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Physico-chemistry of biochars produced through steam gasification and hydro-thermal gasification of canola hull and canola meal pellets

机译:双低油菜籽壳和双低菜籽粕的蒸汽气化和水热气化产生的生物炭的物理化学

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摘要

This research work was focused on the evaluation of chemical and physical properties for biochars obtained using hydro-thermal and steam gasification of biomass pellets produced from canola hull and canola meal. Van Krevelen plot showed the lignite-like characteristics for these biochars. For hydro-thermal gasification, X-ray diffraction, Raman, and thermogravimetric results showed incomplete depolymerization of cellulose structure of biomass at low temperatures. Thermogravimetric analysis and Raman analysis indicated complete destruction of cellulose structure and development of aromatic structure for temperatures = 550 degrees C. For steam gasification, X-ray photoelectron spectroscopy C1s scan results showed the aromatic/aliphatic carbon contents of biochars larger than 69% for all gasification operating conditions. Biochars prepared using steam gasifictaion showed more cracked surface and larger porous characteristics compared to biochars prepared using hydro-thermal gasification. The development of aromatic structures in biochars was found in the case of all levels of operating conditions during steam gasification, and at high temperatures in the case of hydro-thermal gasification. The biochars produced by gasification showed the same O/C atomic ratio, larger H/C atomic ratio, lower compact aromatic structure development, and relatively higher ash content compared to the conventional biochars produced by pyrolysis.
机译:这项研究工作的重点是对使用油菜籽壳和油菜粕生产的生物质颗粒进行水热和蒸汽气化获得的生物炭的化学和物理性能评估。 Van Krevelen曲线显示了这些生物炭的褐煤状特征。对于水热气化,X射线衍射,拉曼和热重分析结果表明,低温下生物质的纤维素结构不完全解聚。热重分析和拉曼分析表明,温度> = 550摄氏度时,纤维素结构被完全破坏,芳族结构发展。对于蒸汽气化,X射线光电子能谱C1s扫描结果表明,生物炭中芳烃/脂肪族碳含量大于69%。所有气化操作条件。与使用水热气化制备的生物炭相比,使用蒸汽气化制备的生物炭显示出更多的破裂表面和更大的多孔性。在蒸汽气化过程中所有水平的操作条件下,以及在水热气化情况下的高温下,都发现了生物炭中芳香结构的发展。气化生产的生物炭与热解生产的传统生物炭相比,具有相同的O / C原子比,较大的H / C原子比,较低的致密芳族结构发展和相对较高的灰分含量。

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