4.5 Article

Influence of phosphorus on ash fouling deposition of hydrothermal carbonization sewage sludge fuel via drop tube furnace combustion experiments

期刊

JOURNAL OF THE ENERGY INSTITUTE
卷 93, 期 6, 页码 2399-2408

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.joei.2020.07.014

关键词

Phosphorus; Hydrothermal carbonization; Sewage sludge solid fuel; Fouling

资金

  1. Global Infrastructure Program through the National Research Foundation of Korea (NRF) - Ministry of Science and ICT [NRF-2018K1A3A1A61025892]
  2. National Research Foundation of Korea (NRF) - Korea Government (MSIT) [NRF-2017R1A2B1004835]

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Phosphorus effect on ash fouling deposition produced during combustion process of sewage sludge solid fuel is a very important factor. Previous studies have only focused on decrease of the ash melting temperature and increase of slagging and sintering by phosphorus content. Therefore, research regarding combustion fouling formation and its effect on temperature reduction of deposit surface by phosphorus content is insufficient. Ash fouling is an important factor, because ash in the combustion boiler process deposits on the surface of heat exchanger and interferes with heat exchange efficiency. In particular, temperature reduction of heat exchanger surface via fouling should be considered together with fouling deposition, because this is related to the heat exchanger efficiency. Synthetic ash, phosphorus vaporization, and drop tube furnace experiments were performed to investigate effect of phosphorus on ash fouling formation and temperature reduction of deposit surface under combustion condition. Phosphorus was highly reactive and reacted with ash minerals to produce mineral phosphate, which promoted ash fouling deposition during the combustion experiments. In contrast, the occurrence of sintering on deposited fouling resulted in formation of a large hollow structure, which alleviated the temperature reduction on the deposit surface. Phosphorus content had a substantial correlation with fouling deposition behavior and influenced reduction in the surface temperature of the heat exchanger, because it led to generating low temperature mineral phases. (C) 2020 Energy Institute. Published by Elsevier Ltd. All rights reserved.

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