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首页> 外文期刊>Atmospheric environment >Quantifying particulate matter deposition in Niwot Ridge, Colorado: Collection of dry deposition using marble inserts and particle imaging using the FlowCAM
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Quantifying particulate matter deposition in Niwot Ridge, Colorado: Collection of dry deposition using marble inserts and particle imaging using the FlowCAM

机译:量化科罗拉多州Niwot Ridge的颗粒物沉积:使用大理石插件收集干沉物,并使用FlowCAM进行颗粒成像

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摘要

Atmospheric wet and dry deposition are important sources of carbon for remote alpine lakes and soils. The carbon inputs from dry deposition in alpine National Atmospheric Deposition Program (NADP) collectors, including aeolian dust and biological material, are not well constrained due to difficulties in retaining particulate matter in the collectors. Here, we developed and tested a marble insert for dry deposition collection at the Niwot Ridge Long Term Ecological Research Station (NWT LTER) Soddie site (3345 m) between 24 May and 8 November 2011. We conducted laboratory tests of the insert's effect on particulate matter (PM) mass and non-purgeable organic carbon (DOC) and found that the insert did not significantly change either measurement. Thus, the insert may enable dry deposition collection of PM and DOC at NADP sites. We then developed a method for enumerating the collected wet and dry deposition with the Flow Cytometer and Microscope (FlowCAM), a dynamic-image particle analysis tool. The FlowCAM has the potential to establish morphology, which affects particle settling and retention, through particle diameter and aspect ratio. Particle images were used to track the abundance of pollen grains over time. Qualitative image examination revealed that most particles were biological in nature, such as intact algal cells and pollen. Dry deposition loading to the Soddie site as determined by FlowCAM measurements was highly variable, ranging from 100 to>230 g ha~(-1) d~(-1) in June-August 2011 and peaking in late June. No significant difference in diameter or aspect ratio was found between wet and dry deposition, suggesting fundamental similarities between those deposition types. Although FlowCAM statistics and identification of particle types proved insightful, our total-particle enumeration method had a high variance and underestimated the total number of particles when compared to imaging of relatively large volumes (60-125 mL) from a single sample. We recommend use of the FlowCAM, especially for subclasses of particles, but in light of uncertainty in particle counts, believe that it should be paired with traditional methods such as microscopy in this stage of the technique's development.Analysis of well-mixed samples produced lower variability than settling methods used for algae samples. Use of the marble inserts in the dry deposition collector in the NADP context is recommended, and the implications of various particle counting and identification methods are explored.
机译:大气干湿沉降是偏远高山湖泊和土壤的重要碳源。由于难以将颗粒物保留在收集器中,高山国家大气沉积计划(NADP)收集器中的干法沉积碳输入(包括风尘和生物材料)并未受到很好的限制。在这里,我们在2011年5月24日至11月8日之间的Niwot Ridge长期生态研究站(NWT LTER)Soddie站点(3345 m)开发并测试了用于干沉降收集的大理石插件。我们对插件对颗粒的影响进行了实验室测试。物质(PM)质量和不可净化的有机碳(DOC)的质量,发现插入物并没有明显改变任何一种测量方法。因此,插入物可以使得能够在NADP位点处干收集PM和DOC。然后,我们开发了一种使用流式细胞仪和显微镜(FlowCAM)(一种动态图像颗粒分析工具)对收集的干,湿沉积物进行枚举的方法。 FlowCAM具有建立形态的潜力,该形态会通过粒径和长宽比影响粒子的沉降和保留。粒子图像用于跟踪一段时间内花粉粒的丰度。定性图像检查显示,大多数颗粒在本质上是生物的,例如完整的藻类细胞和花粉。通过FlowCAM测量确定,Soddie站点的干沉降负荷变化很大,2011年6月至2011年8月范围为100至> 230 g ha〜(-1)d〜(-1),6月下旬达到峰值。湿法沉积和干法沉积之间的直径或纵横比没有显着差异,表明这些沉积类型之间的基本相似之处。尽管FlowCAM的统计数据和颗粒类型识别证明是有见地的,但与从单个样品中进行较大体积(60-125 mL)成像相比,我们的总颗粒枚举方法具有很大的差异并且低估了颗粒总数。我们建议使用FlowCAM,尤其是对于颗粒的子类,但鉴于颗粒计数的不确定性,相信在该技术开发的这一阶段应将其与传统方法(如显微镜)配对使用。比用于藻类样品的沉降方法具有更大的可变性。建议在NADP环境下在干法沉积收集器中使用大理石插件,并探讨各种颗粒计数和识别方法的含义。

著录项

  • 来源
    《Atmospheric environment》 |2013年第12期|549-558|共10页
  • 作者单位

    Institute of Arctic and Alpine Research, University of Colorado at Boulder, UCB 450, Boulder, CO 80309, USA,Perkins Hall, Room 103, 35 Oxford Street, Harvard University, Cambridge, MA 02138, USA;

    Institute of Arctic and Alpine Research, University of Colorado at Boulder, UCB 450, Boulder, CO 80309, USA,Department of Civil Engineering, Kansas State University, 2118 Fiedler Hall, Manhattan, KS 66506, USA;

    Institute of Arctic and Alpine Research, University of Colorado at Boulder, UCB 450, Boulder, CO 80309, USA;

    Institute of Arctic and Alpine Research, University of Colorado at Boulder, UCB 450, Boulder, CO 80309, USA;

    Institute of Arctic and Alpine Research, University of Colorado at Boulder, UCB 450, Boulder, CO 80309, USA;

    Department of Civil Engineering, Kansas State University, 2118 Fiedler Hall, Manhattan, KS 66506, USA;

    Institute of Arctic and Alpine Research, University of Colorado at Boulder, UCB 450, Boulder, CO 80309, USA,Department of Geography, University of Colorado at Boulder, UCB 360, Boulder, CO 80309, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Marble insert; Dry deposition; Wet deposition; FlowCAM; Pollen; Particle imaging; Particulate matter;

    机译:大理石嵌件;干法沉积;湿沉降;FlowCAM;花粉;粒子成像颗粒物;

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