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Processes influencing surface interaction and photocatalytic destruction of microcystins on titanium dioxide photocatalysts.

机译:影响微囊藻毒素在二氧化钛光催化剂上的表面相互作用和光催化破坏的过程。

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摘要

Microcystins are a family of hepatotoxic peptides produced by freshwater cyanobacteria. Their occurrence in drinking water is of concern since chronic exposure to these toxins causes tumor promotion. It is therefore essential to establish a reliable treatment strategy that will ensure their removal from potable water. We have previously described the rapid destruction of microcystin-LR using TiO2 photocatalysis, however, since there are at least 70 microcystin variants it is essential that the destruction of a number of microcystins be evaluated. In this study the dark adsorption and destruction of four microcystins was followed over a range of pH. All four microcystins were destroyed although the efficiency of their removal varied. The two more hydrophobic microcystins (-LW and -LF) were found to have high dark adsorption (98 and 91% at pH 4) in contrast to microcystin-RR, which was found to have almost no (only 2–3%) dark adsorption across all pH.
机译:微囊藻毒素是由淡水蓝细菌产生的肝毒性肽家族。它们在饮用水中的存在是令人关注的,因为长期暴露于这些毒素会促进肿瘤的发展。因此,必须建立可靠的处理策略,以确保将其从饮用水中去除。先前我们已经描述了使用TiO2光催化对微囊藻毒素LR的快速破坏,但是,由于存在至少70种微囊藻毒素变体,因此必须评估许多微囊藻毒素的破坏。在这项研究中,在一定的pH范围内跟踪了四种微囊藻毒素的暗吸附和破坏。尽管去除的效率各不相同,但所有四个微囊藻毒素均被破坏。发现与疏水性微囊藻毒素-RR几乎没有(只有2-3%)黑暗的微囊藻毒素-RR相比,另外两种疏水性微囊藻毒素(-LW和-LF)具有较高的暗吸附(在pH 4时为98和91%)在所有pH值下均具有吸附作用。

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