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Thermophilic versus Mesophilic Anaerobic Digestion of Sewage Sludge: A Comparative Review

机译:嗜污与嗜温厌氧消化污泥的比较

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摘要

During advanced biological wastewater treatment, a huge amount of sludge is produced as a by-product of the treatment process. Hence, reuse and recovery of resources and energy from the sludge is a big technological challenge. The processing of sludge produced by Wastewater Treatment Plants (WWTPs) is massive, which takes up a big part of the overall operational costs. In this regard, anaerobic digestion (AD) of sewage sludge continues to be an attractive option to produce biogas that could contribute to the wastewater management cost reduction and foster the sustainability of those WWTPs. At the same time, AD reduces sludge amounts and that again contributes to the reduction of the sludge disposal costs. However, sludge volume minimization remains, a challenge thus improvement of dewatering efficiency is an inevitable part of WWTP operation. As a result, AD parameters could have significant impact on sludge properties. One of the most important operational parameters influencing the AD process is temperature. Consequently, the thermophilic and the mesophilic modes of sludge AD are compared for their pros and cons by many researchers. However, most comparisons are more focused on biogas yield, process speed and stability. Regarding the biogas yield, thermophilic sludge AD is preferred over the mesophilic one because of its faster biochemical reaction rate. Equally important but not studied sufficiently until now was the influence of temperature on the digestate quality, which is expressed mainly by the sludge dewateringability, and the reject water quality (chemical oxygen demand, ammonia nitrogen, and pH). In the field of comparison of thermophilic and mesophilic digestion process, few and often inconclusive research, unfortunately, has been published so far. Hence, recommendations for optimized technologies have not yet been done. The review presented provides a comparison of existing sludge AD technologies and the gaps that need to be filled so as to optimize the connection between the two systems. In addition, many other relevant AD process parameters, including sludge rheology, which need to be addressed, are also reviewed and presented.
机译:在高级生物废水处理过程中,大量污泥会作为处理过程的副产物产生。因此,污泥资源和能源的再利用和回收是一项巨大的技术挑战。废水处理厂(WWTP)产生的污泥处理量很大,占了总运营成本的很大一部分。在这方面,污水污泥的厌氧消化(AD)仍然是生产沼气的有吸引力的选择,沼气可有助于降低废水管理成本并促进这些污水处理厂的可持续性。同时,AD减少了污泥量,这又有助于减少污泥处置成本。然而,污泥量仍保持最小,这是一个挑战,因此提高脱水效率是污水处理厂运行的必然部分。结果,AD参数可能对污泥特性产生重大影响。影响AD过程的最重要的操作参数之一是温度。因此,许多研究人员比较了污泥AD的嗜热和中温模式的优缺点。但是,大多数比较都集中在沼气产量,处理速度和稳定性上。关于沼气产量,由于嗜热污泥AD的生化反应速度更快,因此它比嗜温污泥AD更可取。同样重要但至今尚未充分研究的是温度对消化质量的影响,其主要表现为污泥的脱水能力和废水质量(化学需氧量,氨氮和pH)。迄今为止,在嗜热消化和嗜温消化过程的比较领域中,很少有研究,而且常常是无定论的研究。因此,关于优化技术的建议尚未完成。提出的评论比较了现有污泥AD技术和需要填补的空白,以优化两个系统之间的联系。此外,还审查并介绍了许多其他相关的AD工艺参数,包括需要解决的污泥流变性。

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