首页> 外文期刊>Environmental Science & Technology >Reaction of Substituted Phenols with Lignin Char: Dual Oxidative and Reductive Pathways Depending on Substituents and Conditions
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Reaction of Substituted Phenols with Lignin Char: Dual Oxidative and Reductive Pathways Depending on Substituents and Conditions

机译:取代的苯酚与木质素炭的反应:取决于取代基和条件的双氧化和还原途径

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摘要

Biomass chars are known to be intrinsically redox-reactive toward some organic compounds, but the mechanisms are still unclear. To address this, a char made anoxically at 500 °C from dealkaline lignin was reacted either in the fresh state or after 180-day aging in air with p-nitrophenol (NO_2-P), p-hydroxybenzalde- hyde (CHO-P), phenol (H-P), or p-methoxyphenol (MeO-P). The reactions were carried out under oxic or anoxic conditions. Degradation occurred in all cases. Both oxidation and reduction products were identified, with yields dependent on the presence or absence of air during reaction or storage. They included oligomers, amines, and ring-hydroxylated compounds, among others. Exposure to air suppressed sorption, annihilated reducing sites, and provided a source of reactive oxygen species that assisted degradation. Sorption suppression was due to the incorporation of hydrophilic groups by chemisorption of oxygen, and possibly blockage of sites by products. Fresh char has comparable electron-donating and accepting capacity, whereas there is a preponderance of electron-accepting over donating capacity in aged char. Under anoxic conditions, both oxidation and reduction occurred. Under oxic conditions or after aging in air, oxidation predominated, and linear free energy relationships were found between the rate constant and the Hammett or Brown substituent electronic parameter or the standard electrode potential of the phenol. The results demonstrate that chars possess heterogeneous redox activities depending on reaction pairs, reaction conditions, and aging.
机译:已知生物质符号是朝向某些有机化合物的本质上氧化还原反应性,但仍然尚不清楚。为了解决这一点,从北硝基酚(NO_2-P)的空气中的新鲜状态或180天老化后,在往北甘黄素(NO_2-P),P-HYDROXYBENZALDE-HYDE(CHO-P)中,在新鲜状态下或在180天老化后,使氧化物氧化在500℃下的炭。 ,苯酚(HP)或p-甲氧基苯酚(MeO-P)。反应在氧体或缺氧条件下进行。在所有情况下发生降解发生。鉴定氧化和还原产物,产率依赖于反应或储存期间空气的存在或不存在。它们包括低聚物,胺和环 - 羟基化合物等。暴露于空气抑制的吸附,湮灭还原位点,并提供了辅助降解的反应性氧物种来源。吸附抑制是由于氧气化学吸附的亲水基团,并且可能通过产品堵塞部位。新鲜的炭具有可比的电子捐赠和接受能力,而在老化焦炭中赋予捐赠容量的电子接受的优势优势。根据缺氧条件,发生氧化和还原。在氧化条件下或在空气中老化后,氧化占优势和线性自由能量关系,在速率常数和哈米特或棕色取代光电子参数或苯酚的标准电极电位之间发现。结果表明,根据反应对,反应条件和老化,Chars具有异质氧化还原活性。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第24期|15811-15820|共10页
  • 作者单位

    Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control Faculty of Environmental Science & Engineering Kunming University of Science & Technology Kunming 650500 Yunnan China Stockbridge School of Agriculture University of Massachusetts Amherst Massachusetts 01003 United States;

    Stockbridge School of Agriculture University of Massachusetts Amherst Massachusetts 01003 United States;

    Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control Faculty of Environmental Science & Engineering Kunming University of Science & Technology Kunming 650500 Yunnan China Faculty of Life Sciences Laboratory of Freshwater & Stress Ecology Humboldt-Universitaet zu Berlin 12437 Berlin Germany;

    Institute of Applied Ecology Chinese Academy of Sciences Shenyang 110016 China;

    Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control Faculty of Environmental Science & Engineering Kunming University of Science & Technology Kunming 650500 Yunnan China;

    Stockbridge School of Agriculture University of Massachusetts Amherst Massachusetts 01003 United States;

    Department of Environmental Sciences The Connecticut Agricultural Experiment Station New Haven Connecticut 06504 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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  • 入库时间 2022-08-18 23:02:47

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