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Combining thermal hydrolysis with drying and downstream thermal processes to optimize energy recovery from sewage sludge

机译:将热水解与干燥和下游热处理相结合,以优化污水污泥的能量回收

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Thermal hydrolysis of sewage sludge prior to subsequent anaerobic digestion is a well-established process with nearly 90 facilities worldwide. Cambi, the market leader, has two thirds of the installations ranging in size from 11 - 450 t DS/d. The majority of plants are combined with land use of the biosolids as a low carbon fertilizer due to the biosolids meeting Class A standard under the US EPA 503 regulations. In addition, the dewatered biosolids are friable, have low odor and high dry solids which make it a desirable product. However, there are instances where land application is limited due to regulations or topography, or clients have existing thermal infrastructure and want to maximize its use. The aim of this paper is to demonstrate how combining thermal hydrolysis with digestion prior to thermal systems such as drying and incineration can be beneficial and highlights full-scale case studies to quantify the influence in the field.
机译:在随后的厌氧消化之前,污水污泥的热水解是一项行之有效的过程,在全球范围内拥有近90个设施。市场领先者Cambi拥有三分之二的装置,规模从11至450吨DS / d。由于生物固体符合美国EPA 503法规的A类标准,因此大多数植物都与生物固体的土地利用结合在一起用作低碳肥料。另外,脱水的生物固体易碎,气味低,干燥固体高,这使其成为理想的产品。但是,在某些情况下,土地的使用由于法规或地形而受到限制,或者客户拥有现有的热力基础设施,并希望最大程度地利用土地。本文的目的是证明在热系统(如干燥和焚烧)之前将热水解与消化相结合是如何有益的,并重点介绍了全面的案例研究,以量化该领域的影响。

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