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Investigation of Ash-Related Problem on Sequential Feeding Method for Coal Co-Combustion in Drop Tube Furnace
被引:1
|作者:
Ghazidin, Hafizh
[1
]
Ruhiyat, Ade Sana
[1
]
Purawiardi, Raden Ibrahim
[1
]
Adelia, Nesha
[1
]
Prayoga, Moch Zulfikar Eka
[1
]
Suyatno, Suyatno
[1
]
Putra, Hanafi Prida
[1
]
Adiarso, Adiarso
[1
]
Sigit, Romadhoni
[2
]
Darmawan, Arif
[1
]
Arifin, Zainal
[3
,4
]
Hariana, Hariana
[1
,5
]
机构:
[1] Natl Res & Innovat Agcy, South Tangerang, Indonesia
[2] PT PLN Indonesia Power, South Jakarta, Indonesia
[3] PLN Inst Technol, West Jakarta, Indonesia
[4] PT PLN Persero, South Jakarta, Indonesia
[5] Natl Res & Innovat Agcy, South Tangerang 15314, Indonesia
关键词:
Coal blending;
slagging-fouling;
combustion;
ash deposit;
sequential feeding;
MINERAL PHASE-TRANSFORMATION;
SLAGGING CHARACTERISTICS;
FOULING INDICATORS;
BLENDING METHOD;
COMBUSTION;
BIOMASS;
BEHAVIOR;
DEPOSITION;
RICH;
ADDITIVES;
D O I:
10.1080/00102202.2023.2258446
中图分类号:
O414.1 [热力学];
学科分类号:
摘要:
In this study, sequential feeding method was conducted due to some coal-fired power plants not being equipped by coal blending facility. Its effect on ash-related problem was investigated using drop tube furnace combustion test and ash particle observation method. AUS coal (low-slagging risk sample) and KT coal (high-slagging risk sample) were used to obtain AK-1 coal and AK-2 coal. AK-1 coal was a coal sample of out-furnace blending method, while AK-2 coal was coal sample of sequential feeding method. AK-1 probe tended to be more similar to AUS coal with only a small spot of ash attached on the probe surface. Meanwhile, AK-2 probe had more ash attached on the probe surface, indicating more severe slagging than AK-1 probe. According to ash morphology, the result indicated that the upper layer of slag tended to be more similar to AUS coal ash, while initial layer of slag of AK-2 coal contained more KT coal ash. Based on ash mineralogy, sodium in AK-2 coal was distributed evenly which was different with AK-1 coal. This result shows that sequential feeding method is not applicable to reduce slagging and fouling risk of KT coal.
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