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Ammonia (NH3) in the marine atmosphere and impact on aerosols (Ref:4299)

Ammonia (NH3) in the marine atmosphere and impact on aerosols (Ref:4299)
海洋大气中的氨 (NH3) 及其对气溶胶的影响(参考:4299)
批准号:
2698395
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
项目背景:大气微粒(气溶胶)是影响地球气候和空气质量的关键。氨(NH3)是气溶胶(形成颗粒铵,NH4+)的主要前体气体之一,也是大气中的主要碱,中和酸并促进新颗粒的形成。在过去的几十年里,污染法规(如《清洁空气法》)大大减少了欧洲和北美酸性气溶胶前体的排放,包括化石燃料燃烧排放的硫和氮氧化物。然而,主要由农业驱动的NH3排放几乎没有减少。这导致了气溶胶pH值和化学成分的长期变化,目前还不清楚。此外,我们缺乏对天然NH3来源的了解。海洋NH4+可能是海洋大气NH3的主要来源,这取决于生物地球化学、水温和海水ph。区域/全球尺度的海气NH3通量估算受到以下因素的严重阻碍:a)海洋大气NH3观测资料的缺乏;b)空气-水NH3交换过程的机制研究的缺乏。因此,NH3在全球气候模式中没有得到很好的体现,其影响也没有得到很好的约束或被忽视。项目目标和方法:预计该博士项目将结合长期环境观测、实验室实验和地球系统模型,以显著提高我们对大气NH3循环、海洋NH3排放以及NH3对气溶胶影响的认识。鼓励学生确定博士学位的比例重点。研究问题的一些例子可能是:1。不同气团(例如大西洋海洋气团、欧洲大陆气团、北极气团)中大气NH3和气溶胶NH4+的浓度是多少?它们的季节变化如何?2 .海气NH3交换是否如现有理论所预测的那样(作为水温和pH的函数),海洋是否是海洋大气NH3的主要来源?(来自海洋的)NH3对海洋气溶胶和云的影响是什么?未来海洋NH3排放将如何变化?这对海洋气溶胶、云和气候可能有什么反馈?
英文摘要
Project Background:Atmospheric particles (aerosols) are key to the Earth's climate and affect air quality. Ammonia (NH3) is oneof the principal precursor gases to aerosols (forming particulate ammonium, NH4+) and the primary base inthe atmosphere, neutralising acids and facilitating new particle formation. Over the last few decades,pollution regulations (e.g. Clean Air Acts) have significantly reduced the emissions of acidic aerosolprecursors in Europe and North America, including sulphur and nitrogen oxides emitted from fossil fuelcombustion. However, NH3 emissions, driven largely by agriculture, have hardly decreased. This hasresulted in long-term changes in aerosol pH and chemistry that are not well understood. Additionally, welack understanding of natural NH3 sources. Oceanic NH4+ may be a key source of NH3 to the marineatmosphere, depending on biogeochemistry, water temperature and water pH. Estimates of air-sea NH3flux on a regional/global scale are severely hampered by a) a paucity of marine atmospheric NH3observations, and b) a lack of mechanistic studies of air-water NH3 exchange processes. As a result, NH3 isnot well represented in global climate models and its impact is poorly constrained or neglected.Project Aims and Methods:It is envisaged that this PhD project will combine long-term ambient observations, laboratory experiments,and an Earth System Model to significantly improve our understandings in atmospheric NH3 cycling, oceanicNH3 emissions, and the impact of NH3 on aerosols. The student is encouraged to define the proportionalfocus of the PhD. Some examples of research questions may be:1. What are the concentrations of atmospheric NH3 and aerosol NH4+in different airmasses (e.g.marine Atlantic, mainland Europe, Arctic) and how do they vary seasonally?2. Does air-sea NH3 exchange behave as predicted according to existing theory (as a function of watertemperature and pH) and is the ocean a large source of NH3 to the marine atmosphere?3. What are the impacts of (ocean-derived) NH3 on marine aerosols and clouds?4. How will oceanic NH3 emission change in the future and what feedback may that have on marine aerosols, clouds and climate?
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海外基金
基于技术演替的我国农业NH3和N2O协同减排路径研究
  • 批准号:
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  • 项目类别:
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    --
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    52306179
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    30.00万元
  • 批准年份:
    2023
  • 负责人:
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荷电液滴传质吸收NH3与反应吸收H2S协同吸附焦炭颗粒特性研究
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    CSTB2023NSCQ-MSX0718
  • 项目类别:
    省市级项目
  • 资助金额:
    10.0万元
  • 批准年份:
    2023
  • 负责人:
    邹磊
  • 依托单位:
膜蒸馏结晶回收沼液氨氮过程中NH3与H2O(g)的反向跨膜传递调控机制
  • 批准号:
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2023
  • 负责人:
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