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污水污泥与农业废弃物固定床共燃烧过程中的灰分转化,重点关注磷

Ash Transformation during Fixed-Bed Co-combustion of Sewage Sludge and Agricultural Residues with a Focus on Phosphorus.

作者信息

Falk Joel, Hannl Thomas Karl, Öhman Marcus, Hedayati Ali, Skoglund Nils

机构信息

Energy Engineering, Department of Engineering Sciences and Mathematics, Luleå University of Technology, SE-97187 Luleå, Sweden.

Thermochemical Energy Conversion Laboratory, Department of Applied Physics and Electronics, Umeå University, SE-90187 Umeå, Sweden.

出版信息

ACS Omega. 2023 Mar 31;8(14):13162-13176. doi: 10.1021/acsomega.3c00415. eCollection 2023 Apr 11.

Abstract

This work investigates the ash transformation during fixed-bed co-combustion of sewage sludge mixtures with the agricultural residues wheat straw and sunflower husks, focusing on the fate of phosphorus (P) in the resulting ash fractions. The study aims to determine suitable process parameters for fixed-bed combustion of fuels previously investigated in single-pellet experiments. The pure fuels and fuel mixtures were combusted in a 20 kW residential pellet burner while monitoring the flue gas composition, temperature, and particulate matter formation. Subsequently, the different ash fractions were collected and characterized by CHN, SEM/EDS, and XRD analysis. The results showed that co-combustion of sewage sludge and agricultural residues reduced the formation of particulate matter as well as the formation of slag. Co-combustion of sewage sludge with either agricultural residue resulted in a change in phosphate speciation, displaying higher shares of Ca and lower shares of Fe and Al in the formed orthophosphates as well as amorphous phases containing higher shares of K. The formation of K-bearing phosphates was hindered by the spatial association of P with Ca and Fe in the sewage sludge, the incorporation of available K in K-Al silicates, and the depletion of K in the P-rich melt phase. Compared to mono-combustion, co-combustion experiments showed the potential for improving the combustion performance and reducing the risk of slag formation. The outcome suggests that co-combustion is a feasible path to integrate waste streams in fixed-bed energy conversion with simultaneous formation of phosphates enabling P recovery.

摘要

这项工作研究了污水污泥与农业残留物小麦秸秆和向日葵壳在固定床共燃烧过程中的灰分转化,重点关注所得灰分中磷(P)的归宿。该研究旨在确定先前在单颗粒实验中研究过的燃料在固定床燃烧时的合适工艺参数。将纯燃料和燃料混合物在一台20千瓦的家用颗粒燃烧器中燃烧,同时监测烟气成分、温度和颗粒物形成情况。随后,收集不同的灰分并通过CHN、SEM/EDS和XRD分析进行表征。结果表明,污水污泥与农业残留物的共燃烧减少了颗粒物的形成以及炉渣的形成。污水污泥与任何一种农业残留物的共燃烧导致磷酸盐形态发生变化,在形成的正磷酸盐以及含钾量较高的非晶相中,钙的含量较高,铁和铝的含量较低。污水污泥中磷与钙和铁的空间关联、钾在钾铝硅酸盐中的掺入以及富磷熔体相中钾的消耗阻碍了含钾磷酸盐的形成。与单燃烧相比,共燃烧实验显示出改善燃烧性能和降低炉渣形成风险的潜力。结果表明,共燃烧是将废物流整合到固定床能量转换中并同时形成磷酸盐以实现磷回收的可行途径。

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