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Characterization and evaluation of Ni/SiO catalysts for hydrogen production and tar reduction from catalytic steam pyrolysis-reforming of refuse derived fuel

机译:表征和评价Ni / siO催化剂的制氢和焦油减少催化蒸汽热解 - 垃圾衍生燃料的重整

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摘要

A series of Ni/SiO catalysts have been prepared and investigated for their suitability for hydrogen production and tar reduction in a two-stage pyrolysis-reforming system, using refuse derived fuel (RDF) as the raw material. Experiments were conducted at a pyrolysis temperature of 600°C, and a reforming temperature of 800°C. The product gases were analysed by gas chromatography (GC) and the condensed fraction was collected and quantified using gas chromatography-mass spectrometry (GC-MS). The effects of the catalyst preparation method, nickel content and the addition of metal promoters (Ce, Mg, Al), were investigated. Catalysts were characterised using BET surface area analysis, temperature programmed oxidation (TPO), and scanning electron microscopy (SEM). The TPO and SEM analysis of the reacted catalysts showed that amorphous type carbons tended to be deposited over the Ni/SiO catalysts prepared by impregnation, while filamentous type carbons were favoured with the sol-gel prepared catalysts. The influence of catalyst promoters (Ce, Mg, Al) added to the Ni/SiO catalyst prepared by the sol-gel method was found not to be significant, as the H production was not increased and the tar formation was not reduced with the metal-added catalyst. The highest H concentration of 57.9vol.% and lower tar amount produced of 0.24mg/g; were obtained using the 20wt.% Ni/SiO catalyst prepared by sol-gel. On the other hand a low catalytic activity for H production and higher tar produced were found for the impregnated series of catalysts, which might be due to the smaller surface area, pore size and due to the formation of amorphous carbons on the catalyst surface. Alkenes and alcohol functional groups were mainly found in the analysed tar samples, with major concentrations of styrene, phenol, indene, cresols, naphthalene, fluorene, and phenanthrene.
机译:制备了一系列Ni / SiO催化剂,并以垃圾衍生燃料(RDF)为原料,研究了它们在两级热解重整系统中对氢气生产和焦油还原的适用性。在600℃的热解温度和800℃的重整温度下进行实验。通过气相色谱法(GC)分析产物气体,并使用气相色谱-质谱法(GC-MS)收集冷凝的级分并定量。研究了催化剂制备方法,镍含量和添加金属促进剂(Ce,Mg,Al)的影响。使用BET表面积分析,程序升温氧化(TPO)和扫描电子显微镜(SEM)表征催化剂。经反应的催化剂的TPO和SEM分析表明,非晶态碳倾向于沉积在通过浸渍制备的Ni / SiO催化剂上,而丝状碳则倾向于由溶胶-凝胶制备的催化剂。发现添加到通过溶胶-凝胶法制备的Ni / SiO催化剂中的催化剂促进剂(Ce,Mg,Al)的影响不显着,因为金属不会增加H的生成并且不会减少焦油的形成。加催化剂。最高H浓度为57.9vol。%,焦油量较低,为0.24mg / g;使用通过溶胶-凝胶制备的20wt。%的Ni / SiO催化剂获得了Pt。另一方面,对于浸渍的系列催化剂,发现产生的H的催化活性低而产生的焦油更高,这可能是由于较小的表面积,孔径和在催化剂表面形成无定形碳所致。烯烃和醇官能团主要存在于分析的焦油样品中,主要浓度为苯乙烯,苯酚,茚,甲酚,萘,芴和菲。

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