Investigation of Ash-Related Problem on Sequential Feeding Method for Coal Co-Combustion in Drop Tube Furnace

被引:3
|
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.
引用
收藏
页码:5335 / 5354
页数:20
相关论文
共 44 条
  • [31] Ash characteristics investigation from co-firing of Calliandra calothyrsus and Gliricidia sepium with a high-sulfur and-iron coal in drop tube furnace
    Putra, Hanafi Prida
    Suyatno, Suyatno
    Kusmiyati, Kusmiyati
    Putera, Andreas Diga Pratama
    Kuswa, Fairuz Milkiy
    Prayoga, Moch Zulfikar Eka
    Fariza, Oni
    Widjajanto, Teguh
    Indarto, Rachmanoe
    Hariana, Hariana
    BIORESOURCE TECHNOLOGY, 2024, 413
  • [32] Experimental Investigation of the Ash Deposition Characteristics of Biomass Pretreated by Ash Removal during Co-Combustion with Sub-Bituminous Coal
    Lee, Dae-Gyun
    Ku, Min-Jong
    Kim, Kyeong-Ho
    Kim, Jae-Sung
    Kim, Seung-Mo
    Jeon, Chung-Hwan
    ENERGIES, 2021, 14 (21)
  • [33] Investigation of ash fusion characteristics on co-combustion of coal and biomass (straw, sludge, and herb residue) based on experimental and machine learning method
    Lei, Ming
    Han, Hui
    Tian, Xi
    Zhang, Lei
    Zhang, Qian
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2024, 31 (06) : 8467 - 8482
  • [34] Mitigation of ash deposition problem during co-combustion of coal and refuse-derived fuel using aluminium-rich anti-slagging additives
    Hariana, Hariana
    Prismantoko, Adi
    Ghazidin, Hafizh
    Ruhiyat, Ade Sana
    Suhendra, Nandang
    Darmawan, Arif
    Juangsa, Firman Bagja
    Indarto, Rachmanoe
    Wang, Yibin
    Aziz, Muhammad
    JOURNAL OF THE ENERGY INSTITUTE, 2025, 120
  • [35] Investigation on the ash characteristics and AAEM migration during co-combustion of Zhundong coal and shale char in a fixed bed
    Lu, Yang
    Cao, Ran
    Huang, Dongwei
    Cui, Zhenni
    Wang, Ying
    Zhang, Yongfa
    FUEL, 2022, 327
  • [36] Effect of biomass/coal co-firing and air staging on NOx emission and combustion efficiency in a drop tube furnace
    Wang, Xuebin
    Hu, Zhongfa
    Deng, Shuanghui
    Xiong, Yingying
    Tan, Houzhang
    INTERNATIONAL CONFERENCE ON APPLIED ENERGY, ICAE2014, 2014, 61 : 2331 - 2334
  • [37] Ash Deposit Shedding during Co-combustion of Coal and Rice Hull Using a Digital Image Technique in a Pilot-Scale Furnace
    Zhou, Hao
    Zhang, Hailong
    Li, Letian
    Zhou, Bin
    ENERGY & FUELS, 2013, 27 (11) : 7126 - 7137
  • [38] Investigation of ash fusion characteristics on co-combustion of coal and biomass (straw, sludge, and herb residue) based on experimental and machine learning method
    Ming Lei
    Hui Han
    Xi Tian
    Lei Zhang
    Qian Zhang
    Environmental Science and Pollution Research, 2024, 31 : 8467 - 8482
  • [39] The mineralogy, morphology and sintering characteristics of ash deposits on a probe at different temperatures during combustion of blends of Zhundong lignite and a bituminous coal in a drop tube furnace
    Li, Jianbo
    Zhu, Mingming
    Zhang, Zhezi
    Zhang, Kai
    Shen, Guoqing
    Zhang, Dongke
    FUEL PROCESSING TECHNOLOGY, 2016, 149 : 176 - 186
  • [40] Investigation on co-combustion of coal gasification fine ash and raw coal blends: Thermal conversion, gas pollutant emission and kinetic analyses
    Li, Jiawei
    Fan, Subo
    Zhang, Xuyang
    Chen, Zhichao
    Qiao, Yanyu
    Yuan, Zhenhua
    Li, Zhengqi
    ENERGY, 2022, 246