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Catalytic influence of mineral compounds on the reactivity of cellulose-derived char in O_2-, CO_2-, and H_2O-containing atmospheres

机译:矿物化合物对O_2-,CO_2-和H_2O型大气中纤维素衍生炭反应性的催化作用

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摘要

The catalytic effects of mineral compounds on the conversion of a biomass-derived char in air- and oxyfuel-related atmospheres were investigated by thermogravimetric analysis at atmospheric pressure. The applied char originated from the hydrothermal carbonization (HTC) of cellulose followed by pyrolysis at 1073 K and subsequent mixing with 20 wt% of minerals by grinding to achieve tight contact. The reactivities of the mineral-loaded HTC chars were evaluated based on isothermal experiments in O-2-, CO2-, and H2O-containing atmospheres as a function of their composition applying a magnetic suspension balance. The reactivity sequence K2CO3 Na2CO3 Fe2O3 CaO MgO = mineral-free was derived consistently for char oxidation in O-2/inert as well as for char gasification in diluted H2O and CO2 mixtures. In addition to this qualitative assessment, the kinetic experiments were first modelled based on a simple global nth-order power-law rate expression. Then, the more complex Carbon Burnout Kinetics (CBK/G) model and the PoliMi model were applied. All three modeling approaches enabled a systematic quantification of the catalytic effects and led to a comparable lowering in the apparent activation energy. In combination with the kinetic parameters determined for the mineral-free char, the lowered apparent activation energies specific for the applied mineral and atmosphere facilitate the implementation of catalytic effects on the conversion of biomass-derived char into combustion models.
机译:在大气压下,通过热重分析研究了矿物化合物对空气和氧荷氟脲相关氛围中的生物质衍生炭转化的催化作用。所施加的炭源自纤维素的水热碳化(HTC),然后通过研磨以磨削致密接触,在1073k下热解,随后与20wt%的矿物混合。根据其组合物施加磁悬浮平衡,基于O-2 - ,CO 2和H 2 O的大气中的等温实验评估矿物负载HTC符号的反应性。反应性序列K 2 CO 3> Na 2 CO 3 Fe 2 O 3> CaO> MgO> =始终如一地衍生出矿物质氧化在O-2 /惰性的炭氧化以及稀释的H2O和CO 2混合物中的炭气化。除了这种定性评估之外,首先基于简单的全球Nth阶幂律速率表达式建模动力学实验。然后,应用了更复杂的碳燃尽动力学(CBK / G)模型和POPIMI模型。所有三种建模方法都能够系统定量催化效果,并导致表观活化能量的相当降低。结合对矿物质的无机炭而确定的动力学参数,用于应用矿物和大气的降低的表观活化能量有助于实施催化作用对生物质衍生炭的转化为燃烧模型。

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  • 来源
    《Fuel》 |2021年第1期|119584.1-119584.11|共11页
  • 作者单位

    Ruhr Univ Bochum Lab Ind Chem D-44780 Bochum Germany;

    Ruhr Univ Bochum Lab Ind Chem D-44780 Bochum Germany;

    Ruhr Univ Bochum Dept Energy Plant Technol D-44780 Bochum Germany;

    Ruhr Univ Bochum Lab Ind Chem D-44780 Bochum Germany;

    Ruhr Univ Bochum Dept Energy Plant Technol D-44780 Bochum Germany;

    Tech Univ Darmstadt Inst Simulat React Thermofluid Syst Otto Berndt Str 2 D-64287 Darmstadt Germany;

    Tech Univ Darmstadt Inst Simulat React Thermofluid Syst Otto Berndt Str 2 D-64287 Darmstadt Germany;

    Ruhr Univ Bochum Dept Energy Plant Technol D-44780 Bochum Germany;

    Ruhr Univ Bochum Lab Ind Chem D-44780 Bochum Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass-derived char; Minerals; Catalytic effect; Oxyfuel combustion; Char conversion;

    机译:生物量衍生的炭;矿物质;催化作用;氧气燃烧;CHAR转换;
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