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热泵驱动型加湿-除湿废液处理系统的性能

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基于加湿-除湿原理搭建了废液处理实验台,并利用热泵为系统同时提供热源和冷源。通过调节循环风机及溶液泵频率(25~50 Hz),着重研究了循环风量和废液流量对填料传热传质特性及废液处理性能参数的影响。结果表明,废液的初始pH、SS、COD分别为13。51、166 mg/L、2 117 mg/L,系统分离出的清液pH、SS、COD分别为8。2、4。0 mg/L、53。2 mg/L,水质得到极大改善。填料传热传质系数随循环风量和空气侧雷诺数的增加而升高,净水产量(PWPA)、净水回收率(PWRR)也随循环风量的增加而升高,填料的增益输出比(GOR)随循环风量的增加先升高后降低。填料传热传质系数随废液流量和废液侧雷诺数的增加而升高,PWPA也随废液流量的增加而升高,但PWRR随废液流量的增加而降低,GOR随废液流量的增加先逐步提高,然后几乎保持不变。由于不同性能参数受循环风量和废液流量的影响规律并不一致,需根据优先考虑的性能参数选择合适的循环风量和废液流量。
Performance of humidification-dehumidification wastewater treatment system driven by heat pump
A wastewater treatment experimental bench based on principle of humidification and dehumidification was built with using a heat pump to provide both heat and cold sources for the system.By adjusting the frequency(25-50 Hz)of circulating fan and solution pump,the effects of circulating air flow rate and wastewater flow rate on heat and mass transfer characteristics and performance parameters of wastewater treatment were emphatically stud-ied.Experimental results showed that when the initial pH,SS and COD of wastewater were 13.51,166 mg/L,2 117 mg/L respectively,the pH,SS and COD of clear liquid separated by the system were 8.2,4.0 mg/L,53.2 mg/L re-spectively,which meant that water quality was greatly improved.Heat and mass transfer coefficients of packing in-creased with the increase of circulating air flow rate and air-side Reynolds number.Pure water production rate(PWPA)and pure water recovery rate(PWRR)also increased with the increase of circulating air flow rate.Gain out-put ratio(GOR)of packing increased firstly and then decreased with the increase of circulating air flow rate.Heat and mass transfer coefficients of packing increased with the increase of flow rate and Reynolds number of wastewa-ter.PWPA also increased with the increase of wastewater flow rate,but PWRR decreased with the increase of waste-water flow rate.GOR increased gradually with the increase of wastewater flow rate,and then remained almost un-changed.Due to different influence laws of circulating air flow rate and wastewater flow rate on different perfor-mance parameters,it was necessary to select the appropriate circulating air flow rate and wastewater flow rate based on priority performance parameters.

humidification-dehumidificationheat pumpcirculating air volumewastewater flow rate

姜林林、王道榆、谈京京、黄勇华、袁霏

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南通职业大学电子信息工程学院,江苏 南通 226001

加湿-除湿 热泵 循环风量 废液流量

2025

工业水处理
中海油天津化工研究设计院

工业水处理

北大核心
影响因子:0.737
ISSN:1005-829X
年,卷(期):2025.45(1)