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A new process concept for highly efficient conversion of sewage sludge by combined fermentation and gasification and power generation in a hybrid system consisting of a SOFC and a gas turbine

机译:通过混合发酵,气化和发电在由SOFC和燃气轮机组成的混合系统中高效转化污水污泥的新工艺概念

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Sewage sludge can be disposed of by fermentation, incineration or gasification. Conversion of the resulting biogas, combustion heat or gasification gas into electricity is often employed. Since sewage sludge cannot be fermented completely and due to the significant heat requirements for drying it in the incineration plant or before the gasifier, the electrical output in all cases is very low. Consequently, this work seeks to investigate a combination of fermentation and gasification in which dried fermentation waste is converted in a gasifier. With the aim of combining these two biomass conversion processes with power generation in an efficient manner, a hybrid system consisting of a SOFC and a gas turbine is investigated. This combination of a biogas plant and a gasifier has the advantage that waste heat can be used as a heat source in drying the fermentation waste. Another advantage is the combined conversion of biogas and gasification gas in the SOFC. As steam from gasification gas is used for internal reforming of methane out of biogas at the anode of the SOFC, the complexity of the plant is reduced and the efficiency is increased. A configuration including a pressurized gasification process was identified as most efficient in terms of electrical output. (C) 2015 Elsevier Ltd. All rights reserved.
机译:污水污泥可通过发酵,焚化或气化处理。通常采用将产生的沼气,燃烧热或气化气转化为电的方法。由于污水污泥无法完全发酵,并且由于在焚化厂或气化炉中将其干燥需要大量热量,因此在所有情况下的电输出都非常低。因此,这项工作试图研究发酵与气化的结合,其中干燥的发酵废物在气化炉中转化。为了有效地将这两个生物质转化过程与发电相结合,研究了由SOFC和燃气轮机组成的混合系统。沼气厂和气化炉的这种结合具有的优点是,废热可以用作干燥发酵废料的热源。另一个优势是SOFC中沼气和气化气的联合转化。由于来自气化气的蒸汽用于在SOFC的阳极内部从沼气中重整甲烷,因此降低了设备的复杂性并提高了效率。就电力输出而言,包括加压气化过程的配置被认为是最有效的。 (C)2015 Elsevier Ltd.保留所有权利。

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