Batstone D J, Hernandez J L A, Schmidt J E
Environment and Resources, Technical University of Denmark (DTU), Byg 113, Bygningstorvet, Lyngby 2800DK, Denmark.
Biotechnol Bioeng. 2005 Aug 5;91(3):387-91. doi: 10.1002/bit.20483.
Laboratory-scale upflow anaerobic sludge blanket (UASB) reactors are often used as test platforms to evaluate full-scale applications. However, for a given volume specific hydraulic loading rate and geometry, the gas and liquid flows increase proportionally with the cube root of volume. In this communication, we demonstrate that a laboratory-scale reactor had plug-flow hydraulics, while a full-scale reactor had mixed flow hydraulics. The laboratory-scale reactor could be modeled using an existing biochemical model, and parameters identified, but because of computational speed with plug-flow hydraulics, mixed systems are instead recommended for parameter identification studies. Because of the scaling issues identified, operational data should not be directly projected from laboratory-scale results to the full-scale design.
实验室规模的上流式厌氧污泥床(UASB)反应器常被用作评估全规模应用的测试平台。然而,对于给定的体积比水力负荷率和几何形状,气体和液体流量与体积的立方根成比例增加。在本通讯中,我们证明了实验室规模的反应器具有推流水力特性,而全规模反应器具有混合流水力特性。实验室规模的反应器可以使用现有的生化模型进行建模并确定参数,但由于推流水力特性的计算速度问题,因此建议使用混合系统进行参数识别研究。由于已识别出的比例缩放问题,运行数据不应直接从实验室规模的结果推算到全规模设计中。