课题基金 / 基金详情

Particle Hysteresis And Solidification Experiment : Optical and Nucleation Effects (PHASE-ONE)

Particle Hysteresis And Solidification Experiment : Optical and Nucleation Effects (PHASE-ONE)
粒子滞后和凝固实验:光学和成核效应(PHASE-ONE)
批准号:
1213632
负责人:
Giuseppe Petrucci
金额:
$66.54万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-15 至 2016-08-31

项目摘要

项目成果

Giuseppe Petrucci的其他基金

相似基金

相关文献

中文摘要
翻译
美国国家科学基金会化学部的环境化学科学项目支持佛蒙特大学的Giuseppe Petrucci教授和哈佛大学的scott T. Martin教授的研究,他们将阐明生物次生气溶胶(BSOA)的分子组成和相之间的关系,以及随后对BSOA光学性质和云凝结核(CCN)活性的影响。这项研究将对分子水平气溶胶特性与BSOA在调节地球辐射平衡中的作用之间的联系建立前所未有的理解。通过将每个机构内已建立的专业知识和研究基础设施汇集在一起,协同作用可能会确保对大气有机气溶胶这一关键方面的理解迅速推进。对有机气溶胶的化学、相和光学性质之间复杂的相互依存关系的进一步了解,以及将获得的基本数据,将对整个大气科学界大有裨益。此外,合作研究和培训基础设施以及培训机会将大大加强,并为这一领域的未来进展提供重要基础。
英文摘要
The Environmental Chemical Sciences Program in the Chemistry Division at the National Science Foundation supports the research of Professors Giuseppe Petrucci from the University of Vermont and Scot T. Martin from Harvard University who will elucidate the relationships between molecular composition and phase of biogenic secondary aerosols (BSOA) and the subsequent impact on BSOA optical properties and cloud condensation nuclei (CCN) activity. This research will build an unprecedented understanding of the link between molecular-level aerosol properties and the role of BSOA in regulating Earth's radiative balance. The synergism made possible by bringing together established expertise and research infrastructure within each institution would ensure rapid advance of the understanding of this critical aspect of atmospheric organic aerosol.The improved understanding of the complex interdependent relationships between chemical, phase and optical properties of organic aerosols, as well as the fundamental data that will be obtained will be of great benefit to the atmospheric sciences community at large. Furthermore, the collaborative research and training infrastructure as well as training opportunities, will be enhanced significantly and provide a critical foundation for future advances in this area.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
The effect of environmental conditions at particle genesis stage of secondary organic aerosol formation
EAGER: Advancing the Analysis of Secondary Organic Aerosols Through Innovations in Soft Ionization Aerosol Mass Spectrometry
Mechanistic Investigations of Secondary Organic Aerosol Growth
Atmospheric Particulate Organic Nitrates by Photoelectron Resonance Capture Ionization-Mass Spectrometry
海外基金