Characteristic of the production of hydrogen-rich combustible gas by pyrolysis of high-ash sewage sludge

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作者
Wang, Bo [1 ]
Liu, Yinhe [1 ]
Guan, Yu [1 ]
Feng, Yiwei [1 ]
机构
[1] State Key Laboratory of Multiphase Flow in Power Engineering, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an,710049, China
关键词
Applicable conditions - Combustible gas - Energy - High-ash sewage sludge - Hydrogen-rich combustible gas - Production of hydrogen - Pyrolysis gas - Sewage sludge pyrolysis - Three phase - Three phasis;
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摘要
Pyrolysis is considered a promising way to treat sewage sludge and extract energy. This paper first studied the applicable conditions and characteristics of high-ash sewage sludge (HASS) pyrolysis to produce hydrogen-rich combustible gas. The yields and characteristics of three-phase products of pyrolysis gas, tar, and solid product of HASS were determined. The weight-loss behavior and kinetic characteristics of pyrolysis were analyzed by thermogravimetric experiment. HASS mainly decomposed at 540–901 °C and the weight loss rate was between 2.399 %⋅min−1 and 3.372 %⋅min−1. The activation energies of the main decomposition process of HASS ranged from 137.081 to 198.673 kJ⋅mol−1. Devolatilization is more likely to occur than the cracking of macromolecular organic compounds and the decomposition of minerals. Naphthalene occupies the highest proportion of tar, ranging from 18.88 to 61.15%. H2, CO2, CO, CH4 are the major components of pyrolysis gas. The H2 content and lower heating value of the hydrogen-rich combustible gas obtained by pyrolysis of HASS with a particle size of 0.15–0.18 mm at 800 °C, which is the most suitable condition for producing hydrogen-rich combustible gas, reached the highest values of 51.477% and 13.960 MJ⋅m−3, respectively. H2 is the product of cracking, decarboxylation, aromatization, and cyclization of macromolecular organic matter in the HASS. © 2021 Elsevier Ltd
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