摘要
随着纳米技术的快速发展,纳米材料进入环境并不断累积,因此开展纳米材料的环境安全性研究具有重要意义.纳米银(Ag NP)是目前应用最广泛的人工纳米材料之一.本课题组拟以Ag NP为研究对象,系统研究其在我国主要类型土壤中的迁移、转化过程及其生态环境效应;基于同步辐射技术、同位素技术和量子化学计算等方法,揭示Ag NP与土壤中主要矿物或有机质之间的相互作用规律;探明Ag NP对土壤中微生物、动物和植物的致毒过程及其作用机制;发展Ag NP在土壤中迁移的数学模型,预测其在土壤中的迁移、滞留通量进而评价其淋溶风险,为Ag NP的安全利用提供重要理论基础和技术支撑.
The rapid development of nanotechnology is accompanied by critical environmental risks that need to be addressed and effectively managed. A comprehensive understanding of environmental safety of nanoparticles will promote the sustainability of nanotechnology. Nano Ag particle ( AgNP ) is one of the most widely used manufactured metalbased nanoparticles in the world. In our proposal, AgNP was chosen as the typical manufactured metalbased nanoparticles, the migration and transformation of AgNP in typical Chinese soils will be investigated to explore the physicochemical interactions of AgNP with soil components, such as clay minerals and soil organic matter, and to study the bioavailability and toxicity of AgNP in soil matrices on soil microorganisms, invertebrates and plants. The toxic effects of chronic/acute AgNP exposure on model soil inhabitants will be evaluated to establish doseeffect correlations, and to probe toxicity mechanism of AgNP . A mathematical model is further simulated to quantitatively assess AgNP migration and comigration, retention flux in soil, and their consequential environmental risk. The results will provide the fundamental basis and technological support for the development of green nanotechnology.
出处
《环境化学》
CAS
CSCD
北大核心
2015年第4期605-613,共9页
Environmental Chemistry
基金
国家自然科学基金重点项目(41430752)资助
关键词
纳米AG
迁移
转化
环境效应
nanoAg particle, transport, transformation, environmental effects.
作者简介
周东美,研究员,中国科学院土壤环境与污染修复重点实验室主任、国家自然科学基金委员会杰出青年基金获得者,长期从事土壤环境保护方面的研究工作.完成及正在进行国家自然科学基金项目、973课题和中国科学院创新工程项目等多项.已在Environ Sci Technol,Soil Sci SocAm J.Soil Till Res和Chemosphere等国内外土壤和环境类主流刊物上发表研究论文200多篇,其中SCI收录论文170余篇,总被SCI论文引用2500余次;参与编著《土壤中化学物质的行为与环境质量》(科学出版社,2002)和《环境土壤学》(科学出版社,2005)等书籍。通讯联系人,E-mail:dmzhou@issas.ac.cn