首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Effect of metal oxides on the pyrolysis residues of poly(ethylene terephthalate): Formation of carbonaceous submicron, nano-scale filaments and mesoporous compounds
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Effect of metal oxides on the pyrolysis residues of poly(ethylene terephthalate): Formation of carbonaceous submicron, nano-scale filaments and mesoporous compounds

机译:金属氧化物对聚对苯二甲酸乙二醇酯热解残留物的影响:碳质亚微米级,纳米级长丝和中孔化合物的形成

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摘要

Thermal decomposition of mixture of poly(ethylene terephthalate) (PET) and metal oxide has been investigated. Morphology of pyrolysis residues has been observed by using scanning electron microscopy. Among various oxides examined the addition of zinc oxide or trivalent rare earth oxide (Ln_2O_3) resulted in the formation of porous fibre-like structures with the diameter of ~1 μm for ZnO and ~100 nm (or thinner) for Ln_2O_3. The formation process as well as thermal decomposition behaviour has been studied by various analytical methods. The thermal decomposition of PET on single crystal ZnO indicated that the unique morphology was due to the oxygen-terminated surface of the metal oxide. Furthermore, pore structures of the carbonaceous compounds from various PET-metal oxide mixtures have been determined by nitrogen adsorption isotherm at -196℃. It was found that the carbonaceous compounds obtained from PET-Fe_2O_3 and PET-Ln_2O_3 had large mesopore volumes. This was confirmed also by the adsorption study of large molecules such as humic acid (HA).
机译:研究了聚对苯二甲酸乙二醇酯(PET)和金属氧化物的混合物的热分解。通过使用扫描电子显微镜观察到了热解残留物的形态。在检查的各种氧化物中,添加氧化锌或三价稀土氧化物(Ln_2O_3)导致形成多孔纤维状结构,其中ZnO的直径为〜1μm,Ln_2O_3的直径为〜100 nm(或更薄)。已经通过各种分析方法研究了形成过程以及热分解行为。 PET在单晶ZnO上的热分解表明独特的形态是由于金属氧化物的氧封端表面。此外,已经通过-196℃的氮吸附等温线确定了各种PET-金属氧化物混合物中含碳化合物的孔结构。发现从PET-Fe_2O_3和PET-Ln_2O_3获得的碳质化合物具有大的中孔体积。大分子(如腐殖酸(HA))的吸附研究也证实了这一点。

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