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Water Res. 2016 Nov 1;104:53-71. doi: 10.1016/j.watres.2016.07.069. Epub 2016 Jul 30.
A review concerning the development and applicability of sewage sludge thermal hydrolysis especially prior to anaerobic digestion is presented. Thermal hydrolysis has proven to be a successful approach to making sewage sludge more amenable to anaerobic digestion. Currently there are 75 facilities either in operation or planning, spanning several continents with the first installation in 1995. The reported benefits of thermal hydrolysis relate to: increased digestion loading rate due to altered rheological properties, improved biodegradation of (especially activated) sludge and enhanced dewaterability. In spite of its relative maturity, there has been no attempt to perform a critical review of the pertinent literature relating to the technology. Closer look at the literature reveals complications with comparing both experimental- and full-scale results due to differences in experimental set-up and capability, and also site-specific conditions at full-scale. Furthermore, it appears that understanding of thermodynamic and rheological properties of sludge is key to optimizing the process, however these parameters are largely overlooked by the literature. This paper aims to bridge these complexities in order to elucidate the benefits of thermal hydrolysis for sewage treatment, and makes recommendations for further development and research.
本文回顾了污水污泥热解技术的发展和适用性,特别是在厌氧消化之前的应用。热解已被证明是一种使污水污泥更适合厌氧消化的有效方法。目前,全球有 75 个设施正在运行或规划中,涉及多个大陆,第一个设施于 1995 年建成。热解的报告益处包括:由于流变性质的改变,消化负荷率增加,(特别是活性)污泥的生物降解得到改善,脱水性能得到增强。尽管它已经相对成熟,但还没有人试图对该技术的相关文献进行批判性回顾。更仔细地研究文献表明,由于实验设置和能力的差异,以及在全规模情况下的特定地点条件,比较实验和全规模结果存在复杂性。此外,似乎理解污泥的热力学和流变学性质是优化工艺的关键,但文献在很大程度上忽略了这些参数。本文旨在解决这些复杂性,阐明热解技术在污水处理方面的好处,并为进一步的发展和研究提出建议。