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首页> 外文期刊>Waste Management >Filamentous microalgae as an advantageous co-substrate for enhanced methane production and digestate dewaterability in anaerobic co-digestion of pig manure
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Filamentous microalgae as an advantageous co-substrate for enhanced methane production and digestate dewaterability in anaerobic co-digestion of pig manure

机译:丝状微藻作为具有增强甲烷生产和消化脱水性的有利的植物,在猪粪的厌氧共消化中

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摘要

This study aimed at exploring filamentous microalgae (Tribonema sp.) as an advantageous co-substrate for anaerobic digestion (AD) of pig manure. Its impacts on the AD performance were assessed in terms of methane yield, energy conversion efficiency, digestion kinetics, and digestate dewaterability. The microalgae substantially improved methane yield, AD kinetics, and digestate dewaterability of the AD process. The enhancement in methane yield ranged from 2 to 27.4%, with the maximum enhancement (corresponding to an energy conversion efficiency of 81%) occurring at a mixing ratio of 1:1 (VS basis). The AD kinetics was improved as indicated by the increased hydrolysis rate constants and diminished lag time. The specific resistance to filtration (SRF) of the digestate decreased significantly with the increasing proportion of the microalgae in the co-substrates, which would facilitate digestate processing and valorisation. Subsequently, the high biomass productivity of the microalgae (441 mg/L/d) in liquid digestate would enable sustainable bioenergy production through nutrient recycling.
机译:该研究旨在探索丝状微藻(Tribonema Sp。)作为猪粪的厌氧消化(Ad)的有利共合衬底。在甲烷产量,能量转化效率,消化动力学和消化脱水性方面评估了对广告性能的影响。微藻基本上提高了甲烷产率,Ad动力学和消化广告过程的脱水性。甲烷产率的增强范围为2〜27.4%,最大增强(对应于81%的能量转化效率),其混合比为1:1(Vs基础)。通过增加的水解速率常数和减少滞后时间,改善了AD动力学。在共衬底中的微藻的比例增加,消化物的比率显着降低,这将有助于消化加工和储度。随后,微藻(441mg / L / d)的液体消化中的高生物量生产率将通过营养回收来实现可持续的生物能量。

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  • 来源
    《Waste Management》 |2021年第1期|399-407|共9页
  • 作者单位

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland Ryan Institute National University of Ireland Galway Ireland;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland Ryan Institute National University of Ireland Galway Ireland MaREI Research Centre National University of Ireland Galway Ireland;

    Ryan Institute National University of Ireland Galway Ireland Botany and Plant Science School of Natural Sciences National University of Ireland Galway Ireland;

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

    Anaerobic digestion; Digestate; Microalgae; Pig manure; Dewaterability;

    机译:厌氧消化;消化;微藻;猪粪;脱水性;

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