作者:
作者单位: 1.同济大学 环境与科学工程学院,上海 200092;2.同济大学 建筑设计研究院(集团)有限公司,上海 200092;3.上海污染控制与生态安全研究院,上海 200092
作者简介: 吴志根(1979—),男,副教授,工学博士,主要研究方向为高盐废水蒸发脱盐的数值模拟和实验研究、强化换热等。E-mail: wuzhigen@tongji.edu.cn
通讯作者:
中图分类号: X703.1
基金项目: 国家重点研发计划(2019YFC1805204,2019YFC0408200);国家自然科学基金(51106112)
Experimental Study on the Application of Humidification-Dehumidification Technology in the Desalination of High- Salt Industrial Wastewater
Author:
Affiliation: 1.School of Environment and Science Engineering, Tongji University, Shanghai 200092,China;2.Tongji University Architectural Design and Research Institute (Group) Co. Ltd., Shanghai 200092,China;3.Shanghai Institute of Pollution Control and Ecological Safety, Shanghai 200092, China
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摘要:通过加湿除湿蒸发实验,对高盐工业废水34个不同水样采用了加湿除湿技术进行脱盐处理。在所得实验数据的基础上,对加湿除湿技术在实际工业中的普遍应用进行了可行性研究,并结合不同高盐工业废水的水质特点和处理效果,总结了判定该方法处理高盐工业废水的效果的一般规律。结果表明,实验中所有废水的冷凝液的电导率下降百分比
Abstract:Thirty-four different water samples of high-salt industrial wastewater were desalinated by humidification-dehumidification and evaporation experiments. Based on the experimental results, the feasibility study of the universal application of the humidification-dehumidification technology in actual industry is conducted. Combining with the water quality characteristics and treatment effects of different high-salt industrial wastewater, the general rule for judging the effect of this method on the treatment of high-salt industrial wastewater is summarized. The results show that the conductivity drop percentage ησ of the condensate of all wastewater in the experiment is above 80.0%, with the highest percentage of up to 99.9%. All the salinity of the condensate can reach the biochemical treatment standard, and the electrical conductivity of 32 condensates can be reduced to below 2 000 μS?cm-1. In addition, via the humidification-dehumidification technology, salt substances with a higher boiling point than water have a complete removal effect, salt substances with a lower boiling point than water and a larger ionization constant have a better removal effect, and salt substances with a lower boiling point than water and a smaller constants have a poor removal effect.
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