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Conceptual design of an integrated hydrothermal liquefaction and biogas plant for sustainable bioenergy production

机译:可持续生物能源生产综合设计综合水热液化与沼气厂

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摘要

Initial process studies carried out in Aspen Plus on an integrated thermochemical conversion process are presented herein. In the simulations, a hydrothermal liquefaction (HTL) plant is combined with a biogas plant (BP), such that the digestate from the BP is converted to a biocrude in the HTL process. This biorefinery concept offers a sophisticated and sustainable way of converting organic residuals into a range of high-value biofuel streams in addition to combined heat and power (CHP) production. The primary goal of this study is to provide an initial estimate of the feasibility of such a process. By adding a diesel-quality-fuel output to the process, the product value is increased significantly compared to a conventional BP. An input of 1000kgh~(-1) manure delivers approximately 30-38kgh~(-1) fuel and 38-61kgh~(-1) biogas. The biogas can be used to upgrade the biocrude, to supply the gas grid or for CHP. An estimated 62-84% of the biomass energy can be recovered in the biofuels.
机译:本文介绍了在综合热化学转化过程中的Aspen Plus中进行的初始过程研究。 在模拟中,水热液化(HTL)植物与沼气植物(BP)组合,使得来自BP的消化转化为HTL过程中的生物化。 这种生物遗料概念除了组合的热量和功率(CHP)生产外,还提供了一种复杂的有机残留物到一系列高价值生物燃料流中。 本研究的主要目标是提供对这种过程的可行性的初始估计。 通过向该过程添加柴油质量 - 燃料输出,与传统BP相比,产品值显着增加。 输入1000kgh〜(-1)粪便可提供约30-38kgh〜(-1)燃料和38-61kgh〜(-1)沼气。 沼气可用于升级生物曲线,供应气体网格或CHP。 估计在生物燃料中可以恢复62-84%的生物质能量。

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