Carlos III University of Madrid (Spain), Department of Thermal and Fluids Engineering, Avda. de la Universidad 30, 28911 Leganés (Madrid), Spain.
VTT Technical Research Centre of Finland Ltd, Renewable Energy Processes. Ruukinmestarintie 2, Fl-02330 Espoo, Finland.
Waste Manag. 2020 Mar 15;105:27-38. doi: 10.1016/j.wasman.2020.01.036. Epub 2020 Feb 1.
The combustion of dry sewage sludge particles in a bubbling fluidized bed was studied in detail, analyzing the composition of the exhaust gases by means of a FTIR equipment. The operating conditions of the fluidized bed, i.e., the bed temperature and mass flow rate of fluidizing air, were varied to quantify their effect on the exhaust gas composition. The bed material was also varied, using sepiolite, silica sand and braunite particles, to evaluate the effect of different bed densities on the pollutant emissions. The results obtained for the combustion of sewage sludge particles in the different fluidized beds tested were compared to combustion tests run for the same operating conditions and bed materials using Cynara cardunculus L. as a fuel. Pollutant emissions derived from sludge combustion are much higher than those obtained from combustion of Cynara. The operating conditions also affect the emissions, e.g., the concentration of CO in the exhaust fumes decreased substantially when increasing bed temperature and air flow rate. The bed density has an effect on the combustion efficiency of sludge, obtaining higher efficiencies in low-density beds for high temperature and air flow rates, while the efficiency was increased in high-density beds for low bed temperature and fluidizing air flow rate. The effects of ash accumulation and agglomerates formation were also analyzed.
详细研究了在鼓泡流化床中干燥污水污泥颗粒的燃烧过程,通过傅里叶变换红外(FTIR)设备分析废气的组成。改变流化床的操作条件,即床温和流化空气的质量流速,以量化它们对废气成分的影响。还改变了床料,使用海泡石、硅砂和褐铁矿颗粒,以评估不同床密度对污染物排放的影响。将在测试的不同流化床中燃烧污水污泥颗粒的结果与在相同操作条件和床料下使用蓟作为燃料进行的燃烧测试进行了比较。污泥燃烧产生的污染物排放量远高于蓟燃烧产生的污染物排放量。操作条件也会影响排放,例如,当增加床温和空气流速时,废气中 CO 的浓度会大幅降低。床密度对污泥的燃烧效率有影响,在高温和高空气流速下的低密度床中获得更高的效率,而在低床温和流化空气流速下的高密度床中则提高了效率。还分析了积灰和团聚物形成的影响。