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Catalytic Co-Pyrolysis of Waste Particle Board and Polyproplylene Over Nanoporous Al-MCM-41 Catalysts

机译:纳米多孔Al-MCM-41催化剂对废碎料板和聚丙烯的催化共热解

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摘要

Catalytic co-pyrolysis of particle board, a waste wood biomass, and polypropylene (PP), a petroleum-based plastic, was carried out with a mixing ratio of 1:1 over a representative mesoporous material, Al-MCM-41 catalyst. The Si/Al ratios of the Al-MCM-41 catalysts were controlled at 20 and 80 to investigate the effect of the acidity of the catalyst. The characterization of the catalyst was performed by X-ray diffraction, N_2 adsorption-desorption, and NH_3 temperature-programmed desorption. The catalytic pyrolysis of the particle board showed a higher yield of gas and lower yield of oil than the non-catalytic pyrolysis. In oil, the concentration of levoglucosan decreased, and those of furans, furanones, cyclopentanones, aromatics, and light phenolics increased. In the case of the co-pyrolysis of the particle board and PP, C_(10)-C_(17) products corresponding to the diesel range greatly increased and resulted in an improvement of the bio-oil quality. This suggests that PP is decomposed on the acidic sites of the Al-MCM-41 catalyst, resulting in an increased production of hydrocarbons in the range of diesel.
机译:在代表性的介孔材料Al-MCM-41催化剂上,以1:1的混合比进行了刨花板,废木材生物质和聚丙烯(PP)(石油基塑料)的催化共热解。将Al-MCM-41催化剂的Si / Al比控制在20和80,以研究催化剂酸度的影响。通过X射线衍射,N_2吸附-脱附和NH_3程序升温脱附对催化剂进行表征。刨花板的催化热解比非催化热解显示出更高的气体产率和更低的油产率。在油中,左旋葡聚糖的浓度降低,呋喃,呋喃酮,环戊烷,芳烃和轻质酚类的浓度升高。在刨花板和PP共同热解的情况下,对应于柴油范围的C_(10)-C_(17)产物大大增加,从而改善了生物油的质量。这表明PP在Al-MCM-41催化剂的酸性位点上分解,导致柴油范围内碳氢化合物的产量增加。

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