Universidade Federal do Rio Grande do Norte, Laboratório de Tecnologia Ambiental, Natal, RN 59078-970, Brazil.
Universidade Federal do Rio Grande do Norte, Laboratório de Tecnologia Ambiental, Natal, RN 59078-970, Brazil; Universidade Federal do Rio Grande do Norte, PPGCEM, Natal, RN 59078-970, Brazil.
Waste Manag. 2019 Apr 1;88:347-355. doi: 10.1016/j.wasman.2019.03.052. Epub 2019 Mar 30.
The influence of reactor temperature of 300 and 600 °C and the acidity of the ZSM-5 and HZSM-5 catalysts on the pyrolysis product yields of the pineapple crown leaves have been investigated in a fixed bed reactor Py-GC/MS. The ZSM-5 catalyst was hydrothermally synthesized with a Si/Al ratio 50, using residual diatomite and rice husk ash as alternative sources of Al and Si for catalyst cost reduction. For the HZSM-5 synthesis, calcined ZSM-5 was activated by ion exchange between Na and H. The catalysts structure was confirmed by the XRD and Rietveld treatment, SEM, FTIR, FRX, TGA and BET results. Analytical pyrolysis of the biomass was carried out at 500 °C in a Py-5200 HP-R pyrolyzer connected to the GC/MS and the pyrolysis vapors were transported to a catalytic bed at 300 and 600 °C. The results showed that the increase in the catalytic bed temperature promoted increased the aromatic content. The main pyrolysis products of the PCL were oxygenated compounds that were converted at 600 °C using the HZSM-5 catalyst into high value renewable aromatic compounds for the chemical industry, such as benzene, toluene, xylene, etilbenzene, thereby confirming the deoxygenation activity of synthesized catalyst to produce renewable aromatics compounds which are important platform chemicals and precursors for jet fuels, gases, polymers and solvents.
在固定床反应器 Py-GC/MS 中研究了 300°C 和 600°C 的反应器温度以及 ZSM-5 和 HZSM-5 催化剂的酸度对菠萝冠叶热解产物产率的影响。ZSM-5 催化剂采用 Si/Al 比为 50 的水热合成方法,使用硅藻土和稻壳灰作为替代 Al 和 Si 的来源,以降低催化剂成本。对于 HZSM-5 的合成,用 Na 和 H 之间的离子交换对煅烧后的 ZSM-5 进行了活化。通过 XRD 和 Rietveld 处理、SEM、FTIR、FRX、TGA 和 BET 结果证实了催化剂的结构。在 Py-5200 HP-R 热解器中于 500°C 对生物质进行分析性热解,并用 GC/MS 将热解蒸气传输到 300°C 和 600°C 的催化床。结果表明,催化床温度的升高促进了芳香族含量的增加。PCL 的主要热解产物是含氧化合物,使用 HZSM-5 催化剂在 600°C 下转化为高价值的可再生芳香族化合物,用于化学工业,如苯、甲苯、二甲苯、乙苯等,从而证实了合成催化剂的脱氧活性可产生可再生的芳香族化合物,这些化合物是喷气燃料、气体、聚合物和溶剂的重要平台化学品和前体。