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水中贾第鞭毛虫和卡氏棘阿米巴包囊的光催化消毒

Photocatalytic disinfection of Giardia intestinalis and Acanthamoeba castellani cysts in water.

作者信息

Sökmen Münevver, Değerli Serpil, Aslan Alper

机构信息

Karadeniz Technical University, Faculty of Science and Literature, Department of Chemistry, 61080 Trabzon, Turkey.

出版信息

Exp Parasitol. 2008 May;119(1):44-8. doi: 10.1016/j.exppara.2007.12.014. Epub 2008 Jan 1.

Abstract

In this study, disinfection of water containing Giardia intestinalis and Acanthamoeba castellani cysts with TiO2 and modified catalyst silver loaded TiO2 (Ag-TiO2) was investigated. Destruction of the parasites was evaluated after UV illumination of the suspension consisting 5 x 10(8)-13.5 x 10(8)cysts/mL in the presence of 2g/L neat or modified TiO2 at neutral pH. In the initial stage, the solid photocatalyst particles penetrated the cyst wall and then oxidant species produced by TiO2/UV destroyed both cell wall and intracellular structure. In the case of G. intestinalis inactivation (disinfection) performance of TiO2/UV system reached 52.5% only after 25 min illumination and total parasite disinfection was achieved after 30 min illumination. However, silver loaded TiO2 seemed to be more effective as this loading provided better catalytic action as well as additional antimicrobial properties. Cell viability tests showed that parasite cysts, their walls in particular, were irreversibly damaged and cysts did not re-grow. Nevertheless the studied system seemed to be ineffective for the inactivation of A. castellani. Inactivation percentages of TiO2/UV and Ag-TiO2/UV systems were far lower than that of UV alone, being 50.1% and 46.1%, respectively.

摘要

在本研究中,对含有肠道贾第鞭毛虫和卡氏棘阿米巴包囊的水用二氧化钛和改性催化剂负载银的二氧化钛(Ag-TiO₂)进行消毒处理进行了研究。在中性pH值下,于含有2g/L纯二氧化钛或改性二氧化钛的情况下,对含有5×10⁸ - 13.5×10⁸个包囊/毫升的悬浮液进行紫外线照射后,评估寄生虫的破坏情况。在初始阶段,固体光催化剂颗粒穿透包囊壁,然后由TiO₂/UV产生的氧化物种破坏细胞壁和细胞内结构。就肠道贾第鞭毛虫的灭活(消毒)性能而言,TiO₂/UV系统仅在照射25分钟后达到52.5%,照射30分钟后实现寄生虫的完全消毒。然而,负载银的二氧化钛似乎更有效,因为这种负载提供了更好的催化作用以及额外的抗菌性能。细胞活力测试表明,寄生虫包囊,尤其是其壁,受到了不可逆的损伤,包囊不会再生长。然而,所研究的系统似乎对卡氏棘阿米巴的灭活无效。TiO₂/UV和Ag-TiO₂/UV系统的灭活百分比远低于单独紫外线的灭活百分比,分别为50.1%和46.1%。

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