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Highly Efficient Production of Synthesis Gas by Catalytic Gasification of Biomass at Low Reaction Temperature

机译:通过在低反应温度下催化气化通过催化气化来高效地生产合成气

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摘要

Conventional methods of biomass gasification to hydrogen and synthesis gas are carried out at high temperature. The purpose of this study is to develop a novel catalytic proceess for biomass gasification at low temperature (773-873 K) with high energy efficiency. A cellulose was used as the model compound of biomass, and the performance of our catalysts was compared with those of dolomite and non-catalytic in batch-and continuous-feeding fluidized bed reactor. In reaction tests with various catalysts, Rh/CeO_2 exhibited higher performance than other catalysts, but its deactivation was also observed during the reaction, caused by the sintering of the CeO_2 support. A commercial steam-reforming catalyst also showed high activity, but its deactivatin due to carbon deposition was observed. We also prepared Rh/CeO_2/SiO_2, which gave higher C-conversion to gas and was more stable than Rh/CeO_2. In comparison with conventional methods (dolomite, non-catalyst, Ni catalyst), it was found that the gasificiation using Rh/CeO_2/SiO_2 catalyst can give a higher yield of syntheiss gas at much lower temperature and with higher stability.
机译:在高温下进行对氢和合成气体的生物质气化的常规方法。本研究的目的是在低温(773-873K)下开发一种新型催化补充,具有高能量效率。使用纤维素作为生物质的模型化合物,并将催化剂的性能与白云石和非催化剂中的批量和连续供给流化床反应器进行比较。在具有各种催化剂的反应试验中,RH / CeO_2表现出比其他催化剂更高的性能,但在反应过程中也观察到其失活,由CEO_2载体的烧结引起。商业蒸汽重整催化剂也显示出高活性,但观察到由于碳沉积引起的其去活力。我们还制作了RH / CEO_2 / SIO_2,这给予了较高的C转换为气体,比RH / CEO_2更稳定。与常规方法(白云石,非催化剂,Ni催化剂)相比,发现使用RH / CeO_2 / SiO_2催化剂的气化可以在更低的温度和更高的稳定性下给出更高的合成气体产率。

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