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Production of nanostructured carbon materials using Fe-Mo/MgO catalysts via mild catalytic pyrolysis of polyethylene waste

机译:使用Fe-Mo / MgO催化剂通过温和催化热解的聚乙烯废物产生纳米结构碳材料

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摘要

A series of MgO supported bimetallic Fe-Mo catalysts with various Fe: Mo weight ratios (such as 50:0, 45:5, 40:10, 30:20, 20:30 and 10:40, respectively) have been prepared and evaluated for production of carbon nanomaterials (CNMs) via catalytic pyrolysis of low-density polyethylene (LDPE) plastic waste. Highly acidic HZSM-5 zeolite was used as a degradation catalyst during the pyrolysis process. To investigate the structure and physicochemical properties of the fresh catalysts, several characterization tools such as XRD, TPD, BET, TPR, and FTIR were employed. While to clarify the nature and morphology of as-produced CNMs, the spent catalysts were characterized by XRD, TEM, Raman spectroscopy and TPO. The XRD and TPR results confirmed that the non-interacted metal oxides species were dominant in the structure of the catalysts with higher Fe2O3 or MoO3 contents, whereas several mixed oxide species were extensively present in the catalysts with moderate Fe2O3 and MoO3 contents. The obtained results revealed that the Fe/Mo ratio was found to play a crucial role on the catalytic growth activity as well as the type and morphology of as-deposited CNMs. All results showed that the type and morphology structure of carbon deposited can be adjusted by changing the Fe/Mo ratio in the MgO support. The activities of catalysts were significantly improved with the successive addition of Mo contents up to 30 wt% due to the presence of a large number of diverse active sites as a result of interaction between all catalyst components. The catalysts with higher Fe or Mo contents promote the formation of both CNTs and CNFs, while the catalysts with intermediate loadings of Fe and Mo produce mainly CNTs, CNFs accompanied with GNSs as hybrid materials.
机译:一系列MgO支持双金属Fe-Mo催化剂,具有各种Fe:Mo重量比(例如50:0,45:5,40:10分别分别)和分别已经制备通过低密度聚乙烯(LDPE)塑料废物的催化热解来评价碳纳米材料(CNMS)的生产。在热解过程中,使用高度酸性HZSM-5沸石作为降解催化剂。为了研究新鲜催化剂的结构和物理化学性质,采用XRD,TPD,BET,TPR和FTIR等几种表征工具。虽然为了澄清制造的CNMS的性质和形态,但是XRD,TEM,拉曼光谱和TPO的特征在于废催化剂。 XRD和TPR结果证实,非相互作用的金属氧化物物质在具有更高的Fe 2 O 3或MOO3含量的催化剂的结构中显着,而几种混合氧化物物质被广泛存在于具有中等Fe 2 O 3和MOO3含量的催化剂中。所得结果显示,发现Fe / Mo比在催化生长活性以及沉积的CNMS的类型和形态上发挥至关重要的作用。所有结果表明,通过在MgO载体中改变Fe / Mo比,可以调节沉积的碳的类型和形态结构。由于在所有催化剂组分之间相互作用,由于存在大量不同的活性位点,催化剂的活性显着提高了高达30wt%的Mo含量。具有更高Fe或Mo含量的催化剂促进了CNT和CNF的形成,而具有Fe和Mo的中间载体的催化剂主要产生CNT,CNFS伴有GNSS作为杂化材料。

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