石炭科学会議発表論文集
Online ISSN : 2423-8309
Print ISSN : 2423-8295
ISSN-L : 2423-8295
最新号
選択された号の論文の40件中1~40を表示しています
開催案内・プログラム
招待講演・特別講演
研究発表
ガス化・燃焼・液化、バイオマス
  • 鄭 振傑, 義家 亮, 植木 保昭, 成瀬 一郎
    p. 2-3
    発行日: 2023/10/24
    公開日: 2023/11/15
    会議録・要旨集 認証あり

    As the hydrogen enrichment operation is being considered in the blast furnace to reduce the CO2 emissions. Since the ash behavior of coke is one of the factors that deteriorate the permeability and stability in the blast furnace, it is important to understand the degradation behavior of coke during the H2O gasification process. In this study, in order to find the effect of temperature on degradation behavior between CO2 gasification and H2O gasification, gasification experiments were conducted in CO2 and H2O atmospheres at different temperatures in 20% reaction ratio. Moreover, to investigate the pore behavior, we used the SEM to observe the cross-section of cokes.

  • 李 泰霖, 中村 真季, 上原 友輔, 町田 洋, 則永 行庸
    p. 4-5
    発行日: 2023/10/24
    公開日: 2023/11/15
    会議録・要旨集 認証あり

    Substituting air with either CO2 or H2O in the gasifying agents presents a viable strategy for promptly integrating a carbon-neutral energy vector into coal gasification technology, concurrently mitigating harmful particulate matter emissions. However, fully understanding the evolution of tar in the practical gasifier has proven to be challenging owing to complex mixture of the scale of reactors. This study presents a detailed kinetic investigation of tar and soot formations from the gas-phase reactions in the reductor of a two-stage entrained flow coal gasifier under oxy-fuel (O2/CO2, O2/H2O) atmospheres. The effects of temperature and coal types were studied. The results show that benzene, followed by naphthalene and phenanthrene, serves as the primary tar products. Higher temperature promotes tar reduction, especially under O2/H2O condition. Moreover, soot yield under the O2/H2O condition is less than that under the O2/CO2 condition owing to weaker hydrogen abstraction acetylene addition route. Soot yield decreases with the temperature rises. This work provides valuable insights and guidance for the reduction of tar and soot in the two-stage entrained flow coal gasifier under oxy-fuel atmospheres.

  • 桐生 渚嵯, 王 青躍, 王 偉倩
    p. 6-7
    発行日: 2023/10/24
    公開日: 2023/11/15
    会議録・要旨集 認証あり

    There is growing interest in the use of waste woody biomass as an alternative fuel to coal, because of its carbon neutral as an effective use of waste resources. To compensate for the low calorific value of biomass resources, we focused on biochar prepared by the lower-temperature pyrolysis. As the results, the calorific values and combustion conditions were improved to the same level as the used coal. Furthermore, the emissions of toxic polycyclic aromatic hydrocarbons (PAHs) in PM2.5 and PM10 emitted during coal combustion were found higher than those of biochar. In the future, we would like to quantitatively evaluate PAHs generated in the entire processes, including during biochar preparation.

  • 末澤 諒, 義家 亮, 成瀬 一郎, 植木 保昭, 岡 高憲
    p. 8-9
    発行日: 2023/10/24
    公開日: 2023/11/15
    会議録・要旨集 認証あり

    In recent large-scale pulverized coal-fired power plants, the co-firing of biomass fuels is being promoted to reduce carbon dioxide emissions per unit of power generation. One of the issues related to the biomass co-firing is the deposition and agglomeration of trace components in the boiler. In this study, we focused on silicon compounds as trace components that affect the combustion process. Silicon compounds are simultaneously combusted with biomass fuels, leading to the formation of silica particles, which can adhere to combustion boilers and cause performance deterioration, as well as contribute to atmospheric pollution as particles smaller than PM2.5. Therefore, countermeasures are necessary. The aim of this study is to investigate the combustion characteristics of organic silicon compounds and the behavior of silica particle formation within a pulverized coal combustion boiler. Siloxane, which is might be considered as one of the trace components in biomass, is used as a substitute for silicon compounds, and combustion experiments are conducted using a Drop Tube Furnace (DTF). The analysis of the generated particles provides insights into the formation behavior of silica particles under combustion conditions. When siloxane was combusted using the DTF (Drop Tube Furnace) apparatus, it resulted in the formation of primary particles consisting of white silica particles with amorphous structures at the nanoscale or below.

バイオマス、物性、カーボンリサイクル
熱分解・コークス1
灰・微量元素
熱分解・コークス2
構造・物性
ガス化・燃焼・液化1
  • CO2分離・回収型酸素吹石炭ガス化燃料電池複合発電実証事業
    中川 奈那美, 岡田 雄馬, 櫨木 健太, 南舘 正憲
    p. 42-43
    発行日: 2023/10/24
    公開日: 2023/11/15
    会議録・要旨集 認証あり

    Osaki-CoolGen Project, which was complex three-phase demonstration project, aimed to achieve ultimately efficient coal-fired power generation with near-zero emissions by integrating oxygen-blown Integrated Coal Gasification Combined Cycle (IGCC) - carbon capture technology with fuel cells. In the first phase we verified the basic performance of IGCC. In the 2nd phase and 3rd phase we verified the performance of IGCC with CO2 Capture and confirmed the prospect of Integrated Coal Gasification Fuel Cell Combined Cycle (IGFC) in March 2023.

  • 加藤 貴宏, 大川 浩一, 菅原 勝康
    p. 44-45
    発行日: 2023/10/24
    公開日: 2023/11/15
    会議録・要旨集 認証あり

    To develop a technology to promote plant growth in salt-affected environments, humic acids were prepared from a peat and a biomass (sugarcane leaf), and the plant growth-improving effect of the obtained humic acids were confirmed by hydroponic cultivation of Arabidopsis thaliana. The original sugarcane leaf contains small amounts of humic acid-like substances, and humic acids were generated by hydrothermally treating the leaf in acidic and alkaline aqueous solutions. Addition of humic acids derived from peat and hydrothermal treated sugarcane leaf significantly recovered the germination ratio and root growth of Arabidopsis thaliana in the presence of NaCl. It was confirmed that humic acid derived from hydrothermally treated sugarcane leaf is more effective in reducing the stress that plants receive from NaCl than humic acid derived from peat.

ガス化・燃焼・液化2
灰・微量元素、その他
バイオマス1
バイオマス2
バイオマス3
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