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Ultraviolet light-emitting diodes in water disinfection

机译:紫外线消毒器中的紫外线发光二极管

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摘要

Background, aim, and scope The novel system of ultra violet light-emitting diodes (UV LEDs) was studied in water disinfection. Conventional UV lamps, like mercury vapor lamp, consume much energy and are considered to be problem waste after use. UV LEDs are energy efficient and free of toxicants. This study showed the suitability of LEDs in disinfection and provided information of the effect of two emitted wavelengths and different test mediums to Escherichia coli destruction. Materials and methods Common laboratory strain of E. coli (K12) was used and the effects of two emitted wavelengths (269 and 276 nm) were investigated with two photolytic batch reactors both including ten LEDs. The effects of test medium were examined with ultrapure water, nutrient and water, and nutrient and water with humic acids. Results Efficiency of reactors was almost the same even though the one emitting higher wavelength had doubled optical power compared to the other. Therefore, the effect of wavelength was evident and the radiation emitted at 269 nm was more powerful. Also, the impact of background was studied and noticed to have only slight deteriorating effect. In the 5-min experiment, the bacterial reduction of three to four log colony-forming units (CFU) per cubic centimeter was achieved, in all cases. Discussion When turbidity of the test medium was greater, part of the UV radiation was spent on the absorption and reactions with extra substances on liquid. Humic acids can also coat the bacteria reducing the sensitivity of the cells to UV light. The lower wavelength was distinctly more efficient when the optical power is considered, even though the difference of wavelengths was small. The reason presumably is the greater absorption of DNA causing more efficient bacterial breakage. Conclusions UV LEDs were efficient in E. coli destruction, even if LEDs were considered to have rather low optical power. The effect of wavelengths was noticeable but the test medium did not have much impact. Recommendations and perspectives This study found UV LEDs to be an optimal method for bacterial disinfection. The emitted wavelength was found to be an essential factor when using LEDs; thus, care should be taken in selecting the proper LED for maximum disinfection.
机译:背景,目的和范围在水消毒中研究了新型的紫外线发光二极管(UV LED)系统。常规的紫外线灯,如汞蒸气灯,消耗大量能量,使用后被认为是有问题的废物。紫外线LED节能高效,不含任何有毒物质。这项研究表明了LED在消毒中的适用性,并提供了两种发射波长和不同测试介质对大肠杆菌破坏的影响的信息。材料和方法使用大肠杆菌的普通实验室菌株(K12),并使用两个均包含10个LED的光解间歇反应器研究了两个发射波长(269和276 nm)的影响。用超纯水,养分和水以及养分和水和腐殖酸检验了测试培养基的效果。结果即使一个发出更高波长的光功率比另一个更高,反应堆的效率几乎相同。因此,波长的影响是明显的,并且在269 nm处发射的辐射更强。另外,研究了背景的影响,并注意到其仅具有轻微的恶化作用。在5分钟的实验中,在所有情况下,每立方厘米细菌减少了3到4个对数菌落形成单位(CFU)。讨论当测试介质的浊度更大时,部分紫外线辐射被吸收并与液体上的多余物质发生反应。腐殖酸还可以覆盖细菌,从而降低细胞对紫外线的敏感性。当考虑光功率时,即使波长的差异很小,较低的波长也明显更有效。推测原因是DNA吸收更大,导致更有效的细菌破坏。结论即使LED被认为具有相当低的光功率,UV LED仍能有效破坏大肠杆菌。波长的影响很明显,但是测试介质的影响并不大。建议和观点这项研究发现紫外线LED是细菌消毒的最佳方法。发现发射的波长是使用LED时必不可少的因素。因此,应注意选择合适的LED以获得最大程度的消毒。

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