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Hyperthermophilic composting of sewage sludge accelerates humic acid formation: Elemental and spectroscopic evidence

机译:污水污泥的超嗜热堆肥加速腐殖酸形成:元素和光谱依据

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摘要

Application of thermophilic composting (TC) is limited due to poor efficiency and long composting period. Hyperthermophilic composting (HTC) could effectively overcome this defect. Here, the transformation of humic acid (HA) in both HTC and TC was characterized and compared to investigate the roles of HTC toward accelerating the formation of HA. In HTC, the highest temperature was 96.6 °C, and the hyperthermophilic and thermophilic phases exceed 18 days. The degree of polymerization (DP) in HTC increased to 1.27 on day 27, while it only increased to 1.15 at the end of TC. The elemental composition of the HA in HTC showed higher 0 atomic content (36.3%) and lower C/N atomic ratio (6.5) compared with TC. These changes indicated that HTC could significantly accelerate oxidized and polycondensed reactions for HA formation, which resulted in the shortening of composting period to 27 days. The maximum fluorescence intensity (F_(max)) of humic-like components were achieved faster in HTC (F_(max) = 1649.9) than in TC (F_(max) = 1316.9), implying that HTC promoted the polycondensation of small molecular components to form HA with larger molecular weight and higher degree of aromatization. Two-dimensional FTIR correlation spectroscopy (2D-FTIR-C0S) analysis demonstrated that HTC prevented the HA precursor from condensing before it was deeply oxidized, and increased the content of small molecules rich in carboxyl moieties. Based on the evolution of the molecular structure of HA, the level of oxidation of HA precursors was a key factor to determine the degree of polymerization and the degree of HA humification.
机译:嗜热堆肥(TC)的施用由于效率差和堆肥期差而有限。高热堆肥(HTC)可以有效地克服这种缺陷。这里,HTC和TC两者中腐殖酸(HA)的转化表征并进行比较,以研究HTC朝向加速HA的形成的作用。在HTC中,最高温度为96.6°C,高嗜热和嗜热相超过18天。 HTC中的聚合程度(DP)在第27天增加到1.27,而TC末端仅增加到1.15。与TC相比,HTC中HA的元素组成显示出更高的0原子含量(36.3%)和降低C / N原子比(6.5)。这些变化表明,HTC可以显着加速HA形成的氧化和缩聚反应,从而导致堆肥期缩短至27天。在HTC(F_(MAX)= 1649.9)中,腐殖质样组分的最大荧光强度(F_(最大))比TC(F_(MAX)= 1316.9)更快(F_(MAX)= 1316.9),这意味着HTC促进了小分子组分的缩聚形成具有较大分子量和更高芳族化程度的HA。二维FTIR相关光谱(2D-FTIR-C0S)分析证明HTC在深度氧化之前阻止了HA前体冷凝,并增加了富含羧基部分的小分子的含量。基于HA的分子结构的演变,HA前体的氧化水平是确定聚合程度和HA腐蚀程度的关键因素。

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  • 来源
    《Waste Management》 |2020年第2期|342-351|共10页
  • 作者单位

    State Key Laboratory of Pulp and Paper Engineering South China University of Technology Guangzhou 510641 China Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management Guangdong Institute of Eco-environmental Science & Technology Guangzhou 510650 China;

    State Key Laboratory of Pulp and Paper Engineering South China University of Technology Guangzhou 510641 China;

    College of Packaging and Materials Engineering Hunan University of Technology Zhuzhou 412007 China;

    Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management Guangdong Institute of Eco-environmental Science & Technology Guangzhou 510650 China;

    Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management Guangdong Institute of Eco-environmental Science & Technology Guangzhou 510650 China;

    Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management Guangdong Institute of Eco-environmental Science & Technology Guangzhou 510650 China;

    Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management Guangdong Institute of Eco-environmental Science & Technology Guangzhou 510650 China Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation College of Resources and Environment Fujian Agriculture and Forestry University Fuzhou 350002 China;

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

    Hyperthermophilic composting; Humic acids; Elemental analysis; Excitation-emission matrix-parallel factor (EEM-PARAFAC) analysis; Two-dimensional FTIR correlation; spectroscopy (2D-FTIR-COS) analysis;

    机译:超嗜热堆肥;腐殖酸;元素分析;激发 - 发射矩阵平行因子(EEM-PARAFAC)分析;二维FTIR相关;光谱学(2D-FTIR-COS)分析;

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