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Spatiotemporal variations in chromophoric dissolved organic matter (CDOM) in a mixed land-use river: Implications for surface water restoration

机译:混合土地利用河流发光溶解有机物(CDOM)的时尚变异:对地表水恢复的影响

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摘要

A challenge for current surface water restoration and management in China is acquiring the source information for complex pollution scenarios in order to develop effective control strategies. As an important part of dissolved organic matter, chromophoric dissolved organic matter (CDOM) contains unique chemical signals related to various pollution sources. Spectral methods such as fluorescence excitation-emission matrices coupled with parallel factor analysis enable rapid and low-cost CDOM characterization for source tracking. In this study, a typical small-sized river flowing through mixed land-use regions in southeastern China, the Lujiang River, was investigated to determine the responses of CDOM to spatiotemporal factors. The effects of land-use patterns were reflected by the fluorescent components of terrestrial and sewage substances. A high and stable proportion of terrestrial-like components (C1+ C2) in each sampling period (i.e., March: 47.6 ± 5.7% and October: 44.3 ± 2.7%) indicated a high input of non-point source (NPS) pollution from both agriculture and urban areas. In addition, the difference in solar radiation intensity induced by climate and air quality changes was also reflected by variability in the photodegradation product component (C3) of terrestrial precursors between October (24.8 ± 2.6%) and March (4.5 ± 2.0%), suggesting that terrestrial components could be a sensitive indicator for NPS pollutant monitoring. Increased sewage impact in downstream regions was reflected by a spike in the tryptophan-like component (C4); temporal variations in C4 (paired t-Test, p < 0.005) also indicated that sewage substances were more prone to removal by microbial activity in warmer seasons. The dynamics of C4 could serve as a good indicator of sewage disposal performance. The results of this study demonstrate that CDOM data have important practical applications for existing water restoration campaigns in southeastern China, as well as substantial potential for routine water quality monitoring.
机译:中国目前地表水恢复和管理的挑战正在获取复杂的污染方案的源信息,以便制定有效的控制策略。作为溶解有机物的重要组成部分,发色团溶解有机物(CDOM)含有与各种污染源有关的独特化学信号。诸如荧光激发排放矩阵的光谱方法,耦合与并联因子分析,使得源跟踪的快速和低成本的CDOM表征。在这项研究中,调查了典型的小型河流,庐江河南东南部的混合土地利用区,确定了CDOM对时尚因素的反应。土地使用模式的影响被陆地和污水物质的荧光分量反射。在每个采样期间(即3月:47.6±5.7%和10月:44.3±2.7%)的高稳定稳定的陆地组分(C1 + C2)比例表明了两者的非点源(NPS)污染的高输入农业和城市地区。此外,气候和空气质量变化诱导的太阳辐射强度的差异也在10月(24.8±2.6%)和3月(4.5±2.0%)之间的陆地前体的可变异性(4.5±2.0%)而异。该陆地组分可能是NPS污染物监测的敏感指标。增加下游区域的污水影响因色氨酸样组分(C4)中的尖峰反射; C4的时间变化(成对T检验,P <0.005)还表明,污水物质更容易被暖生季度的微生物活性移除。 C4的动态可以作为污水处理表现的良好指标。本研究结果表明,CDom数据对中国东南部的现有水恢复运动具有重要的实际应用,以及常规水质监测的实质性潜力。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|111498.1-111498.10|共10页
  • 作者单位

    School of Civil and Environmental Engineering Ningbo University Ningbo Zhejiang 315211 China;

    School of Civil and Environmental Engineering Ningbo University Ningbo Zhejiang 315211 China;

    School of Civil and Environmental Engineering Ningbo University Ningbo Zhejiang 315211 China;

    School of Civil and Environmental Engineering Ningbo University Ningbo Zhejiang 315211 China;

    School of Civil and Environmental Engineering Ningbo University Ningbo Zhejiang 315211 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Surface water; Source tracking; DOC; Watershed; EEM;

    机译:地表水;源跟踪;DOC;分水岭;EEM.;

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