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Effects of Post-Pyrolysis Air Oxidation of Biomass Chars on Adsorption of Neutral and lonizable Compounds

机译:生物质炭热解后空气氧化对中性和可离子化化合物吸附的影响

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摘要

This study was conducted to understand the effects of thermal air oxidation of biomass chars experienced during formation or production on their adsorptive properties toward various compounds, including five neutral nonpolar and polar compounds and seven weak acids and bases (pK_a = 3-5.2) selected from among industrial chemicals and the triazine and phenoxyacetic acid herbicide classes. Post-pyrolysis air oxidation (PPAO) at 400 ℃ of anoxically prepared wood and pecan shell chars for up to 40 min enhanced the mass-normalized adsorption at pH ~ 7.4 of all test compounds, especially the weak acids and bases, by up to 100-fold. Both general and specific effects were identified. The general effect results from "reaming* of pores by the oxidative removal of pore wall matter and/or tarry deposits generated during the pyrolysis step. Reaming creates new surface area and enlarges nanopores, which helps relieve steric hindrance to adsorption. The specific effect results from creation of new acidic functionality that provides sites for the formation of very strong, charge-assisted hydrogen bonds (CAHB) with solutes having comparable pK,. The CAHB hypothesis was supported by competition experiments and the finding that weak acid anion adsorption increased with surface carboxyl content, despite electrostatic repulsion from the growing negative charge. The results provide insight into the effects of air oxidation on pollutant retention.
机译:进行这项研究是为了了解形成或生产过程中经历的生物质炭热空气氧化对其对多种化合物的吸附性能的影响,包括从中选择的五种中性非极性和极性化合物以及七种弱酸和弱碱(pK_a = 3-5.2)。在工业化学品以及三嗪和苯氧乙酸除草剂类别中。在缺氧条件下制备的木材和山核桃壳炭在400℃下进行热解后空气氧化(PPAO)长达40分钟,使所有受试化合物(特别是弱酸和弱碱)在pH〜7.4时的质量归一化吸附提高了100倍。 -折。确定了一般效果和特定效果。总体效果是通过热解步骤中氧化去除的孔壁物质和/或焦油沉积物而“疏通”孔而产生的。扩孔可产生新的表面积并扩大纳米孔,从而有助于减轻空间吸附的障碍。通过创建新的酸性官能团提供了形成具有非常强的电荷辅助氢键(CAHB)的位置,并具有可比的pK的溶质。CAHB假说得到了竞争实验的支持,并且发现弱酸阴离子的吸附随表面增加尽管由于负电荷的增加而产生静电排斥,但其羧基含量仍然很高,该结果有助于深入了解空气氧化对污染物保留的影响。

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  • 来源
    《Environmental Science & Technology》 |2016年第12期|6276-6283|共8页
  • 作者单位

    Department of Civil Engineering, University of North Dakota, Grand Forks, North Dakota 58202-8115, United States ,Department of Environmental Sciences, The Connecticut Agricultural Experimental Station, New Haven, Connecticut 06504-1106, United States;

    Department of Environmental Sciences, The Connecticut Agricultural Experimental Station, New Haven, Connecticut 06504-1106, United States;

  • 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);美国《化学文摘》(CA);
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  • 正文语种 eng
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