这种方法提供了一种新的潜在方法,可使用廉价的AC作为助催化剂从废塑料大规模生产CNT。

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