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High-rate anaerobic wastewater treatment: diversifying from end-of-the-pipe treatment to resource-oriented conversion techniques

机译:高速厌氧废水处理:从管道末端处理到资源导向的转化技术的多样化

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Decades of developments and implementations in the field of high-rate anaerobic wastewater treatment have put the technology at a competitive level. With respect to sustainability and cost-effectiveness, anaerobic treatment has a much better score than many alternatives. Particularly, the energy conservation aspect, i.e. avoiding the loss of energy for destruction of organic matter, while energy is reclaimed from the organic waste constituents in the form of biogas, was an important driver in the development of such systems. Invoked by the present greenhouse alert, the energy involved is nowadays translated into carbon credits, providing another incentive to further implement anaerobic technology. Anaerobic conversion processes, however, offer much more than cost-effective treatment systems. Selective recovery of metals, effective desulphurization, recovery of nutrients, reductive detoxification, and anaerobic oxidation of specific compounds are examples of the potentials of anaerobic treatment. This paper presents a survey on the state of the art of full-scale anaerobic high-rate treatment of industrial wastewaters and highlights current trends in anaerobic developments.
机译:高速率厌氧废水处理领域的数十年发展和实施已使该技术处于竞争水平。关于可持续性和成本效益,厌氧处理的得分比许多替代方案要好得多。特别地,节能方面,即避免能量损失以破坏有机物,同时以沼气的形式从有机废物成分中回收能量,是这种系统开发的重要驱动力。根据当前的温室警报,如今所涉及的能源已转化为碳信用额,为进一步实施厌氧技术提供了另一种动力。但是,厌氧转化工艺所提供的不仅仅是成本效益高的处理系统。金属的选择性回收,有效的脱硫,营养的回收,还原性解毒和特定化合物的厌氧氧化是厌氧处理潜力的例子。本文介绍了对工业废水进行全面厌氧高速率处理的技术现状,并重点介绍了厌氧技术发展的当前趋势。

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