利用污泥生产沼气和合成气:可持续能源

Methane Pub Date : 2023-04-29 DOI:10.3390/methane2020014
Nwabunwanne Lilian Enebe, C. Chigor, Kechrist Obileke, M. Lawal, M. Enebe
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引用次数: 2

摘要

将污泥转化为能源是一种可持续的废物管理技术,也是一种对抗与处置相关的环境问题的手段。在各种转化技术中,厌氧消化和气化被认为是最有前途的两种。因此,本研究重点对污泥厌氧消化和气化的能源生产进行了详细的评价。此外,还讨论了阻碍这两项技术的主要挑战,以及解决这些挑战的实际措施。进一步评估了有效转化为有价值的能量载体的适用预处理措施。具体而言,该研究评估了污水污泥与气化和厌氧消化相关的各种性质。研究结果表明,污泥中的高灰分会导致烧结和团聚,而高水分会促进焦油的形成,这已被确定为污泥气化的关键限制之一。更重要的是,预处理的应用已被证明在促进有机物分解/降解方面具有一些有益的特征,从而提高沼气和合成气的产量。然而,这具有额外的能量需求和操作成本,特别是对于热和机械方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biogas and Syngas Production from Sewage Sludge: A Sustainable Source of Energy Generation
Sewage sludge to energy conversion is a sustainable waste management technique and a means of militating against the environmental concerns associated with its disposal. Amongst the various conversion technologies, anaerobic digestion and gasification have been identified as the two most promising. Therefore, this study is focused on a detailed evaluation of the anaerobic digestion and gasification of sewage sludge for energy production. Moreover, the key challenges hindering both technologies are discussed, as well as the practical measures for addressing them. The applicable pretreatment measures for efficient transformation into valuable energy vectors were further evaluated. Specifically, the study evaluated various properties of sewage sludge in relation to gasification and anaerobic digestion. The findings showed that a high ash content in sewage sludge results in sintering and agglomeration, while a high moisture content promotes tar formation, which has been identified as one of the key limitations of sewage sludge gasification. More importantly, the application of pretreatment has been shown to have some beneficial features in promoting organic matter decomposition/degradation, thereby enhancing biogas as well as syngas production. However, this has additional energy requirements and operational costs, particularly for thermal and mechanical methods.
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