Li Zongjin, Xue Shaoxin, Hu Dongzi, Teng Da, Zhang Shiping, Shen Guoqing
School of Energy Power and Mechanical Engineering, North China Electric Power University, 2 Beinong Road, Beijing 102206, China.
ACS Omega. 2022 Jul 5;7(28):24596-24605. doi: 10.1021/acsomega.2c02407. eCollection 2022 Jul 19.
The typical flue gas exhaust temperature of coal-fired boilers is up to 150 °C. There is a considerable amount of waste heat that cannot be efficiently recovered. This study describes a zero-energy consumption absorption heat pump system that can improve the thermal efficiency and recover moisture. In the proposed system, lithium bromide solution serves as the recyclable heat-transfer medium, which absorbs sensible heat at the outlet of the air preheater by a generator. The latent heat of the flue gas is absorbed by an evaporator, and the condensate water appears. Theoretical investigation and mathematical models are built. Meanwhile, the operating parameters of the system are displayed. The results showed that the acid dew point of flue gas is related to the water content. The sorption heat pump efficiency (coefficient of performance) increased to 1.64. Compared with the two-stage heat exchanger system, 24.4 t/h condensate water and 47.21 MW waste heat were recovered. The flue gas temperature at the chimney entrance was reduced by 4.18 °C.
燃煤锅炉的典型排烟温度高达150℃。存在大量无法有效回收的废热。本研究描述了一种可提高热效率并回收水分的零能耗吸收式热泵系统。在所提出的系统中,溴化锂溶液作为可循环利用的传热介质,由发生器在空气预热器出口吸收显热。蒸发器吸收烟气的潜热,并出现冷凝水。建立了理论研究和数学模型。同时,展示了系统的运行参数。结果表明,烟气的酸露点与含水量有关。吸附式热泵效率(性能系数)提高到了1.64。与两级热交换器系统相比,回收了24.4吨/小时的冷凝水和47.21兆瓦的废热。烟囱入口处的烟气温度降低了4.18℃。