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Energy balance and carbon dioxide emissions comparison through modified anaerobic digestion model No 1 for single-stage and two-stage anaerobic digestion of food waste

机译:通过改性的厌氧消化模型和两阶段无厌氧消化食物垃圾的能量平衡和二氧化碳排放比较

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摘要

Mathematical models are tools that allow the prediction and control of the anaerobic digestion (AD) process, ensuring process stability and maximizing methane production. In this study, the AD of food waste (FW) was evaluated in single-stage and two-stage semicontinuous configurations, with the following organic loading rates (OLR: kgVS·m~(-3)·~(-1)): ⅰ. R1 (single-stage reactor): 0.7, 1.5, 3.0, 6.0; ⅱ. R2 and R3 (two-stage acidogenic and methanogenic reactors): 3.0, 4.0, 9.0, 15 and 1.0, 2.0, 4.0, 7.0, respectively. Each configuration was analyzed in terms of the kinetics and energy balance, based on the ADM1 model (modified to consider lactic acid production, an acid not traditionally examined in this model). The proposed ADM1 accurately simulates (>80%) the behavior of pH, methane production and lactic acid formation for both configurations, with the single-stage presenting the best fit (R~2 > 0.90 NRMSE <0.2); however, two-stage configuration showed better behavior in terms of the kinetic parameters associated with hydrolysis (k_(dis), k_(ch), k_(pr), k_(li)), with an increase of more than 50% in the hydrolysis constant, compared to single-stage. Additionally, the two-stage configuration achieved a significant impact on both energy efficiency (Re), up to 57.5% increase, and CO_2 emissions, achieving a 47%. Both reactor configurations, resulted in lower CO_2 emissions than landfill, which produced up to 72.4%. Furthermore, two-stage configuration has the potential to consider the modeling of other types of biotechnological and energy by-products.
机译:数学模型是允许预测和控制厌氧消化(AD)工艺的预测和控制,确保过程稳定性和最大化甲烷的产生。在本研究中,在单阶段和两级半连续配置中评估食物废物(FW)的AD,具有以下有机加载率(OLR:KGVS·M〜(-3)·〜(-1)): Ⅰ。 R1(单级电抗器):0.7,1.5,3.0,6.0; Ⅱ。 R2和R3(两级酸性和甲状腺反应器):3.0,4.0,9.0,15和1.0,2.0,4.0,7.0分别。根据ADM1模型(修饰以考虑乳酸产生,在该模型中传统上检查的酸),分析了每个配置。拟议的ADM1精确模拟(> 80%)PH,甲烷生产和乳酸形成两种配置的行为,单级呈现最佳拟合(R〜2> 0.90 Nrmse <0.2);然而,两级配置在与水解相关的动力学参数(K_(DIS),K_(CH),K_(PR),K_(LI))方面表现出更好的行为,增加了超过50%水解常数,与单级相比。此外,两级配置对能量效率(RE)的显着影响,高达57.5%,而且CO_2排放,实现了47%。反应器配置均导致垃圾填埋场较低的CO_2排放,其生产高达72.4%。此外,两级配置有可能考虑其他类型的生物技术和能量副产物的建模。

著录项

  • 来源
    《Biomass & bioenergy》 |2020年第11期|105814.1-105814.12|共12页
  • 作者单位

    Universidad del Valle Faculty of Engineering Study and Control of Environmental Pollution -ECCA Research Group Calle 13 #100-00 Cali Colombia;

    Cetaqua Centro Tecnologico del Agua Los Pozos 7340 Santiago de Chile Chile Departamento de Ingenieria Quimica y Ambiental Universidad Tecnica Federico Santa Maria Avenida Vicuna Mackenna 3939 Santiago de Chile Chile;

    Universidad del Valle Faculty of Engineering Study and Control of Environmental Pollution -ECCA Research Group Calle 13 #100-00 Cali Colombia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ADM1; Energy balance; Food waste; Lactic acid; Single-stage; Two-stage;

    机译:ADM1;能量平衡;食物垃圾;乳酸;单级;两阶段;

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