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Fluidized Bed Combustion of Pelletized Sewage Sludge in a Pilot Scale Reactor

机译:中试反应器中颗粒污泥流化床燃烧

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Fluidized bed combustion stems out as one of the most feasible technology to burn sewage sludge. However, the performances of bubbling fluidized bed combustors fueled with pelletized sewage sludge are still lacking at pilot scale. In this work, an experimental campaign on a pilot scale bubbling fluidized bed combustor (FBC370), was carried out to investigate the effect of sewage sludge pelletization on combustion behavior. The gaseous and particulate emissions during stable thermal regimes for thermal power ranging roughly from 50 to 65 kW(th) were measured. Under the experimental conditions investigated, a stable and efficient combustion behavior was obtained in terms of low emissions of unburnt species, but a train of cleaning processes is necessary to reduce gaseous and particulate emissions. A two stage de-dusting system for the capture of fine and ultrafine particles and the proper units for the abatement of the NOx, SO2, and HCl produced in high concentrations are needed. The temperature profile in the post-combustion zone and stable combustion conditions are critical for the formation of dioxins. On the whole, the sewage sludge pelletization plays an important role in fuel conversion and in the formation of particulate and gaseous macro pollutants. In particular, it is observed that: 1) the partitioning between fly and bottom ash significantly changes reducing the generation of fines particles produced; 2) the stratified combustion of volatile matter and char particles can be enhanced at low fluidization velocity favoring bed agglomeration phenomena; 3) NO emissions are affected by ash accumulation inside the bed when efficient fuel mixing conditions are achieved.
机译:流化床燃烧是燃烧污水污泥的最可行技术之一。然而,在试验规模上仍缺乏以颗粒状污泥为燃料的鼓泡流化床燃烧器的性能。在这项工作中,在中试规模鼓泡流化床燃烧器(FBC370)上进行了一项实验,以研究污水污泥颗粒化对燃烧行为的影响。在稳定的热态下,对于大约50至65 kW(th)的热功率,测量了气体和颗粒物的排放。在所研究的实验条件下,就未燃物的低排放而言,获得了稳定而有效的燃烧行为,但是必须进行一系列清洁过程以减少气体和颗粒物的排放。需要一个两级除尘系统来捕获细小颗粒和超细颗粒,以及用于减少高浓度产生的NOx,SO2和HCl的适当装置。后燃烧区的温度曲线和稳定的燃烧条件对于形成二恶英至关重要。总体而言,污水污泥的颗粒化在燃料转化以及微粒和气态宏观污染物的形成中起着重要作用。特别地,观察到:1)粉煤灰和底灰之间的分配发生了显着变化,减少了产生的细颗粒的产生; 2)在低流化速度下,有利于床的团聚现象,可以增强挥发物和炭颗粒的分层燃烧; 3)当达到有效的燃料混合条件时,NO排放会受到床内灰分积聚的影响。

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