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厌氧消化与气化耦合用于废水污泥处理与回收

Anaerobic digestion and gasification coupling for wastewater sludge treatment and recovery.

作者信息

Lacroix Nicolas, Rousse Daniel R, Hausler Robert

机构信息

Department of Mechanical Engineering, École de technologie supérieure, Montréal, Canada

Department of Mechanical Engineering, École de technologie supérieure, Montréal, Canada.

出版信息

Waste Manag Res. 2014 Jul;32(7):608-13. doi: 10.1177/0734242X14538308. Epub 2014 Jun 27.

Abstract

Sewage sludge management is an energy intensive process. Anaerobic digestion contributes to energy efficiency improvement but is limited by the biological process. A review has been conducted prior to experimentation in order to evaluate the mass and energy balances on anaerobic digestion followed by gasification of digested sludge. The purpose was to improve energy recovery and reuse. Calculations were based on design parameters and tests that are conducted with the anaerobic digester of a local wastewater treatment plant and a small commercial gasification system. Results showed a very significant potential of energy recovery. More than 90% of the energy content from sludge was extracted. Also, approximately the same amount of energy would be transferred in both directions between the digester (biogas) and the gasifier (thermal energy). This extraction resulted in the same use of biogas as the reference scenario but final product was a totally dry biochar, which represented a fraction of the initial mass. Phosphorus was concentrated and significantly preserved. This analysis suggests that anaerobic digestion followed by dehydration, drying and gasification could be a promising and viable option for energy and nutrient recovery from municipal sludge in replacement of conventional paths.

摘要

污水污泥管理是一个能源密集型过程。厌氧消化有助于提高能源效率,但受生物过程的限制。在进行实验之前,已进行了一项综述,以评估厌氧消化后对消化污泥进行气化的质量和能量平衡。目的是提高能源回收和再利用。计算基于当地污水处理厂的厌氧消化器和小型商业气化系统的设计参数和测试。结果显示出非常显著的能源回收潜力。污泥中超过90%的能量被提取出来。此外,在消化器(沼气)和气化器(热能)之间,两个方向上转移的能量大致相同。这种提取导致沼气的使用与参考方案相同,但最终产品是完全干燥的生物炭,其质量占初始质量的一部分。磷被浓缩并得到显著保留。该分析表明,厌氧消化后进行脱水、干燥和气化可能是从城市污泥中回收能源和养分以替代传统途径的一个有前景且可行的选择。

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