Experimental Study on the Application of Humidification-Dehumidification Technology in the Desalination of High- Salt Industrial Wastewater

被引:0
|
作者
Wu Z. [1 ,3 ]
Qiu L. [1 ]
Zhu Y. [2 ]
Wu S. [1 ]
Yu X. [1 ]
机构
[1] School of Environment and Science Engineering, Tongji University, Shanghai
[2] Tongji University Architectural Design and Research Institute (Group) Co. Ltd., Shanghai
[3] Shanghai Institute of Pollution Control and Ecological Safety, Shanghai
来源
| 1600年 / Science Press卷 / 49期
关键词
Electrical conductivity; Evaporative desalination; High-salt industrial wastewater; Humidification and dehumidification;
D O I
10.11908/j.issn.0253-374x.21005
中图分类号
学科分类号
摘要
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. © 2021, Editorial Department of Journal of Tongji University. All right reserved.
引用
收藏
页码:1435 / 1442
页数:7
相关论文
共 27 条
  • [21] XU Lihua, QI Li, LIU Enhua, Et al., Advanced treatment of landfill leachate by nanofiltration/reverse osmosis/lime coagulation method, Water Treatment Technology, 38, 4, (2012)
  • [22] DONG X, WANG Y, Li X, Et al., Process simulation of laboratory wastewater treatment via supercritical water oxidation, Industrial & Engineering Chemistry Research, 53, 18, (2014)
  • [23] LIU Yanli, LIU Ge, Analysis and discussion on high water consumption problems in coal chemical industry, Coal Science and Technology, 44, 4, (2016)
  • [24] QIAO Lili, GENG Cuiyu, QIAO Ruiping, Et al., Research progress in coal gasification wastewater treatment methods, Coal Processing and Comprehensive Utilization, 2, (2015)
  • [25] YUAN Weijun, LI Jiansheng, Treatment of phenol-containing wastewater from two-stage boiler gas station by evaporation concentration method, Industrial Safety and Environmental Protection, 37, 5, (2011)
  • [26] ZHOU Fengman, ZHAO Yingwu, Discussion on the treatment and reuse of wastewater from the comprehensive production of lithium battery lead-acid batteries, Water Supply and Wastewater, 53, 7, (2017)
  • [27] XUE Dianhua, Air conditioning, (2001)