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Application of high rate, high temperature anaerobic digestion to fungal thermozyme hydrolysates from carbohydrate wastes

机译:高速高温厌氧消化在碳水化合物废物中真菌热酶水解物中的应用

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摘要

The objective of this study was to examine the feasibility of using a two-step, fully biological and sustainable strategy for the treatment of carbohydrate rich wastes. The primary step in this strategy involves the application of thermostable enzymes produced by the thermophilic, aerobic fungus, Talaromyces emersonii, to carbohydrate wastes producing a liquid hydrolysate discharged at elevated temperatures. To assess the potential of thermophilic treatment of this hydrolysate, a comparative study of thermophilic and meso-philic digestion of four sugar rich thermozyme hydrolysate waste streams was conducted by operating two high rate upflow anaerobic hybrid reactors (UAHR) at 37 ℃ (R1) and 55 ℃ (R2). The operational performance of both reactors was monitored from start-up by assessing COD removal efficiencies, volatile fatty acid (VFA) discharge and % methane of the biogas produced. Rapid start-up of both Rl and R2 was achieved on an influent composed of the typical sugar components of the organic fraction of municipal solid waste (OFMSW). Both reactors were subsequently challenged in terms of volumetric loading rate (VLR) and it was found that a VLR of 9 gCODl~(-1)d~(-1) at a hydraulic retention time (HRT) of 1 day severely affected the thermophilic reactor with instability characterised by a build up of volatile fatty acid (VFA) intermediates in the effluent. The influent to both reactors was changed to a simple glucose and sucrose-based influent supplied at a VLR of 4.5 gCOD l~(-1) d ~(-1) and HRT of 2 days prior to the introduction of thermozyme hydrolysates. Four unique thermozyme hydrolysates were subsequently supplied to the reactors, each for a period of 10 HRTs. The applied hydrolysates were derived from apple pulp, bread, carob powder and cardboard, all of which were successfully and comparably converted by both reactors. The % total carbohydrate removal by both reactors was monitored during the application of the sugar rich thermozyme hydrolysates. This approach offers a sustainable technology for the treatment of carbohydrate rich wastes and highlights the potential of these wastes as substrates for the generation of second-generation biofuels.
机译:这项研究的目的是研究使用两步法,完全生物学和可持续的策略来处理富含碳水化合物的废物的可行性。该策略的第一步涉及将嗜热,好氧真菌艾美球菌(Talaromyces emersonii)产生的热稳定酶应用于碳水化合物废物,产生在高温下排放的液体水解产物。为了评估该水解产物的高温处理潜力,通过在37℃(R1)和以下温度下运行两个高速上流厌氧混合反应器(UAHR),对四种富含糖的热酶水解产物废水进行了高温和中温消化的比较研究。 55℃(R2)。从启动开始就通过评估COD去除效率,挥发性脂肪酸(VFA)排放和所产生沼气的甲烷百分比来监测两个反应器的运行性能。 R1和R2两者的快速启动是在由城市固体废物(OFMSW)的有机部分的典型糖成分组成的流入物中实现的。随后两个反应器都受到体积加载率(VLR)的挑战,发现在1天的水力停留时间(HRT)时9 gCODl〜(-1)d〜(-1)的VLR严重影响了嗜热性具有不稳定性的反应器,其特征在于流出物中会形成挥发性脂肪酸(VFA)中间体。引入热酶水解产物之前,两个反应器的进水均更改为简单的葡萄糖和蔗糖基进水,其VLR为4.5 gCOD l〜(-1)d〜(-1),HRT为2天。随后将四种独特的热酶水解产物供应至反应器,每次持续10个HRT。所施加的水解产物来自苹果浆,面包,角豆粉和纸板,所有这些都通过两个反应器成功地进行了可比的转化。在施用富含糖的热酶水解产物期间,监测两个反应器除去的总碳水化合物的百分比。这种方法为处理富含碳水化合物的废物提供了一种可持续的技术,并强调了这些废物作为生产第二代生物燃料的底物的潜力。

著录项

  • 来源
    《Water Research》 |2009年第9期|2531-2539|共9页
  • 作者单位

    Environmental Microbiology Research Unit, Department of Microbiology, National University of Ireland, Galway, Ireland;

    Environmental Microbiology Research Unit, Department of Microbiology, National University of Ireland, Galway, Ireland;

    Molecular Glycobiology Group, Department of Biochemistry, National University of Ireland, Galway, Ireland;

    Molecular Glycobiology Group, Department of Biochemistry, National University of Ireland, Galway, Ireland;

    Molecular Glycobiology Group, Department of Biochemistry, National University of Ireland, Galway, Ireland;

    Environmental Microbiology Research Unit, Department of Microbiology, National University of Ireland, Galway, Ireland;

  • 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

    municipal solid waste; UAHR; thermophilic anaerobic digestion; fungal thermozymes; biogas;

    机译:城市生活垃圾;UAHR;高温厌氧消化真菌热酶;沼气;

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