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Scaling up self-sustained smouldering of sewage sludge for waste-to-energy

机译:缩放污水污泥的自我持续闷烧,以浪费对能量

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Self-sustained smouldering combustion presents strong potential as a green waste-to-energy technique for a range of wastes, especially those with high moisture content like wastewater sewage sludge. While well-demonstrated in laboratory experiments, there is little known about scaling up this process to larger, commercial reactors. This paper addresses this knowledge gap by systematically conducting and analyzing experiments in a variety of reactors extending beyond the laboratory scale. This work reveals a robust treatment regime; however, it also identifies potential complications associated with perimeter heat losses at scale. Two key impacts, on the smouldering reactions and the air flow patterns, are shown to potentially degrade treatment if not properly understood and managed. Altogether, this study provides novel insight and guidance for scaling up smouldering science into practical, waste-to-energy systems.
机译:自我持续的闷烧燃烧为一系列废物的绿色废料到能量技术提供了强大的潜力,尤其是具有高水分污水污泥等水分含量的污水。 虽然在实验室实验中经过良好展示,但对将此过程扩大到更大的商业反应堆时,毫无疑问。 本文通过系统地进行和分析在超出实验室规模之外的各种反应堆中的实验来解决这种知识差距。 这项工作揭示了稳健的治疗制度; 然而,它还识别与规模以周长热损失相关的潜在并发症。 在闷燃反应和空气流动模式上显示两个关键影响,如果不正确理解和管理,则潜在地降低治疗。 该研究总共提供了新的洞察力和指导,将闷烧的科学扩大到实用,废料到能源系统中。

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