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Quantification of iron oxides in desert aerosol

机译:沙漠气溶胶中氧化铁的定量

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For assessing the impact of desert aerosols on climate, it is necessary to quantify their content in iron oxides minerals. These minerals are well known for their light absorbing properties. Iron contained in them―the so-called "free-iron" by soil scientists―represents only a part of the total-iron content. Indeed, the latter also includes the iron trapped in the crystal lattice of several desert aerosol mineralogical species. In this paper we propose an adapted technique to quantify the free-iron in desert aerosol based on a selective extraction method classically used in soil science. Adaptations are made necessary because of the low aerosol load collected on filter samples under field conditions (masses typically lower than 0.5 mg). Validation is obtained by comparing results of the adapted and classical methods when applied to the same geostandards. We analysed natural samples from three main desert source areas : Sahel (Niger during local erosion events), Sahara (Niger during Harmattan events) and Gobi desert (China). For these samples, the free-to-total iron ratio varied between 0.4 and 0.7. This natural variability indicates that the free-iron in aeolian dust is not directly proportional to the total-iron. As a consequence, total iron cannot be used directly to calculate dust light absorbing properties. The percentages of free-iron relative to the total estimated aerosol mass is 2.8%, 3.7%, and 5.0% in Saharan, Chinese, and Sahelian samples respectively.
机译:为了评估沙漠气溶胶对气候的影响,有必要量化其在氧化铁矿物质中的含量。这些矿物质因其吸光性能而闻名。其中所含的铁(土壤科学家所谓的“自由铁”)仅占总铁含量的一部分。实际上,后者还包括被困在几种沙漠气溶胶矿物学物种的晶格中的铁。在本文中,我们提出了一种基于土壤科学中经典使用的选择性提取方法,对沙漠气溶胶中的游离铁进行定量的改进技术。由于在野外条件下收集在过滤器样品上的气溶胶负荷较低(质量通常低于0.5 mg),因此必须进行调整。通过比较适用于相同地理标准的改进方法和经典方法的结果来进行验证。我们分析了来自三个主要沙漠源地区的天然样品:萨赫勒地区(在局部侵蚀事件中为尼日尔),撒哈拉沙漠地区(在Harmattan事件中为尼日尔)和戈壁沙漠(中国)。对于这些样品,游离铁与总铁之比在0.4到0.7之间变化。这种自然变化表明,风尘中的游离铁并不与总铁成正比。结果,总铁不能直接用于计算灰尘吸光性能。在撒哈拉,中国和萨赫勒地区的样本中,游离铁相对于总气溶胶质量的百分比分别为2.8%,3.7%和5.0%。

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