首页> 外文期刊>Water Research >Relationships between molecular weight and fluorescence properties for size-fractionated dissolved organic matter from fresh and aged sources
【24h】

Relationships between molecular weight and fluorescence properties for size-fractionated dissolved organic matter from fresh and aged sources

机译:新鲜和陈化来源的大小分级的溶解有机物的分子量与荧光性质之间的关系

获取原文
获取原文并翻译 | 示例
       

摘要

Relationships between the molecular weight (MW) and fluorescence properties of dissolved organic matter (DOM) are important considerations for studies seeking to connect these properties to water treatment processes. Relationships between the size and fluorescence properties of nine allochthonous DOM sources (i.e. leaf leachates, grass, and headwaters) were measured using asymmetrical flow field-flow fractionation (AF4) with on-line absorbance and fluorescence detectors. Correlations between optical properties and MW were readily apparent using parallel factor analysis (PARAFAC) coupled to self-organizing maps (SOM): protein/polyphenol-like fluorescence (peaks B and T) was highest at lower molecular weights (<0.5 kDa), fulvic/humic-like fluorescence (peaks A, C, and M) was highest at mid-weights (0.5-1 kDa), and humic-like fluorescence (Peaks A + C) was highest at larger molecular weights (>1 kDa). Proportions of peaks B, T, and A + C were significantly correlated with MW (p <0.001). The first principal component (PC1, 42% of variation in fluorescence properties) was a significant predictor of sample MW (R2 = 0.63, p < 0.05), while scores on PC2 (27% of total variance) traced a source-based gradient from deciduous leachates/headwaters through to coniferous leachates/headwaters. PC3 (13% of var.) was also correlated with MW (p <0.005). A secondary peak in peak T fluorescence was associated with larger size fractions in aged sources, and scores on PC1 also traced a path from the leachates of fresher leaves, through more humified leaves, to headwaters. Findings are consistent with the hypothesis that the structure of aged DOM arises through supramolecular assembly.
机译:分子量(MW)与溶解有机物(DOM)的荧光性质之间的关系是寻求将这些性质与水处理过程联系起来的研究的重要考虑因素。使用具有在线吸收率和荧光检测器的非对称流场流分馏(AF4)测量了九种异源DOM源(即叶沥出液,草和源水)的大小与荧光性质之间的关系。使用平行因子分析(PARAFAC)结合自组织图(SOM),很容易看出光学性质和MW之间的相关性:蛋白质/多酚样荧光(峰B和T)在较低分子量(<0.5 kDa)时最高,中等强度(0.5-1 kDa)的腐殖质/腐殖质样荧光(峰A,C和M)最高,而分子量较大(> 1 kDa)则腐殖质样荧光(峰A + C)最高。 。峰B,T和A + C的比例与MW显着相关(p <0.001)。第一个主成分(PC1,荧光性质变化的42%)是样品MW的重要预测指标(R2 = 0.63,p <0.05),而PC2的得分(占总方差的27%)则是从落叶渗滤液/源水直至针叶渗滤液/水源。 PC3(占总含量的13%)也与MW相关(p <0.005)。 T荧光峰中的第二个峰与衰老源中较大的馏分相关,PC1上的分数还追踪了从较鲜叶的浸出液到更湿润的叶再到源头的路径。这些发现与衰老的DOM结构通过超分子组装产生的假设是一致的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号