Calvo L F, García A I, Otero M
IMARENABIO, University of León, Avenida de Portugal 41, 24071 León, Spain.
CESAM, Department of Chemistry, University of Aveiro, Campus de Santiago, 3810-193 Aveiro, Portugal ; Department of Applied Chemistry and Physics, University of León, Campus de Vegazana, 24071 León, Spain.
ScientificWorldJournal. 2013 Dec 25;2013:479403. doi: 10.1155/2013/479403. eCollection 2013.
The gasification of sewage sludge was carried out in a simple atmospheric fluidized bed gasifier. Flow and fuel feed rate were adjusted for experimentally obtaining an air mass : fuel mass ratio (A/F) of 0.2 < A/F < 0.4. Fuel characterization, mass and power balances, produced gas composition, gas phase alkali and ammonia, tar concentration, agglomeration tendencies, and gas efficiencies were assessed. Although accumulation of material inside the reactor was a main problem, this was avoided by removing and adding bed media along gasification. This allowed improving the process heat transfer and, therefore, gasification efficiency. The heating value of the produced gas was 8.4 MJ/Nm, attaining a hot gas efficiency of 70% and a cold gas efficiency of 57%.
污水污泥的气化在一个简单的常压流化床气化炉中进行。调节流量和燃料进料速率,以通过实验获得空气质量与燃料质量比(A/F)为0.2 < A/F < 0.4。对燃料特性、质量和功率平衡、产生气体的成分、气相碱和氨、焦油浓度、团聚倾向以及气体效率进行了评估。尽管反应器内部物料的积累是一个主要问题,但通过在气化过程中移除和添加床层介质避免了这一问题。这使得过程传热得到改善,从而提高了气化效率。产生气体的热值为8.4 MJ/Nm³,热气效率达到70%,冷气效率达到57%。