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Co-hydrothermal carbonization of swine and chicken manure: Influence of cross-interaction on hydrochar and liquid characteristics

机译:猪和鸡粪的碳化碳化:交叉相互作用对液体和液体特性的影响

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摘要

Swine and chicken manures are abundant solid wastes that can be converted into carbonaceous materials through hydrothermal carbonization (HTC). Owing to their unique biochemical compositions, co-HTC of these two types of manures may have significant implications for the generated products. We investigated the co-HTC of swine manure and chicken manure to understand the influence of the interaction between contrasting manures on the properties of the derived products. The results indicated that co-HTC treatment enhanced the formation of solid product and improved the C and N contents, heating value, and energy yield of the resulting hydrochar. Regarding the ignition temperature and comprehensive combustion index, the combustion properties of the hydrochar were enhanced owing to the mutual effect of the HTC intermediates. Additionally, the interaction of the intermediates significantly impacted the transfer of nitrogenous species and generation of organic acids and organic polymers with fused-ring structures. Therefore, co-HTC processing of animal manures could potentially provide a sustainable pathway for the conversion of animal waste into solid products with improved characteristics compared to those produced by treating the two feedstocks separately.
机译:猪和鸡肉粪便是丰富的固体废物,可以通过水热碳化(HTC)转化为碳质材料。由于它们独特的生化组合物,这两种粪物的CO-HTC可能对所生成的产品产生重大影响。我们调查了猪粪和鸡粪的共同HTC,了解对染色产品性质的对比植物之间的相互作用的影响。结果表明,CO-HTC处理增强了固体产物的形成,并改善了所得氢乙氧的C和N含量,加热值和能量产率。关于点火温度和综合燃烧指标,由于HTC中间体的相互作用,氢乙酸的燃烧性能提高了。另外,中间体的相互作用显着影响了含氮物种的转移和产生有机酸和有机聚合物与稠合环结构。因此,动物粪物的共同HTC加工可以提供可持续的途径,用于将动物废物转化成固体产物,其与通过分别处理两种原料而产生的特性改善的特性。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|147381.1-147381.13|共13页
  • 作者单位

    School of Materials Science and Engineering. University of Jinan Jinan 250022 Shandong China;

    College of Material Science and Engineering Nanjing Forestry University Nanjing 210037 Jiangsu China;

    Faculty of Chemical and Petroleum Engineering University of Tabriz Tabriz Iran;

    School of Materials Science and Engineering. University of Jinan Jinan 250022 Shandong China;

    Department of Chemical & Biological Engineering Korea University 145 Anam-ro Seongbuk-gu Seoul 02841 Republic of Korea Korea Biochar Research Center APRU Sustainable Waste Management Program & Division of Environmental Science and Ecological Engineering Korea University Seoul 02841 Republic of Korea;

    Lancaster Environment Centre Lancaster University Lancaster LA1 4YQ United Kingdom;

    Ecosphere Resilience Research Center Faculty of Applied Sciences University of Sri Jayewardenepura Nugegoda 10250 Sri Lanka;

    UK Biochar Research Centre School of Geosciences University of Edinburgh Alexander Crum Brown Road Crew Building EH9 3JN Edinburgh UK;

    Korea Biochar Research Center APRU Sustainable Waste Management Program & Division of Environmental Science and Ecological Engineering Korea University Seoul 02841 Republic of Korea;

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

    Biowaste; Hydrochar; Animal waste; Clean energy; Circular economy;

    机译:BioWaste;水炭;动物废物;清洁能源;循环经济;

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