He Lu, Xia Yudong, Li Chuang, Jiang Aipeng, Zhao Yan, Xie Fengling
School of Automation, Hangzhou Dianzi University, Hangzhou 310018, China.
Chn Energy Lucency Enviro-Tech Co., Ltd., Beijing 100039, China.
Membranes (Basel). 2022 Apr 29;12(5):478. doi: 10.3390/membranes12050478.
Focusing on the problems of opaqueness and high energy consumption in coal-fired power plant wastewater recycling processes, this paper studies the simulation and operational optimization of coal-fired power plant wastewater treatment by taking a coal-fired power plant system in Inner Mongolia as an example. Firstly, based on the solution-diffusion theory, pressure drop, and osmotic concentration polarization, a mechanistic model equation for coal-fired power plant wastewater treatment is developed. Secondly, the equation fitness and equation parameters are calibrated to obtain an accurate model. Thirdly, the system is simulated and analyzed so as to obtain the influence and change trajectories of different feed flowrates, temperatures, pressures, and concentrations on various aspects of the system's performance, such as water recovery rate, salt rejection rate, and so on. Finally, in order to reduce the operating cost of the system, an optimization analysis is carried out, with the lowest specific energy consumption and average daily operating cost as optimization goals, and the performance changes of the system before and after optimization under three different working conditions are compared. The results show that adopting the given optimal strategy can significantly reduce the system's operational cost. This research is helpful for the digitization and low-carbon operation of coal-fired power plant wastewater treatment systems.
针对燃煤电厂废水回用过程中存在的水质不透明和能耗高的问题,本文以内蒙古某燃煤电厂系统为例,对燃煤电厂废水处理进行模拟与运行优化研究。首先,基于溶解-扩散理论、压降和渗透浓差极化,建立了燃煤电厂废水处理的机理模型方程。其次,对方程的拟合度和方程参数进行校准,以获得准确的模型。第三,对系统进行模拟分析,得到不同进料流量、温度、压力和浓度对系统性能各方面(如水回收率、脱盐率等)的影响及变化轨迹。最后,为降低系统运行成本,以最低比能耗和日均运行成本为优化目标进行优化分析,并比较三种不同工况下优化前后系统的性能变化。结果表明,采用给定的优化策略可显著降低系统运行成本。该研究有助于燃煤电厂废水处理系统的数字化和低碳运行。