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Humic-like substances extracted from composts can promote the photodegradation of Irgarol 1051 in solar light

机译:从堆肥中提取的类似腐殖质的物质可促进Irgarol 1051在太阳光下的光降解

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Humic-like substances (HLS) were extracted from a mixture of sewage sludges and trimmings (70-30%, w/w) after different times of composting (0, 70 days and 130 days). HLS were analyzed by elemental analysis, UV-visible and fluorescence spectroscopy and also tested for their ability to photosensitize the degradation of Irgarol. The rate of Irgarol photodegradation in artificial solar light was found to be 2.5- to 4.3-fold higher in the presence of HLS than in buffered Milli-Q water. These results were confirmed by experiments in solar light that evidenced the photodegrading properties of HLS in a more striking way. Using 2-propanol as hydroxyl radical scavenger, we could show that hydroxyl radicals contributed to the photosensitized Irgarol degradation for about 25%. The photodegrading activity of HLS, their absorbance and their emissive properties were all found to increase between 0 and 70 days of composting and to remain quite constant between 70 and 130 days. The degree of humification varied in the same way, linking all these properties to the humification process.
机译:经过不同的堆肥时间(0、70天和130天)后,从污水污泥和装饰物(70-30%,w​​ / w)的混合物中提取腐殖质样物质(HLS)。通过元素分析,紫外-可见光谱和荧光光谱对HLS进行了分析,还测试了它们对Irgarol降解的光敏能力。发现在HLS存在下,人造太阳光中Irgarol的光降解速率比在Milli-Q缓冲水中高2.5到4.3倍。这些结果在太阳光下的实验中得到了证实,该实验以更惊人的方式证明了HLS的光降解特性。使用2-丙醇作为羟基自由基清除剂,我们可以证明羟基自由基对光敏Irgarol的降解贡献约25%。发现HLS的光降解活性,其吸光度和它们的发射性质都在堆肥的0至70天之间增加并且在70至130天之间保持相当恒定。腐化度以相同的方式变化,将所有这些特性与腐化过程联系在一起。

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