Characterisation of Constructed Wetland Substrates by Chemical Sequential Extraction and X-Ray Diffraction Analyses

IF 0.6 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
A. O'Sullivan, R. Conlon, B. Moran, M. Otte
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引用次数: 6

Abstract

Abstract:Substrates from four-and-a-half year old constructed wetlands built to treat wastewater from an active metal mine were analysed for elevated metal and sulphur concentrations by chemical sequential extractions and X-ray diffraction analyses. Amounts of Fe, Pb, Zn and S were quantified in substrates from the first cells of multi-celled (in-series) treatment wetland systems at three different depths. The analyses showed that the majority of metals removed from the wastewater were retained in residual immobile forms in the upper 0-5cm of the waterlogged anaerobic substrates. Although substantial concentrations of metals and sulphur were retained in the substrates, the amounts were generally not sufficient to allow accurate mineralogical identification by X-ray diffraction. Classification of the sediments using X-ray techniques was further confounded by the highly organic nature of the wetland substrates. These results suggest that chemical analyses of wetland substrates may still provide a clearer interpretation of metal accumulation over time, especially in wastewaters characterised by relatively low metal concentrations flowing through organically rich substrates. While X-ray diffraction can provide useful interpretation of sediment crystallography and mineralogy, there are limitations in using this technology to characterise young wetland substrates.
人工湿地基质的化学序贯萃取和x射线衍射分析表征
摘要/ Abstract摘要:采用化学顺序萃取和x射线衍射分析的方法,分析了4年半前为处理活性金属矿山废水而建造的人工湿地基质中金属和硫的浓度升高。对三种不同深度的多细胞(串联)处理湿地系统第一批细胞基质中铁、铅、锌和硫的含量进行了定量分析。分析表明,从废水中去除的大部分金属以残留的不动形式保留在淹水厌氧基质的上部0-5cm。虽然基质中保留了大量的金属和硫,但其数量通常不足以通过x射线衍射进行准确的矿物学鉴定。利用x射线技术对沉积物进行分类进一步混淆了湿地基质的高度有机性质。这些结果表明,湿地基质的化学分析仍然可以更清楚地解释金属随时间的积累,特别是在金属浓度相对较低的废水中流经有机丰富的基质。虽然x射线衍射可以为沉积物晶体学和矿物学提供有用的解释,但使用该技术表征年轻湿地基质存在局限性。
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
6
审稿时长
>36 weeks
期刊介绍: The journal aims to offer a broad coverage of the subject area, including the following: - biology and ecology of the Irish flora and fauna - microbial ecology - animal, plant and environmental physiology - global change - palaeoecology and palaeoclimatology - population biology; conservation of genetic resources - pollution and environmental quality; ecotoxicology - environmental management - hydrology - land use, agriculture, soils and environment. Submissions on other relevant topics are also welcome, and papers of a cross-disciplinary nature are particularly encouraged.
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