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首页> 外文期刊>Waste Management >Biomass fuel production from cellulosic sludge through biodrying: Aeration strategies, quality of end-products, gaseous emissions and techno-economic assessment
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Biomass fuel production from cellulosic sludge through biodrying: Aeration strategies, quality of end-products, gaseous emissions and techno-economic assessment

机译:生物质燃料通过生物晶体污泥生产:曝气策略,终端产品质量,气态排放和技术经济评估

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摘要

This study assesses the technological, environmental and economic feasibility of biodrying to valorise cellulosic sludge as a renewable energy source. Specifically, three different aeration strategies were compared in terms of biodrying performance, energetic consumption, gaseous emissions, quality of end-products and techno-economic analysis. These strategies were based on different combinations of con-vective drying with biogenic heat produced. Two innovative biodrying performance indicators (Energetic Biodrying Index and Biodrying Performance Index) were proposed to better assess the initial and operational conditions that favour the maximum energy process efficiency and the highest end-product quality. The end-products obtained consistently presented moisture contents below 40% and lower heating values above 9.4 MJ·kg-1. However, the best values achieved were 32.6% and 10.4 MJ·kg-1 for moisture content and lower heating value, respectively. Low N_2O and CH_4 emissions confirmed the effective aeration of all three strategies carried out, while NH_4 and tVOCs were related either to temperature or biological phenomena. A techno-economic analysis proved the economic viability and attractiveness of the biodrying technology for cellulosic sludge in all the strategies applied.
机译:本研究评估了生物素对价纤维素污泥作为可再生能源的技术,环境和经济可行性。具体而言,在生物晶体性能,精力充沛的消费,气体排放,终端产品质量和技术经济分析方面进行了三种不同的曝气策略。这些策略基于与生物发热产生的Con-Vective Drening的不同组合。提出了两种创新的生物效率性能指标(精力充沛的生物水平指数和生物水平性能指数),以更好地评估最大的能源工艺效率和最终产品质量的初始和操作条件。在9.4MJ·kg-1高于40%和较低的加热值,得到的最终产物始终呈现水分含量低于40%和更低的加热值。然而,实现的最佳值分别为32.6%和10.4MJ·kg-1,分别用于水分含量和较低的加热值。低N_2O和CH_4排放证实了所有三种策略的有效曝气,而NH_4和TVOCs与温度或生物现象有关。技术经济分析证明了所有策略中纤维素污泥的生物脂肪技术的经济可行性和吸引力。

著录项

  • 来源
    《Waste Management》 |2021年第5期|487-496|共10页
  • 作者单位

    BETA Technological Center Science and Technology Faculty University of Vic-Central University of Catalonia 08500 Vic Barcelona Spain;

    Composting Research Croup (GICOM) Dept. of Chemical Biological and Environmental Engineering Universitat Autonoma de Barcelona 08193 Bellaterra Barcelona Spain Group of Biological Treatment of Liquid and Gaseous Effluents (GENOCOV) Dept. of Chemical Biological and Environmental Engineering Universitat Autonoma de Barcelona 08193 Bellaterra Barcelona Spain;

    BETA Technological Center Science and Technology Faculty University of Vic-Central University of Catalonia 08500 Vic Barcelona Spain;

    BETA Technological Center Science and Technology Faculty University of Vic-Central University of Catalonia 08500 Vic Barcelona Spain;

    BETA Technological Center Science and Technology Faculty University of Vic-Central University of Catalonia 08500 Vic Barcelona Spain;

    Group of Biological Treatment of Liquid and Gaseous Effluents (GENOCOV) Dept. of Chemical Biological and Environmental Engineering Universitat Autonoma de Barcelona 08193 Bellaterra Barcelona Spain;

    Composting Research Croup (GICOM) Dept. of Chemical Biological and Environmental Engineering Universitat Autonoma de Barcelona 08193 Bellaterra Barcelona Spain;

    BETA Technological Center Science and Technology Faculty University of Vic-Central University of Catalonia 08500 Vic Barcelona Spain;

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

    Cellulosic sludge; Biodrying; Aeration strategies; Gaseous emissions; Techno-economic analysis;

    机译:纤维素污泥;生物素;曝气策略;气态排放;技术经济分析;

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