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全球变化科学紫荆论坛第419期:One Earth期刊介绍及写作技巧
清华大学材料科学与工程研究院《材料科学论坛》学术报告:Spin ConversionResearch...
卫健学术沙龙:实施性科学和复杂干预设计评价在疾病防治的应用
State-specific reaction dynamics of the nonvalence bound state of the anion
报告题目:
Development and Applications of Dispersible Nanoparticles for Remediation of Contaminated Water and Soils
 报告人:
Zhao Dongye, Associate Professor
Environmental Engineering Program
Department of Civil Engineering
Auburn University, Auburn, AL 36849, USA
报告时间:
2007-04-18 10:30
报告地点:
环境系系馆第一会议室
主办单位:
环境系
  简介:

报告题目:Development and Applications of Dispersible Nanoparticles for Remediation of ontaminated Water and Soils
报告人: Zhao Dongye, Associate Professor
Environmental Engineering Program,Department of Civil Engineering,
Auburn University, Auburn, AL 36849, USA
报告时间:4月18日(周三)上午:10:30-12:00
报告地点:环境系系馆第一会议室
主办研究所:环境化学研究所,饮用水安全研究所

ABSTRACT
This talk presents the development and potential applications of a new class of highly dispersible nanoparticles developed at Auburn University for environmental remediation uses. Using low-cost and environmentally friendly starch and cellulose as a stabilizer, we synthesized various novel nanoparticles including zero-valent iron (ZVI), iron sulfide, iron phosphate, palladium, and iron oxide nanoparticles for in situ environmental remediation uses. Compared to traditional non-stabilized particles, our stabilized nanoparticles offer some unprecedented advantages, including that 1) they can be easily delivered into the targeted contaminant zones in the subsurface, 2) they are more reactive, and 3) their size and transport can be controlled by manipulating the concentration and type of the stabilizers. Based on these nanoparticles, we developed a number of in situ remediation technologies, including 1) in-situ destruction of chlorinated hydrocarbons, nitrate and perchlorate in soils and water using stabilized ZVI nanoparticles, 2) in situ immobilization of mercury in soils and sediments using stabilized FeS nanoparticles, 3) in situ reductive immobilization of chromate in soils using stabilized ZVI nanoparticles, 4) in situ immobilization of Pb2+ using stabilized iron phosphate nanoparticles, and 5) in situ immobilization arsenate using stabilized magnetite nanoparticles. This presentation will briefly review these newly developed technologies.

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