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Anaerobic processes as the core technology for sustainable domestic wastewater treatment: Consolidated applications,new trends,perspectives,and challenges

机译:厌氧工艺作为可持续的生活污水处理的核心技术:联合应用,新趋势,新观点和新挑战

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Anaerobic digesters have been responsible for the removal of large fraction of organic matter (mineralization of waste sludge) in conventional aerobic sewage treatment plants since the early years of domestic sewage treatment (DST).Attention on the anaerobic technology for improving the sustainability of sewage treatment has been paid mainly after the energy crisis in the 1970s.The successful use of anaerobic reactors (especially up-flow anaerobic sludge blanket (UASB) reactors) for the treatment of raw domestic sewage in tropical and sub-tropical regions (where ambient temperatures are not restrictive for anaerobic digestion) opened the opportunity to substitute the aerobic processes for the anaerobic technology in removal of the influent organic matter.Despite the success,effluents from anaerobic reactors treating domestic sewage require post-treatment in order to achieve the emission standards prevailing in most countries.Initially,the composition of this effluent rich in reduced compounds has required the adoption of post-treatment (mainly aerobic) systems able to remove the undesirable constituents.Currently,however,a wealth of information obtained on biological and physical-chemical processes related to the recovery or removal of nitrogen,phosphorus and sulfur compounds creates the opportunity for new treatment systems.The design of DST plant with the anaerobic reactor as core unit coupled to the pre- and post-treatment systems in order to promote the recovery of resources and the polishing of effluent quality can improve the sustainability of treatment systems.This paper presents a broader view on the possible applications of anaerobic treatment systems not only for organic matter removal but also for resources recovery aiming at the improvement of the sustainability of DST.
机译:自家用污水处理(DST)的早期以来,厌氧消化池就一直负责去除传统的好氧污水处理厂中的大部分有机物(废物污泥矿化)。厌氧技术对提高污水处理可持续性的关注主要是在1970年代的能源危机之后支付的。厌氧反应器(尤其是上流厌氧污泥层(UASB)反应器)成功用于热带和亚热带地区(环境温度为不仅限制了厌氧消化)还为有机技术去除厌氧技术提供了机会,以去除流入的有机物。尽管取得了成功,但厌氧反应器处理生活污水的废水需要进行后处理才能达到现行的排放标准。大多数国家。最初,这种废水的成分富含还原的mpounds要求采用能够去除不良成分的后处理(主要是好氧)系统。但是,目前,有关生物,物理化学过程的大量信息与氮,磷和硫化合物的回收或去除有关。为新的处理系统创造机会。以厌氧反应器为核心单元的DST工厂的设计与预处理和后处理系统相结合,以促进资源的回收和废水质量的抛光可以提高处理的可持续性本文对厌氧处理系统的可能应用进行了更广泛的介绍,该系统不仅用于去除有机物,而且还用于旨在改善DST可持续性的资源回收。

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