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Investigating the influences of season and coastal proximity on the elemental composition of harvested rainwater

机译:研究季节和沿海邻近地区对收获雨水元素组成的影响

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Chemical qualities of harvested rainwater were assessed at two residential study sites on the east coast of Australia in relation to coastal proximity and surrounding land uses over the course of a winter and summer month. Daily rainwater samples were collected from the base outlet and surface levels of stored water for chemical analyses. High resolution inductively coupled plasma-mass spectrometry (ICP-MS) was used to analyse 26 elements in all samples. The summer sampling regime for the industrial coastal Site 1 was dominated by wind gusts originating from the east with a total average elemental load of 25,900 +/- 17,000 mu g/L compared to the significantly lower 10,600 +/- 3,370 mu g/L measured during the winter month, where 84% of wind gust events originated from the west. Data for the inland Site 2, with no proximity to industry, revealed no significant changes in total average loads between the winter (4,870 +/- 578 mu g/L) and summer (4,760 +/- 2,280 mu g/L) months. The most abundant elements found at both sites included Na, K, Mg, and Zn. The rainwater storages at Site 2 fed from a relatively new concrete tiled roof catchment had significantly lower pH and conductivity measurements compared with those at Site 1 with an old galvanised iron roof catchment. It was concluded that seasonal differences in harvested water quality were likely influenced by prevailing wind direction and external influences such as surrounding land uses and proximity to the coast.
机译:在冬季和夏季的一个月内,在澳大利亚东海岸的两个住宅研究地点,评估了收集到的雨水的化学质量,并与沿海地区和周围土地利用相关。每天从基地出口处收集雨水样品,并从储存的水面采集水样进行化学分析。高分辨率电感耦合等离子体质谱法(ICP-MS)用于分析所有样品中的26种元素。工业沿海站点1的夏季采样方式主要来自东部的阵风,平均平均元素负荷为25,900 +/- 17,000μg / L,而测得的平均平均元素负荷低得多,为10,600 +/- 3,370μg / L在冬季,那里84%的阵风来自西方。内陆站点2的数据(与工业不接近)显示,冬季(4,870 +/- 578克/升)和夏季(4,760 +/- 2,280克/升)月份之间的总平均负荷没有显着变化。在这两个位置发现的最丰富的元素包括Na,K,Mg和Zn。与使用旧的镀锌铁屋顶集水区的站点1相比,由相对较新的混凝土瓦屋顶集水区提供的站点2的雨水存储的pH和电导率测量值明显降低。得出的结论是,收获水水质的季节性差异可能受到盛行的风向和外部影响(例如周围土地利用和靠近海岸)的影响。

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