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携带流燃烧器中木质生物质燃烧过程中灰分形成元素的归宿与析出的建模及评估

Modeling and Evaluation of Ash-Forming Element Fate and Occurrence in Woody Biomass Combustion in an Entrained-Flow Burner.

作者信息

Meka Wahyu, Szuhanszki Janos, Finney Karen, Gudka Bijal, Jones Jenny, Pourkashanian Mohamed, Fennell Paul S

机构信息

Department of Chemical Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, England, United Kingdom.

Energy 2050, Department of Mechanical Engineering, University of Sheffield, Sheffield S1 3JD, United Kingdom.

出版信息

ACS Omega. 2022 May 4;7(19):16306-16322. doi: 10.1021/acsomega.1c06445. eCollection 2022 May 17.

Abstract

Biomass combustion equipment is often susceptible to ash deposition due to the relatively significant quantities of potassium, silicon, and other ash-forming elements in biomass. To evaluate the propensity for ash deposition resulting from biomass combustion, a biomass combustion model was integrated with a chemical equilibrium model to predict the fate and occurrence of ash-forming elements in a pilot-scale entrained-flow burner. The integrated model simulated the combustion of white wood (virgin wood) and recycled wood (treated wood) previously combusted in the burner. The key advantage of this model in comparison to a model with general equilibrium assumed is that it was able to consider the rate of release of trace and minor species with time, the local equilibrium in the particles, and separately, that in the continuum phase (which also included any solid or liquid materials nucleating). The simulation generated the fate and occurrence profiles of each ash-forming element along the burner. The qualitative comparisons between the modeled profiles and the previous experimental findings under similar operating conditions show reasonable agreement. The concentrations of ash-forming elements released from the burner were also compared with the experimental online inductively coupled plasma readings. However, the latter comparison shows overestimation using the modeled results and might suggest that further considerations of other parameters such as ash nucleation and coagulation are required. Nonetheless, based on the ongoing performance of the integrated model, future use of the model might be expanded to a broader range of problematic solid fuels such as herbaceous biomass or municipal solid waste.

摘要

生物质燃烧设备由于生物质中钾、硅和其他成灰元素的含量相对较高,常常易受积灰影响。为了评估生物质燃烧导致积灰的倾向,将一个生物质燃烧模型与一个化学平衡模型相结合,以预测中试规模的气流床燃烧器中成灰元素的归宿和出现情况。该集成模型模拟了此前在燃烧器中燃烧的白木(原生木材)和再生木材(处理过的木材)的燃烧过程。与假定一般平衡的模型相比,该模型的关键优势在于它能够考虑痕量和微量物种随时间的释放速率、颗粒中的局部平衡,以及连续相(其中也包括任何成核的固体或液体材料)中的局部平衡。模拟生成了每个成灰元素沿燃烧器的归宿和出现情况分布图。在相似运行条件下,对模拟分布图与先前实验结果进行的定性比较显示出合理的一致性。还将燃烧器释放的成灰元素浓度与实验在线电感耦合等离子体读数进行了比较。然而,后一种比较表明使用模拟结果存在高估情况,这可能意味着需要进一步考虑其他参数,如灰分成核和凝聚。尽管如此,基于集成模型目前的性能,该模型未来的应用可能会扩展到更广泛的有问题的固体燃料,如草本生物质或城市固体废物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f94/9118428/75a7f9255591/ao1c06445_0002.jpg

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