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Application of microwaves and thermophilic anaerobic digestion to wastewater sludge treatment.

机译:微波和高温厌氧消化在废水污泥处理中的应用。

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摘要

Anaerobic digestion of waste activated sludge can be improved if hydrolysis of particulate substrates is enhanced and available substrate is made more accessible by both breakup of the sludge matrix floc and rupture of the cell wall. Microwave (MW) pretreatment was suggested and studied as a way to improve digestion efficiency. The work done focuses on the effects of MW pretreatment on the characteristics of the sludge, due to thermal and athermal effects. It also evaluates the effects some process variables in the activated sludge process have on the pretreatment efficiency as well as the effect operating conditions in the downstream anaerobic digestion process have on the biodegradability efficiency of those sludges.;Effects of athermal and thermal MW radiation were measured by use of a customized MW oven capable of providing MW radiation with uncoupled thermal and athermal effects. Athermal radiation was capable of increasing substrate present in the soluble phase of sludge, and had a positive effect in the digestion of athermal samples. The increases in biogas production and substrate solubilisation were smaller in magnitude than the increases measured for MW thermal tests. Further refining of the tests with athermal and thermal sludge, involved separation by size class of the solubilized substrate by means of ultrafiltration (UF), and revealed that changes in particle size distribution were significant not only for MW thermal tests, but also for athermal tests, with a particular emphasis in proteins in athermal tests. These changes had an effect on the biodegradability of the sludges by class size, with thermally pretreated sludge producing more biogas for smaller particles size classes but also exhibiting more inhibition.;Tests were made with several combinations of sludge with different ages and subject to different MW pretreatment temperatures. The work showed that sludge age or solids retention time (SRT) has a significant effect on the pretreatment efficiency with maximum biogas improvements measured at different MW pretreatment temperatures depending on the SRT of the sludge tested, and with different behaviour for mesophilic and thermophilic digestion. Mesophilic tests showed greater improvements in terms of digestion effiency on average, but thermophilic tests showed more uniform performance, with a higher baseline efficiency. The presence of an optimum of MW pretreatment temperature and sludge SRT for maximal biogas production is more defined for mesophilic conditions than for thermophilic conditions.;Semi-continuous studies were conducted with several combinations of single and two stage mesophilic and thermophilic digestors treating MW pretreated sludge and non-pretreated sludge. Staging and thermophilic digestion allowed the maintenance of a stable digestion process with high biogas productions and high solids removal efficiencies with production of sludge with good bacteriological characteristics for an very low residence time (5 d).
机译:如果提高了颗粒底物的水解能力,并且污泥基质絮凝物的分解和细胞壁的破裂使可利用的底物更易接近,那么可以改善废活性污泥的厌氧消化。建议并研究了微波预处理方法,以提高消化效率。由于热效应和非热效应,所进行的工作集中于兆瓦级预处理对污泥特性的影响。还评估了活性污泥工艺中的某些工艺变量对预处理效率的影响以及下游厌氧消化工艺中的操作条件对这些污泥的生物降解效率的影响。;测量了无热和热MW辐射的影响通过使用定制的MW烤箱,该烤箱能够提供MW辐射,且具有不耦合的热效应和非热效应。无热辐射能够增加污泥可溶相中存在的底物,并在消热样品的消化中具有积极作用。沼气产量和底物溶解度的增加幅度小于兆瓦级热试验测得的增加幅度。用热污泥和热污泥进一步完善测试,包括通过超滤(UF)按溶解的底物大小分类分离,并揭示出粒径分布的变化不仅对于兆瓦级热测试,而且对热测试也很重要,特别强调非热测试中的蛋白质。这些变化对污泥的生物降解性产生了影响,按粒度分类,经过热处理的污泥产生的沼气量较小,粒度级别也更大,但也表现出更大的抑制作用;对不同年龄,不同分子量的污泥进行了几种组合测试预处理温度。这项工作表明,污泥龄或固形物保留时间(SRT)对预处理效率有显着影响,在不同的MW预处理温度下,根据测试的污泥的SRT测得的沼气最大改善,并且对中温消化和嗜热消化的行为也不同。中温测试显示平均消化效率有较大提高,但嗜热测试显示性能更均匀,基线效率更高。中温条件比嗜温条件更能确定最佳的MW预处理温度和污泥SRT以产生最大的沼气;半连续研究是对处理MW预处理污泥的单级和两级中温和高温消化池的几种组合进行的和未经预处理的污泥。分级和嗜热消化可维持稳定的消化过程,并具有高沼气产量和高固体去除效率,并在极短的停留时间(5 d)内产生具有良好细菌学特性的污泥。

著录项

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 238 p.
  • 总页数 238
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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