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Photocatalytic disinfection of natural well water contaminated by Fusarium solani using TiO2 slurry in solar CPC photo-reactors

机译:太阳能CPC光反应器中使用TiO2浆料对枯萎镰刀菌污染的天然井水进行光催化消毒

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Phytopathogenic infection of food crops with fungi such as Fusarium spp. is a major problem faced by the farming industry and it has a major economic impact through the reduction in crop yields and through the need to use chemical pesticides to control the problem. As fungi are resistant to many disinfecting agents, which may also be phytotoxic or create environmental problems, more and more effort is being invested in the development of new control techniques for phytopathogenic fungi. It has recently been demonstrated on a small scale that the Fusarium, and within it, Fusarium solani, a plant and human pathogen, is susceptible to solar photocatalytic disinfection with TiO2 in distilled water.We report on disinfection of water contaminated by F. solani spores using a solar bottle reactor and a 14-L CPC solar photoreactor with distilled and also with natural well water. It was possible to reach high disinfection yields with different TiO2 concentrations (from 10 to 500 mg L~(-1)) and state flow conditions (20 L/min), at these volumes, not only in distilled, but also in natural well water. We also give the inactivation rate constant for the first stage of photocatalysis under the various experimental conditions, for selection of the best parameters for disinfecting water with phytopathogenic fungi in a future pilot treatment plant.
机译:对食用作物的植物致病性感染有真菌,例如镰孢属。这是农业面临的一个主要问题,它通过降低农作物的产量以及需要使用化学农药来控制这一问题而对经济产生重大影响。由于真菌对许多消毒剂具有抗药性,这些消毒剂也可能具有植物毒性或造成环境问题,因此越来越多的精力投入在开发新的植物病原性真菌防治技术上。最近有小规模的研究证明,镰刀菌及其内部的植物和人病原菌镰刀菌对蒸馏水中的TiO2可以进行光催化太阳光消毒。我们报道了被镰刀菌孢子污染的水的消毒作用。使用太阳能瓶反应器和带有蒸馏水以及天然井水的14升CPC太阳光反应器。在这些体积下,不仅在蒸馏中,而且在自然井中,使用不同的TiO2浓度(10至500 mg L〜(-1))和状态流动条件(20 L / min),都可以达到较高的消毒产量。水。我们还给出了在各种实验条件下光催化第一阶段的失活速率常数,以便在未来的中试工厂中选择最佳的参数,以植物致病真菌对水进行消毒。

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