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城市污水回用和污水污泥资源回收高级处理技术的生命周期可持续性评估。

Life cycle sustainability assessment of advanced treatment techniques for urban wastewater reuse and sewage sludge resource recovery.

机构信息

Sustainable Industrial Systems, Department of Chemical Engineering, The University of Manchester, Manchester M13 9PL, UK.

Sustainable Industrial Systems, Department of Chemical Engineering, The University of Manchester, Manchester M13 9PL, UK.

出版信息

Sci Total Environ. 2023 Apr 15;869:161771. doi: 10.1016/j.scitotenv.2023.161771. Epub 2023 Jan 23.

Abstract

Wastewater treatment plants can become a source of valuable resources, such as clean water, energy, fuels and nutrients and thus contribute to the sustainable development goals and a transition to a circular economy. This can be achieved by adopting advanced wastewater and sludge treatment techniques. However, these have to be evaluated on their sustainability to avoid any unintentional consequences. Therefore, this paper presents a life cycle sustainability assessment of advanced wastewater and sludge treatment techniques by integrating the environmental, economic and social aspects. The options considered for advanced wastewater treatment are: i) granular activated carbon; ii) nanofiltration; iii) solar photo-Fenton; and iv) ozonation. The technologies for advanced sludge treatment are: i) agricultural application of anaerobically digested sludge; ii) agricultural application of composted sludge; iii) incineration; iv) pyrolysis; and v) wet air oxidation. The results for the advanced wastewater treatment techniques demonstrate that nanofiltration is the most sustainable option if all the sustainability aspects are considered equally important. If, however, a higher preference is given to the economic aspect, ozonation and granular activated carbon would both be comparable to nanofiltration; if the social aspect is considered more important, only activated carbon would be comparable to nanofiltration. Among the sludge treatment methods, agricultural application of sludge is the most sustainable technique for mean-to-high resource recovery. If the recovery rate is lower, this option is comparable with incineration and pyrolysis with high recovery of their respective products. This work helps to identify the most sustainable techniques that could be combined with conventional wastewater treatments for promoting wastewater reuse and resource recovery across a wide range of operating parameters and products outputs. The findings also support the notion that more sustainable wastewater treatment could be achieved by a circular use of water, energy and nutrients contained in urban wastewaters.

摘要

污水处理厂可以成为有价值资源的来源,例如清洁水、能源、燃料和养分,从而为可持续发展目标和向循环经济转型做出贡献。这可以通过采用先进的废水和污泥处理技术来实现。然而,这些技术必须在可持续性方面进行评估,以避免任何意外的后果。因此,本文通过综合考虑环境、经济和社会方面,对先进的废水和污泥处理技术进行了生命周期可持续性评估。考虑的先进废水处理选项有:i)颗粒活性炭;ii)纳滤;iii)太阳能光芬顿;和 iv)臭氧氧化。先进污泥处理技术有:i)厌氧消化污泥的农业应用;ii)堆肥污泥的农业应用;iii)焚烧;iv)热解;和 v)湿式空气氧化。先进废水处理技术的结果表明,如果所有可持续性方面同等重要,纳滤是最可持续的选择。然而,如果更倾向于经济方面,臭氧氧化和颗粒活性炭与纳滤相当;如果更重视社会方面,只有活性炭与纳滤相当。在污泥处理方法中,污泥的农业应用是资源回收利用率较高的最可持续技术。如果回收率较低,这种选择与焚烧和热解相当,因为它们可以回收各自产品的高回收率。这项工作有助于确定最可持续的技术,这些技术可以与传统的废水处理相结合,以促进在广泛的操作参数和产品输出范围内的废水再利用和资源回收。研究结果还支持这样一种观点,即通过循环利用城市废水中所含的水、能源和养分,可以实现更可持续的废水处理。

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