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Thermochemistry of sulfur during pyrolysis and hydrothermal carbonization of sewage sludges

机译:污水污泥热解和水热碳化期间硫的热化学

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摘要

Sulfur (S) is an abundant and redox-active element in urban wastewater systems and plays a critical role in both the wastewater and sludge treatment processes. This study comparatively characterized the transformation of S and several closely associated metals (Cu, Zn, and Fe) during pyrolysis (250 to 750 °C) and hydrothermal carbonization (HTC, 150 to 275 °C) treatments of sewage sludge. S, Fe, Zn, and Cu K-edge X-ray absorption spectroscopy was applied to quantitatively evaluate the fate of S and contribution of different S species in regulating metal speciation. During pyrolysis, aliphatic-S and sul-fonate were preferentially degraded at low temperature (below 350 °C) and sulfate was thermochemi-cally reduced at temperature above 450 °C, while metal sulfides (up to 27%) and thiophenes (up to 70%) were increasingly formed. Similar to the pyrolysis process, metal sulfides (up to 40% at temperature above 200 °C) and thiophenes were formed during HTC. The degradation of thiols and organic sulfide, as well as sulfate reduction, released sulfide and strongly affected metal speciation. For example, almost all Cu and half of Zn were transformed into Cu-Fe- or Zn-Fe-sulfides during HTC, whereas they were partially desulfidized during pyrolysis. High abundance of reduced S species (S~(-1) and S~(-2)) in hydrochars may contribute to their strong reductive adsorption of Cr(Ⅵ). Results from this work reveal the thermochemical reactions driving the transformations of S and its associated metals during pyrolysis and HTC. The results provide fundamental knowledge for selecting thermochemical sludge treatment techniques for value-added applications of the products.
机译:硫(S)是城市废水系统中丰富和氧化还原活性元素,在废水和污泥处理过程中发挥着关键作用。该研究表征在热解(250至750℃)和水热碳化(HTC,150至275°C)处理过程中的S和几种紧密相关的金属(Cu,Zn和Fe)的转化,以及污水污泥的处理。 S,Fe,Zn和Cu ​​K-Edge X射线吸收光谱被应用于定量评估S的命运和不同S物种在调节金属形态的贡献。在热解期间,在低温下(低于350℃)优先降解脂族-S和硫酸盐,硫酸盐在450℃的温度下降低,而金属硫化物(高达27%)和噻吩(最高70%)越来越多地形成。类似于热解过程,在HTC期间形成金属硫化物(高于200℃的温度高于200℃)和噻吩的硫化物。硫醇和有机硫化物的降解,以及硫酸盐还原,释放硫化物和受影响的金属形状。例如,在HTC期间,几乎所有Cu和一半的Zn转化到Cu-Fe或Zn-Fe-硫化物中,而它们在热解期间部分脱硫化。 Hydrochars中的高丰度(S〜(-1)和S〜(-2))可能有助于它们对Cr(Ⅵ)的强制还原吸附。这项工作的结果揭示了在热解和HTC期间驱动S及其相关金属的转化的热化学反应。结果为选择热化学污泥处理技术的基础知识提供了用于产品的增值应用。

著录项

  • 来源
    《Waste Management》 |2021年第2期|276-285|共10页
  • 作者单位

    Department of Environmental and Sustainable Engineering University at Albany 1400 Washington Ave Albany NY 12222 USA School of Environmental Science and Engineering Guangzhou University Guangzhou 510006 China;

    School of Earth and Atmospheric Sciences Georgia Institute of Technology 311 Ferst Dr Atlanta GA 30324-0340 USA;

    Stare Key Laboratory of Environmental Chemistry and Ecotoxicology Research Center for Eco-Environmental Sciences The Chinese Academy of Sciences Beijing 100085 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sewage sludge; Sulfur; Heavy metal; Pyrolysis; Hydrothermal carbonization; Chromate adsorption;

    机译:污水污泥;硫;重金属;热解;水热碳化;铬酸盐吸附;

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