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Experimental study on the coupling effects of feedstock properties and catalyst type on the distribution of phosphorus and nitrogen during hydrothermal conversion of municipal sewage sludge into liquid biofuels

  • Wioleta Basa
  • , Magdalena Pankiewicz-Sperka
  • , Aleksandra Strugała-Wilczek*
  • , Donghai Xu
  • , Peigao Duan
  • , Botian Hao
  • , Yuanyuan Wang
  • , Lijian Leng
  • , Le Yang
  • , Liangliang Fan
  • , Krzysztof Kapusta
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The role of catalysts in the hydrothermal liquefaction (HTL) process has already been established in the literature, but it is largely considered in the context of process efficiency and bio-oil quality, without attempting to determine their effect on the redistribution of some essential biogenic elements. The study involved HTL batch conversion of two selected municipal sewage sludge samples (MSS1 and MSS2) of different origin and characteristics. The experimental campaign involved 12 HTL runs for each MSS. Both homogeneous catalysts, i.e. Na2CO3, Li2CO3, K2CO3 and Ba(OH)2 and selected heterogeneous catalysts, i.e. Fe2O3, CeO2, NiO/MoO3/Al2O3 (Ni-Mo), MoS2, Ni/NiO/Al2O3 (Ni-Ni), SnO2 and FeS were used in the study. HTL process was executed under subcritical conditions (350 °C) for a 30 min residence time and in an inert atmosphere of nitrogen. Investigating the coupling effects of feedstock compositions and catalyst type on the distribution and migration pathways of phosphorus (P) and nitrogen (N) into liquid (bio-oil), solid (char) and aqueous HTL fractions was the main objective of the study. The results confirmed almost complete migration of P into solids (94.62–99.51 % for MSS1 and 96.04–99.92 % for MSS2) and, to a large extent, migration of N into the aqueous phase (76.99–82.47 % for MSS1 and 68.07–77.86 % for MSS2) over the entire range of the catalysts used. The coupling effects of the HTL feedstock and catalyst on the distribution of the studied biogenic elements were proven.

源语言英语
文章编号108833
期刊Biomass and Bioenergy
208
DOI
出版状态已出版 - 5月 2026

联合国可持续发展目标

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    可持续发展目标 7 经济适用的清洁能源
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