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Adsorption-desorption of water vapour on chars prepared from commercial wood charcoals, in relation to their chemical composition, surface chemistry and pore structure

机译:商用木炭制得的木炭上水蒸气的吸附-解吸及其化学组成,表面化学性质和孔结构

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摘要

We have studied the chemical composition, the surface chemistry and the pore structure of holm-oak chars and eucalyptus chars prepared at final heating temperature in the range of 250-1000 C from two commercial wood charcoals. Our study also includes adsorption-desorption of water vapour at 25 C on the resulting chars. The samples were characterised by chemical analyses, Fourier transform infrared spectroscopy, adsorption (carbon dioxide, 273 K), mercury porosimetry and scanning electron microscopy. The Dubinin-Serpinsky equation (DS-2) and the Dubinin-Astakhov (DA) equation were applied to analyse the water adsorption data. The final heating temperature affects the chemical composition, the surface chemistry and the pore structure of each char series differently; the differences are of less significance at the highest temperature. The adsorption-desorption of water vapour at 25 C reflects well the changes produced in the chars; the adsorption occurs in the micropores, and in the non-micropore structure at relative pressures higher than 0.95. The shape of the adsorption isotherms is largely dependent on the microporosity; it changes gradually from type II to type V for the chars with poorly developed microporosity (holm-oak chars), and it is more of type V for the chars with highly developed microporosity (eucalyptus chars). The DS-2 equation fails if type V is less defined, while the DA equation is always applicable and provides micropore volumes close to those determined at p/p~0 = 0.95. Hysteresis is always observed; chemisorption occurs: the desorption line begins at saturation pressure and in general tends to meet near zero relative pressures.
机译:我们研究了在最终加热温度为250-1000 C的条件下,由两种市售木炭制得的橡橡木炭和桉木炭的化学组成,表面化学性质和孔结构。我们的研究还包括在25℃下对生成的碳进行水蒸气的吸附-解吸。通过化学分析,傅里叶变换红外光谱,吸附(二氧化碳,273 K),水银孔隙率法和扫描电子显微镜对样品进行表征。应用Dubinin-Serpinsky方程(DS-2)和Dubinin-Astakhov(DA)方程分析吸水数据。最终加热温度对每个炭系列的化学组成,表面化学和孔结构的影响不同。在最高温度下,差异不大。 25℃下水蒸气的吸附-脱附很好地反映了焦炭中产生的变化。相对压力高于0.95时,吸附发生在微孔和非微孔结构中。吸附等温线的形状在很大程度上取决于微孔率。对于微孔性差的炭(霍姆橡木炭),它从II型逐渐转变为V型,对于微孔性高的炭(尤加利炭),更多的是V型。如果类型V的定义较少,则DS-2方程将失败,而DA方程始终可用,并且提供的微孔体积接近于在p / p〜0 = 0.95处确定的体积。总是会出现磁滞现象;发生化学吸附:解吸线始于饱和压力,通常趋于满足接近零的相对压力。

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  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2010年第2期|P.124-133|共10页
  • 作者单位

    Departamento de Quimica Organica e Inorganica, Universidad de Extremadura, Facultad de Formation del Profesorado, Avda. de la Universidad s, 10071 Caceres, Spain;

    rnDepartamento de Quimica Organica e Inorganica, Universidad de Extremadura, Facultad de Formation del Profesorado, Avda. de la Universidad s, 10071 Caceres, Spain MADIREL, UMR 6121 CNRS/Universite de Provence. Centre de St. Jerome, Avenue Escadrille-Normandie-Niemen, 13397 Marseille Cedex 20, France;

    rnDepartamento de Quimica Organica e Inorganica, Universidad de Extremadura, Facultad de Formation del Profesorado, Avda. de la Universidad s, 10071 Caceres, Spain;

    rnMADIREL, UMR 6121 CNRS/Universite de Provence. Centre de St. Jerome, Avenue Escadrille-Normandie-Niemen, 13397 Marseille Cedex 20, France;

    rnMADIREL, UMR 6121 CNRS/Universite de Provence. Centre de St. Jerome, Avenue Escadrille-Normandie-Niemen, 13397 Marseille Cedex 20, France;

    rnInstituto del Corcho, la Madera y el Carbon Vegetal, Poligono Industrial 'El Prado', Pamplona s, 06800 Merida, Spain;

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

    wood charcoal; char; chemical composition; surface chemistry; pore structure; water vapour adsorption-desorption;

    机译:木炭字符化学成分;表面化学孔结构水蒸气吸附-解吸;
  • 入库时间 2022-08-18 03:02:01

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