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The ability of household pitcher-style water purifiers to remove microcystins depends on filtration rate and activated carbon source

机译:家用投手式净水器去除微囊藻毒素的能力取决于过滤速率和活性炭源

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摘要

Toxic cyanobacterial blooms are a global threat to human health due to contamination of drinking water. To ensure public safety, water treatment plants must have the capability to remove cyanotoxins from water. Recently, however, there have been several instances when microcystins, a common group of cyanotoxins, have been detected in tap water. This research investigated if commercially available pitcher-style water purifiers were able to remove microcystins from water. Microcystins were extracted from two naturally occurring blooms in Lake Erie, diluted to initial concentrations ranging from 1 to 5 μg/L, and then subjected to three purifier types. Results showed that the purifier with the fastest percolation rate (126 seconds/L) and a filter cartridge comprised solely of coconut-based activated carbon removed 50% or less of the microcystins, while the purifier with the slowest percolation rate (374 seconds/L) and a blend of activated carbon decreased microcystins to below detectable levels (0.10 μg/L) in all experiments. Thus, pitcher-style purifiers with slow percolation rates and composed of a blend of active carbon can provide an additional layer of protection against microcystins; however, it is recommended that consumers switch water sources when cyanotoxins are confirmed to be in tap water.
机译:由于饮用水的污染,有毒的蓝细菌繁殖是对人类健康的全球威胁。为了确保公共安全,水处理厂必须具有从水中去除氰毒素的能力。但是,近来有几种实例在自来水中检测到微囊藻毒素(一种常见的蓝藻毒素)。这项研究调查了商用水罐式净水器是否能够从水中去除微囊藻毒素。微囊藻毒素是从伊利湖中的两次自然开花中提取的,稀释至初始浓度为1至5μg/ L,然后进行三种纯化类型。结果表明,渗滤速度最快(126秒/ L)的纯化器和仅由椰子基活性炭组成的滤芯去除了50%或更少的微囊藻毒素,而渗滤速度最慢的纯化器(374秒/ L) )和活性炭混合物将微囊藻毒素降低到所有实验中可检测的水平以下(<0.10μg/ L)。因此,具有缓慢渗透速率并由活性炭混合物组成的投手式净化器可提供额外的保护层,以防御微囊藻毒素。但是,建议消费者在确认自来水中存在氰毒素后,切换水源。

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