Pretel R, Robles A, Ruano M V, Seco A, Ferrer J
a Institut Universitari d'Investigació d'Enginyeria de l'Aigua i Medi Ambient, IIAMA, Universitat Politècnica de València , Valencia , Spain.
b Departament d'Enginyeria Química, Escola Tècnica Superior d'Enginyeria , Universitat de València , Valencia , Spain.
Environ Technol. 2016 Sep;37(18):2298-315. doi: 10.1080/09593330.2016.1148903. Epub 2016 Mar 10.
The aim of this study is to propose a detailed and comprehensive plant-wide model for assessing the energy demand of different wastewater treatment systems (beyond the traditional activated sludge) in both steady- and unsteady-state conditions. The proposed model makes it possible to calculate power and heat requirements (W and Q, respectively), and to recover both power and heat from methane and hydrogen capture. In order to account for the effect of biological processes on heat requirements, the model has been coupled to the extended version of the BNRM2 plant-wide mathematical model, which is implemented in DESSAS simulation software. Two case studies have been evaluated to assess the model's performance: (1) modelling the energy demand of two urban wastewater treatment plants based on conventional activated sludge and submerged anaerobic membrane bioreactor (AnMBR) technologies in steady-state conditions and (2) modelling the dynamics of reactor temperature and heat requirements in an AnMBR plant in unsteady-state conditions. The results indicate that the proposed model can be used to assess the energy performance of different wastewater treatment processes and would thus be useful, for example, WWTP design or upgrading or the development of new control strategies for energy savings.
本研究的目的是提出一个详细且全面的全厂模型,用于评估不同废水处理系统(超越传统活性污泥法)在稳态和非稳态条件下的能源需求。所提出的模型能够计算电力和热量需求(分别为W和Q),并从甲烷和氢气捕获中回收电力和热量。为了考虑生物过程对热量需求的影响,该模型已与BNRM2全厂数学模型的扩展版本相结合,该扩展版本在DESSAS模拟软件中实现。已评估了两个案例研究以评估该模型的性能:(1)在稳态条件下对基于传统活性污泥法和浸没式厌氧膜生物反应器(AnMBR)技术的两个城市污水处理厂的能源需求进行建模,以及(2)在非稳态条件下对AnMBR厂的反应器温度和热量需求动态进行建模。结果表明,所提出的模型可用于评估不同废水处理工艺的能源性能,因此将是有用的,例如,用于污水处理厂的设计或升级,或开发新的节能控制策略。