Construction and testing of a low-cost device for the collection of rainfall samples destined for stable isotope analysis

IF 1.5 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES South African Journal of Science Pub Date : 2023-08-08 DOI:10.17159/sajs.2023/14914
J. Holmes, J. Fitchett
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Abstract

Oxygen- and hydrogen-isotope ratios in rainfall provide important hydroclimatic information, yet despite a global network of rainfall isotope measurements, significant geographical gaps exist in data coverage, with only three long-term stations spanning the southern African region. Project-based, ad hoc collections of rainfall for isotope analysis can improve this coverage. However, all rainfall samples that are destined for stable isotope analysis must be collected in such a way to avoid evaporation and resultant isotope fractionation. While such rainwater collectors are available commercially, both the product and shipping are prohibitively costly. We describe the construction of a simple rainfall collector using a design from the literature and materials that are readily available in South African hardware stores. Our rainwater collector can be constructed for the much lower cost of just under ZAR820 in comparison with the cost of ZAR9300 inclusive of shipping from commercial outlets (2022 prices). Our design modifications have the added advantage of portability, with the rainwater collector housed in a bucket with a handle. The device was tested by comparing its performance, in terms of evaporative water loss and isotopic fractionation, with that of an open bottle, using tap water in both cases. Testing confirmed that the collector prevented evaporation over a one-week period, indicating that it is suitable for weekly or more frequent sampling of rainfall. Although the design described was based on materials procured in South Africa, it could easily be adapted for construction elsewhere.
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用于收集稳定同位素分析的降雨样本的低成本装置的建造和测试
降雨中的氧和氢同位素比率提供了重要的水文气候信息,然而,尽管有一个全球降雨同位素测量网络,但数据覆盖范围存在重大的地理差距,只有三个长期监测站横跨南部非洲地区。基于项目的、用于同位素分析的临时降雨收集可以提高覆盖率。然而,所有用于稳定同位素分析的降雨样本都必须以这样的方式收集,以避免蒸发和由此产生的同位素分馏。虽然这种雨水收集器可以在商业上买到,但产品和运输成本都高得令人望而却步。我们描述了一个简单的雨水收集器的结构,使用了南非五金店现成的文献和材料中的设计。我们的雨水收集器可以以略低于ZAR820的成本建造,而包括商业网点运输在内的成本为ZAR9300(2022年价格)。我们的设计修改增加了便携性的优势,雨水收集器安装在带把手的水桶中。该装置通过比较其在蒸发水损失和同位素分馏方面的性能,与在两种情况下都使用自来水的开瓶装置进行了测试。测试证实,收集器在一周内防止了蒸发,这表明它适合每周或更频繁地对降雨进行采样。尽管所描述的设计是基于在南非采购的材料,但它可以很容易地适应其他地方的施工。
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来源期刊
South African Journal of Science
South African Journal of Science 综合性期刊-综合性期刊
CiteScore
3.20
自引率
4.20%
发文量
131
审稿时长
1 months
期刊介绍: The South African Journal of Science is a multidisciplinary journal published bimonthly by the Academy of Science of South Africa. Our mandate is to publish original research with an interdisciplinary or regional focus, which will interest readers from more than one discipline, and to provide a forum for discussion of news and developments in research and higher education. Authors are requested to write their papers and reports in a manner and style that is intelligible to specialists and non-specialists alike. Research contributions, which are peer reviewed, are of three kinds: Review Articles, Research Articles and Research Letters.
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