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Assessment of photo-oxidative alterations to natural organic matter in water using fluorescence excitation emission matrices and liquid chromatography-organic carbon detection techniques

机译:使用荧光激发发射矩阵和液相色谱 - 有机碳检测技术评估水中的光氧化改变在水中的天然有机物

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Fluorescence excitation emission matrices (FEEMs) and liquid chromatography-organic carbon detection (LC-OCD) are relatively novel techniques currently used for analysing natural organic matter (NOM) in water. Regardless of the complexity of natural water matrices, LC-OCD is able to characterize and quantify NOM as five fractions: biopolymers, humic substances, building blocks, low molecular weight neutrals, and low molecular weight acids. FEEMs on the other hand characterize chromophoric dissolved organic matter and map out its emission and excitation spectral contours. In the current study, these techniques were used to characterize and quantify NOM fractions in raw water used for cooling at Eskom power stations, as well as monitor the changes in their composition when irradiated with different intensities of sunlight using a sun simulator. The effect of hydrogen peroxide (H2O2) (an oxidant) together with exposure to light on NOM was also investigated. Firstly, the results showed that humic substances decreased with increased sunlight intensities. Secondly, a similar trend was observed with the introduction of an oxidant such as H2O2. The dissolved organic carbon (DOC) in irradiated samples decreased from 9.100 ppm (in raw water) to 8.832, 8.838 and 8.175 ppm for 0.6 sun, 1.2 sun and 2.0 sun, respectively. At a constant sunlight intensity (of 1.2 sun), addition of increasing amounts of 30% H2O2 showed that the distribution of NOM fractions changed significantly. Generally, a decreasing trend in the molecular weight of NOM was observed with increased irradiation intensity as well as increased oxidant amounts. The fluorescence signature peaks showed that the humic substance (HS) contours changed but remained relatively stable with an increase in light intensity. The results of the peroxide effect on humic substances showed disappearing spectral signature peaks. No spectral contours in the HS region were formed for samples illuminated by near natural sunlight intensity in the presence of H2O2. These results are particularly important in understanding NOM in water used for cooling in power generation stations.
机译:荧光激发发射矩阵(FEEMS)和液相色谱 - 有机碳检测(LC-OCD)是目前用于分析水中天然有机物(NOM)的相对新的技术。无论天然水矩阵的复杂性如何,LC-OCD都能够表征和量化NOM作为五分之一:生物聚合物,腐殖质,构建块,低分子量中性和低分子量酸。另一方面,Feems表征了发色体溶解的有机物并映射其排放和激发光谱轮廓。在目前的研究中,这些技术用于表征和量化用于在ESKOM发电站进行冷却的原水中的NOM分数,以及在使用太阳模拟器用不同阳光照射的不同强度照射组合物的变化。还研究了过氧化氢(H 2 O 2)(氧化剂)与NOM接触光的影响。首先,结果表明,湿湿的物质随着阳光强度的增加而降低。其次,通过引入氧化剂如H 2 O 2,观察到类似的趋势。辐照样品中的溶解有机碳(DOC)分别从9.100ppm(在原水)中减少到8.832,8.838和8.175ppm,分别为0.6阳光,1.2阳光和2.0阳光。在恒定的阳光强度(1.2℃),增加30%H 2 O 2的增加表明NOM部分的分布显着变化。通常,通过增加的照射强度和氧化量增加,观察到NOM的分子量的降低趋势。荧光签名峰表明,腐殖质物质(HS)轮廓改变但随着光强度的增加而保持相对稳定。对腐殖质物质的过氧化物作用的结果显示消失的光谱特征峰。没有在H 2 O 2存在下通过近自然阳光强度照射的样品形成HS区域中的光谱轮廓。这些结果对于了解用于在发电站冷却的水中的NOM中尤为重要。

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