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Humification of effluent organic matters through a surface-flow constructed wetland

机译:通过表面流人工湿地对废水中的有机物进行增湿

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Dominant fractions of wastewater effluent organic matter (EfOM) were changed from polysaccharides (PS) to polyhydroxyaromatics (PHA), throughout the constructed treatment wetland connected to a wastewater treatment plant, as measured using pyrolysis gas chromatography-mass spectrometry (Py-GC/MS). The changes in the fractions were also identified, with respect to molecular weight (MW) distributions of the effluent organic matters, as measured using high performance size exclusion chromatography equipped with both UV and fluorescence detectors, for aromatic/hydrophobic and protein-like organic substances, respectively; organic matter, with MWs of approximately 2,500 and 20,000 Da, and approximately 38,000 Da, as measured by the UV and fluorescence detectors, respectively, were newly formed after the wetlands, especially for the samples of the Typha wetland in June and August against in December. Thus, with the above two different analyses, the humification type of transformation of EfOM through the treatment wetland, was believed to occur, probably due to biological transformation (from the comparison of results in June and August with those in December). It was anticipated that the humification of EfOM could reduce biodegradable organic portions of wastewater effluents even though total organic carbon levels were not reduced that much after the treatment wetland.
机译:使用热解气相色谱-质谱法(Py-GC / MS)测量,在与污水处理厂相连的整个处理湿地中,污水废水中有机物(EfOM)的主要部分从多糖(PS)变为多羟基芳烃(PHA)。 )。还使用有机物的分子量(MW)分布鉴定了馏分的变化,这是使用配备了UV和荧光检测器的高性能尺寸排阻色谱法测量的,用于芳香族/疏水性和蛋白质样有机物质, 分别;在湿地之后,特别是在6月和8月相对于12月的香蒲湿地样品中,新形成了有机物,其分子量分别约为2500 Da和20,000 Da,分别由UV和荧光检测器测量,约为38,000 Da。 。因此,通过以上两种不同的分析,认为通过处理湿地实现了EfOM转化的腐殖化类型,这可能是由于生物学转化(从6月和8月与12月结果的比较)。可以预见,即使处理湿地后总有机碳含量没有降低多少,EfOM的增湿处理仍会减少废水中可生物降解的有机部分。

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