Orra A A, Ratusznei S M, Rodrigues J A D, Foresti E, Zaiat M
Departamento de Engenharia Química e de Alimentos, Escola de Engenharia Mauá, Instituto Mauá de Tecnologia, Praça Mauá, CEP, São Caetano do Sul-SP, Brasil.
Water Sci Technol. 2004;49(11-12):303-10.
Data on the influence of feeding strategy on the performance of a fed-batch anaerobic sequencing reactor containing biomass immobilized on polyurethane foam and subjected to liquid phase circulation are presented and discussed. Six-hour cycles, temperature of 30 degrees C and circulation flow rate of 6 L/h were used. During each cycle 890 mL of synthetic domestic wastewater, with organic matter concentration of 500 mgCOD/L were fed to the reactor. The feeding strategies were implemented using fill times of 6 min (batch mode), 60, 120, 240 (fed-batch/batch mode) and 360 min (fed-batch mode). The system attained high efficiency and stability for all the operating conditions, and the substrate removal efficiency based on filtered samples presented a slight decrease from 85% to 81% when fill time was increased from 6 min to 360 min. A model considering a first-order kinetic equation was fitted to the experimental data. The apparent kinetic parameters for both batch and fed-batch phases were estimated, thus permitting evaluation of the influence of the feeding strategy on the reactor performance. The current system may be considered flexible in terms of the operating conditions it is subjected to.
本文介绍并讨论了进料策略对含固定在聚氨酯泡沫上且进行液相循环的分批补料厌氧序批式反应器性能影响的数据。采用6小时的周期、30℃的温度和6L/h的循环流速。在每个周期中,向反应器中加入890mL有机物质浓度为500mgCOD/L的合成生活污水。进料策略通过6分钟(间歇模式)、60、120、240分钟(分批补料/间歇模式)和360分钟(分批补料模式)的进料时间来实施。该系统在所有操作条件下均实现了高效和稳定,当进料时间从6分钟增加到360分钟时,基于过滤后样品的底物去除效率从85%略有下降至81%。将考虑一级动力学方程的模型拟合到实验数据中。估算了间歇和分批补料阶段的表观动力学参数,从而能够评估进料策略对反应器性能的影响。就其所处的操作条件而言,当前系统可被认为具有灵活性。