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纯UVA-LED柔印制版技术探讨
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作者 陈勇波 《印刷杂志》 2017年第1期37-42,共6页
东莞市长安长盈橡胶制版厂引进广州科茂纯UVA-LED柔印制版设备后,经过一段时间的使用及测试,积累了一些生产数据及使用经验,笔者特写此文,望能与业内人员共同探讨,通过大家的努力,进一步推动LED制版技术在柔印行业中的普及应用,提升柔... 东莞市长安长盈橡胶制版厂引进广州科茂纯UVA-LED柔印制版设备后,经过一段时间的使用及测试,积累了一些生产数据及使用经验,笔者特写此文,望能与业内人员共同探讨,通过大家的努力,进一步推动LED制版技术在柔印行业中的普及应用,提升柔印行业的制版水平。 展开更多
关键词 uva-lED 柔印制版 成像 曝光
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紫外光电芬顿降解四环素性能研究 被引量:8
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作者 叶鹭婷 王心如 +3 位作者 陈隋晓辰 陈雄建 陈晓 金延超 《福建师范大学学报(自然科学版)》 CAS 2023年第1期21-27,共7页
以钌铱钛电极为阳极,碳刷为阴极,长波紫外线LED灯为光源构建光电芬顿体系降解四环素.研究了四环素初始浓度、电流密度、pH值和通气条件对四环素降解的影响及不同类型的活性氧簇所发挥的作用.结果表明,·OH是降解四环素的主要活性物... 以钌铱钛电极为阳极,碳刷为阴极,长波紫外线LED灯为光源构建光电芬顿体系降解四环素.研究了四环素初始浓度、电流密度、pH值和通气条件对四环素降解的影响及不同类型的活性氧簇所发挥的作用.结果表明,·OH是降解四环素的主要活性物种,适宜的pH条件(pH=3)、通气增氧可显著提高四环素的降解率.当电流从60 mA增加至100 mA,四环素的降解率可提高至95.51%,最佳条件下四环素降解率达97.00%,矿化率达57.85%. 展开更多
关键词 四环素 光电芬顿 uva-lED 羟基自由基
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A highly efficient photocatalytic system for environmental applications based on TiO_(2) nanomaterials
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作者 Sapanbir S.Thind Mathias Paul +3 位作者 John B.Hayden Anuj Joshi David Goodlett J.Scott McIndoe 《Industrial Chemistry & Materials》 2023年第3期431-442,共12页
Sustainable and efficient water treatment techniques to improve the quality of water for various applications include advanced oxidation processes(AOP),mainly focusing on heterogeneous photocatalysis.Materials science... Sustainable and efficient water treatment techniques to improve the quality of water for various applications include advanced oxidation processes(AOP),mainly focusing on heterogeneous photocatalysis.Materials science and nanotechnology have contributed to tailoring the properties of photocatalytic materials to significantly enhance their photoactivity and stability.Here we report the development of a well-organized nanoporous TiO_(2)-based photocatalytic reactor for water treatment.Nanoporous TiO_(2) materials were directly grown using a two-step electrochemical anodization process in ethylene glycol+0.3 wt%NH_(4)F+2 wt%H_(2)O.The prepared nanomaterials were characterized by X-ray diffraction(XRD),scanning electron microscope(SEM),and energy-dispersive X-ray spectroscopy(EDX).To enhance the photocatalytic activity of the system,water scrubbing was incorporated to boost the presence of oxygen in the water,enhancing the electron uptake at the conduction band thus significantly reducing the electron–hole recombination and increasing the photocatalytic activity.To further enhance the efficiency and reduce the negative environmental impact of the technology,a UVA-LED assembly was used instead of the typical mercury-based UV lamps for photocatalysis.The nanoporous TiO_(2) was tested as a catalyst for the photochemical oxidation of various categories of pollutants;dye(methylene blue),and the removal of microbes such as E.coli.The photoreactor developed in this research work was also successfully applied and tested in real-world applications such as keeping heavily used hot-tub water clean without using harmful chemicals(chlorine,bromine,ozone,etc.)or expensive equipment.The simplicity and efficacy of the new approach described in this study make possible the integration of nanoporous TiO_(2) in the design of high-performance air and water purification technologies. 展开更多
关键词 TiO_(2)photocatalyst uva-leds Nanostructured materials Photochemical oxidation Wastewater treatment Water scrubbing
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