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Sonication for advanced drinking water treatment

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【作者】 张光明魏希柱李相昆张杰豆子波

【Author】 ZHANG Guang-ming, WEI Xi-zhu, LI Xiang-kun, ZHANG Jie, DOU Zi-bo (State Key Lab of Urban Water Resource Environment, Harbin Institute of Technology, Harbin 150090,China)

【机构】 State Key Lab of Urban Water Resource Environment,Harbin Institute of Technology

【摘要】 This paper investigated the feasibility of sonication as an advanced treatment method for drinking water production and used comprehensive indexes of water quality to examine its efficiency. Results show that sonication significantly reduces the toxicity of water. Sonication with 5 W/L at 90 kHz lasting for 30 min decreases the water SUVA and the disinfection byproduct formation potential (DBPFP) by 38.7% and 27.2% respectively. Sonication also decreases the UV254 by more than 50% through destroying unsaturated chemical bonds. Higher sound intensity and higher frequency benefit the reduction of TOC and UV254. Besides, sonication significantly increases the affinity of organics with granular activated carbon (GAC), and thus the hybrid sonication-GAC method reduces the water TOC, COD, UV254, and DBPFP by 78.3%, 69.4%, 75.7%, and 70.0% respectively. Therefore, sonication and the hybrid sonication-GAC method are proposed as advanced treatment methods for drinking water.

【Abstract】 This paper investigated the feasibility of sonication as an advanced treatment method for drinking water production and used comprehensive indexes of water quality to examine its efficiency. Results show that sonication significantly reduces the toxicity of water. Sonication with 5 W/L at 90 kHz lasting for 30 min decreases the water SUVA and the disinfection byproduct formation potential (DBPFP) by 38.7% and 27.2% respectively. Sonication also decreases the UV254 by more than 50% through destroying unsaturated chemical bonds. Higher sound intensity and higher frequency benefit the reduction of TOC and UV254. Besides, sonication significantly increases the affinity of organics with granular activated carbon (GAC), and thus the hybrid sonication-GAC method reduces the water TOC, COD, UV254, and DBPFP by 78.3%, 69.4%, 75.7%, and 70.0% respectively. Therefore, sonication and the hybrid sonication-GAC method are proposed as advanced treatment methods for drinking water.

【关键词】 sonicationdrinking wateradvanced treatmentDBPFP
【Key words】 sonicationdrinking wateradvanced treatmentDBPFP
【基金】 Sponsored by the National High Technology Research and Development Program of China(Grant No.2007AA06Z339);the National Science Foundation for Post-doctoral Scientists of China(Grant No.2006AA06Z306)
  • 【文献出处】 Journal of Harbin Institute of Technology ,哈尔滨工业大学学报(英文版) , 编辑部邮箱 ,2009年01期
  • 【分类号】TU991.2
  • 【被引频次】1
  • 【下载频次】160
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