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首页> 外文期刊>Waste and biomass valorization >Assessment of the Behaviour of a Commercial Gasification Plant During Load Modulation and Feedstock Moisture Variation
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Assessment of the Behaviour of a Commercial Gasification Plant During Load Modulation and Feedstock Moisture Variation

机译:商业化气化装置在负荷调节和原料水分变化过程中的行为评估

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Fixed-bed biomass gasification coupled with internal combustion engines allows an efficient exploitation of biomass for the combined production of heat and power (CHP) at small scale with increased economic viability with respect to combustion-based CHP systems. The main barrier on the way towards a wider market distribution is represented by the fact that a robust practical operation of state-of-the-art fixed-bed biomass gasification systems is limited to very specific fuel properties and steady-state operation. The aim of this work is twofold. On the one hand, it presents the results of a series of test runs performed in a monitored commercial plant under different process conditions, in order to assess its behaviour during load modulation and fuel property variations. On the other hand, an in-house developed thermodynamic equilibrium model was applied to predict the behaviour of the gasification reactor. This gasification model could be used for the development of a model-based control strategy in order to increase the performance of the small-scale gasification system. To assess the general operational behaviour of the whole gasification system an experimental one-week-long test run has been performed by BIOENERGY 2020+ and the Free University of Bozen-Bolzano as round robin test. The plant has been tested under different operating conditions, in particular, varying the load of the engine and the moisture content of the feedstock. The outcomes shown in the present work provide a unique indication about the behaviour of a small-scale fix-bed gasifier working in conditions different from the nominal ones.
机译:与基于燃烧的热电联产系统相比,固定床生物质气化与内燃机相结合,可以有效利用生物质进行小规模的热电联产(CHP),并具有更高的经济可行性。走向更广泛的市场分布的主要障碍是以下事实:最先进的固定床生物质气化系统的强大实用操作仅限于非常特定的燃料特性和稳态操作。这项工作的目的是双重的。一方面,它介绍了在受监视的商业工厂中不同过程条件下进行的一系列测试运行的结果,以便评估其在负载调制和燃料特性变化期间的行为。另一方面,内部开发的热力学平衡模型被用于预测气化反应器的行为。该气化模型可用于开发基于模型的控制策略,以提高小型气化系统的性能。为了评估整个气化系统的一般操作行为,BIOENERGY 2020+和博森-博尔扎诺自由大学进行了为期一周的实验性循环试验。该设备已在不同的运行条件下进行了测试,尤其是改变了发动机的负载和原料的水分含量。当前工作中显示的结果提供了关于在不同于标称条件的条件下工作的小型固定床气化炉性能的独特指示。

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