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孟加拉国西北部农村地区地下水铁含量升高且不稳定。

Elevated and variable groundwater iron in rural northwestern Bangladesh.

机构信息

Department of International Health, Johns Hopkins Bloomberg School of Public Health, 615 N. Wolfe Street, Baltimore, MD 21205, USA.

出版信息

J Water Health. 2010 Dec;8(4):818-25. doi: 10.2166/wh.2010.144. Epub 2010 Apr 13.

Abstract

Over the past 30 years, tubewells have become a ubiquitous source of potable groundwater in South Asia. Considered safer than surface water, groundwater naturally contains minerals that may impact human health; however, few data exist on tubewell water mineral content or its association with human nutritional or health conditions. We surveyed iron concentration in tubewell water across a 435 km2, contiguous, rural area in northwestern Bangladesh to map and quantify levels of iron in drinking water. One tubewell was randomly sampled from each of 948 adjacent grid cells 675 m2 in size. Water sampling was standardized and iron concentration measured using a field-based colorimetric kit. The median (interquartile range) concentration of iron in tubewell water was 7.6 (1.6, 17.6) mg l(-1). There was high geographic variation (range of 0-46.5 mg l(-1)), and iron in only 3% of surveyed tubewells fell below the WHO aesthetic cut-off of 0.3 mg l(-1) suggesting elevated levels of iron throughout the area. Villagers accurately perceived groundwater iron concentration, based on a 4-point ('none', 'a little', 'medium', 'a lot') scale (p<0.001). Water source iron content can be readily quantified in population settings offering the potential to evaluate the health relevance of groundwater iron exposure in rural communities.

摘要

在过去的 30 年中,管井已成为南亚地区无处不在的可饮用水地下水来源。由于被认为比地表水更安全,地下水自然含有可能影响人类健康的矿物质;然而,关于管井水的矿物质含量或其与人类营养或健康状况的关系的数据很少。我们对孟加拉国西北部一个 435 平方公里的连续农村地区的管井水中的铁浓度进行了调查,以绘制和量化饮用水中的铁含量。从每个 675 平方米的 948 个相邻网格单元中随机抽取一口管井进行水样采集。采用基于现场的比色试剂盒对水样进行标准化处理,并测量铁浓度。管井水中铁的中位数(四分位距)浓度为 7.6(1.6,17.6)mg/L。存在很高的地理变异(范围为 0-46.5 mg/L),在调查的管井水中只有 3%的铁含量低于世卫组织 0.3 mg/L 的美学标准,这表明整个地区的铁含量都很高。村民们根据 4 分制(“无”、“一点”、“中等”、“很多”)准确感知地下水铁浓度(p<0.001)。在人群环境中可以很容易地定量测量水源铁含量,这为评估农村社区地下水铁暴露对健康的相关性提供了潜力。

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