High phosphorus content in sewage sludge (SS) significantly affects the ash fusion temperature during the co-gasification of coal with SS. However
the mechanisms underlying the effects of phosphorus on the ash melting behavior remain unclear. In particular
there is no direct evidences to confirm that refractory mineral dissolution processes are affected by the phosphorus-bearing liquid phase formed during the initial stage of ash melting. In this study
different amount of calcium- and iron-phosphates were added to coal to investigate the effect of phosphorus on the coal ash fusion temperature. The phosphorus and mineral phase transformations
as well as the dissolution processes of refractory mullite particles in the phosphorus-bearing liquid phase
were determined using X-ray photoelectron spectroscopy
X-ray diffraction analysis
thermodynamic equilibrium calculations
and thermal platform microscope systems. The results indicated that the addition of 8% calcium-phosphate and iron-phosphate reduced the ash flow temperature (FT) from above 1500 °C to 1336°C and 1261 °C
respectively. The effect of iron-phosphate on the reduction of ash FT was more pronounced than that of calcium-phosphate. The phosphorus vaporization ratio increased with the temperature. Approximately 50% of phosphorus was retained in the samples to which 8% of calcium-phosphate and iron-phosphate were added at 1400 °C. Elevation of the temperatures promoted the conversion of PO
4
3-
to molten slag-dissolved P
2
O
5
. The mechanism whereby phosphorus reduces the ash FT is primarily governed by the dissolution of refractory minerals in the liquid phase formed during the initial heating stage. This dissolution process was enhanced in the presence Fe compared to that in the presence of Ca.
关键词
Keywords
references
The trial reading is over, you can activate your VIP account to continue reading.
Migration pathway of nitrogen and phosphorus in municipal sludge during three thermochemical transformation ways
Thermodynamic analysis, synthesis, characterization, and evaluation of 1-ethyl-3-methylimidazolium chloride: Study of its effect on pretreated rice husk
Optimizing energy efficiency in fluid catalytic cracking units with GA and NSGA-II: A comprehensive simulation and multi-factor analysis
Optimize the loading position of Ru doped Fe2O3-CeO2 nanospheres to enhance the low-temperature degradation performance on trichloroethylene
Temperature-dependent pyrolysis product modulation driven by thermal pretreatment of Shendong coal
相关作者
Kun Wang
Wenzheng Liang
Sheng Yao
Haifeng Lv
Cuiping Wang
Eileen Katherine Coronado-Aldana
Cindy Lizeth Ferreira-Salazar
Nubia Yineth Piñeros-Castro
相关机构
Clean Energy Laboratory, Shandong University of Science and Technology
College of Civil Engineering and Architecture, Shandong University of Science and Technology
Universidad de Bogotá Jorge Tadeo Lozano, Facultad de Ciencias Naturales e Ingeniería, Cra. 4 22-61, Cundinamarca, Bogotá
Instituto Politecnico Nacional, CICATA Queretaro, Cerro Blanco 141, Colinas del Cimatario
School of Engineering, University of Edinburgh, Edinburgh EH9 3FB, United Kingdom