from    
to    
search  

 


车辆与运载学院293期学术沙龙-An overview of battery development at Nissan anda...
清华化学前沿青年研讨会
AIR学术沙龙第35期|张数一:蛋白质适应度空间的进化压缩与AI重构
Chemistry Innovation and Biological Discovery through Natural ProductTotal Sy...
报告题目:
Water and Wastewater Treatment by Acoustic Cavitation using High Frequency Transducers
 报告人:
Michael R. Hoffmann 教授
加州理工研究生学院院长
报告时间:
2006-07-24 14:00
报告地点:
环境系馆一会
主办单位:
环境系
  简介:

报告题目: Water and Wastewater Treatment by Acoustic Cavitation using High Frequency Transducers(详见附件)
报 告 人: Michael R. Hoffmann 教授,加州理工研究生学院院长
(James Irvine Professor & Dean of Graduate Studies,California Institute of Technology)
报告时间: 2006-07-24 下午
报告地点: 环境系馆

Water and Wastewater Treatment by Acoustic Cavitation using High Frequency Transducers

 

by

 

Dr. Michael R. Hoffmann

James Irvine Professor of Environmental Science

Dean of Graduate Studies

Engineering & Applied Science

California Institute of Technology

Pasadena, CA 91125

 

Abstract

 

The chemical and physical effects of electrohydraulic cavitation induced by ultrasonic irradiation over the frequency range of 15 to 1000 kHz will be discussed.  Ultrasonic irradiation appears to be an effective method for the rapid destruction of organic and selected inorganic chemical contaminants present in water.  The degradation of chemical compounds by acoustic cavitation is shown to involve three distinct chemical pathways: 1) oxidation by hydroxyl radical formed during the vapor phase decomposition of water, 2) pyrolytic decomposition in transient collapsing cavitation bubbles due to high localized temperatures (e.g., 5000 K) and pressures (e.g., 1000 atm), and 3) due to supercritical water (T ³ 647 K and P ³ 220 atm) reactions. 

Detailed reaction mechanisms and mathematical models for the degradation of halogenated hydrocarbons, surfactants, and perfluoro compounds such as perfluorooctane sulfonate, perfluorooctanoic acid, and perfluor-alcohols will be presented.  The reaction rate dependencies on frequency, applied power, temperature, dissolved gases, substrate solubility, and multiple wave harmonics will be discussed.  Potential environmental applications, reactor design considerations, optimization, limitations, and scale-up of this physicochemical water treatment technology will be addressed.

 

今日相关信息
 
同类别相关信息
清华环境学术沙龙第278期:Health eff...
清华环境论坛第85讲:Research Needs ...
专利技术成果转移与技术评估
请注意活动取消!清华论坛第60讲:Fut...
清华环境学术沙龙第276期:A novel sho...
学术活动