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Gasification characteristics of hydrochar and pyrochar derived from sewage sludge

机译:污水污泥衍生的焦炭和焦炭的气化特性

摘要

Two types of the biochars, pyrochar and hydrochar derived from low temperature pyrolysis (LW) and hydrothermal carbonization (HTC) of sewage sludge were prepared and characterized. Their gasification properties were further experimentally evaluated. The results showed that the hydrochar was more hydrophobic than the pyrochar. The hydrochar was rich in nitrogen-containing functional groups and increased nickel, iron, alkali and alkaline earth metallic species compared to the raw sludge and pyrochar. It enhanced the interactions between the carbon surface and hydrogen bonding as well as gasification reactivity of the hydrochar, thus resulting in a higher hydrogen concentration and yield than the pyrochar under identical conditions. Additionally, the hydrochar had a more porous structure on the surface, facilitating the pores better accessible for condensable hydrocarbon molecules and thus improved the gas production and gasification efficiency. Although the energy recovery efficiency of LW-gasification method was higher than that of HTC-gasification approach, the total energy consumption during the HTC pretreatment combined with subsequent gasification was lower than the energy evolved in the corresponding product gas in most gasification conditions. This study demonstrates that the integration of HTC pretreatment and subsequent gasification has promising potential for hydrogen-rich syngas production from sewage sludge. (C) 2016 Elsevier Ltd. All rights reserved.
机译:制备并表征了污水污泥的低温热解(LW)和水热碳化(HTC)两种生物炭,即焦炭和水炭。通过实验进一步评估了它们的气化特性。结果表明,水焦炭比焦炭更疏水。与原始污泥和焦炭相比,该碳氢盐富含含氮官能团,并增加了镍,铁,碱金属和碱土金属的种类。它增强了碳表面与氢键之间的相互作用以及烃的气化反应性,因此在相同条件下比焦炭具有更高的氢浓度和产率。另外,水焦炭在表面上具有更多孔的结构,有利于可冷凝烃分子更易于进入孔,因此提高了气体产生和气化效率。虽然LW气化方法的能量回收效率高于HTC气化方法,但在大多数气化条件下,HTC预处理与后续气化相结合的总能量消耗低于相应产品气中产生的能量。这项研究表明,将HTC预处理与随后的气化相结合,有望从污水污泥中生产出富氢合成气。 (C)2016 Elsevier Ltd.保留所有权利。

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