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利用荧光示踪剂跟踪藻类生长和混凝/絮凝过程中的致痛溶解有机物(AOM)。

Using fluorescence surrogates to track algogenic dissolved organic matter (AOM) during growth and coagulation/flocculation processes of green algae.

机构信息

Department of Environment & Energy, Sejong University, Seoul 05006, South Korea.

Department of Environment & Energy, Sejong University, Seoul 05006, South Korea.

出版信息

J Environ Sci (China). 2019 May;79:311-320. doi: 10.1016/j.jes.2018.12.006. Epub 2019 Jan 3.

DOI:10.1016/j.jes.2018.12.006
PMID:30784454
Abstract

Tracking the variation of the algogenic organic matter (AOM) released during the proliferation of green algae and subsequent treatment processes is crucial for constructing and optimizing control strategies. In this study, the potential of the spectroscopic tool was fully explored as a surrogate of AOM upon the cultivation of green algae and subsequent coagulation/flocculation (C/F) treatment processes using ZrCl and Al(SO). Fluorescence excitation emission matrix coupled with parallel factor analysis (EEM-PARAFAC) identified the presence of three independent fluorescent components in AOM, including protein-like (C1), fulvic-like (C2) and humic-like components (C3). Size exclusion chromatography (SEC) revealed that C1 in AOM was composed of large-sized proteins and aromatic amino acids. The individual components exhibited their unique characteristics with respect to the dynamic changes. C1 showed the highest correlation with AOM concentrations (R = 0.843) upon the C/F processes. C1 could also be suggested as an optical predictor for the formation of trihalomethanes upon the C/F processes. This study sheds a light for the potential application of the protein-like component (C1) as a practical surrogate to track the evolution of AOM in water treatment or wastewater reclamation systems involving Chlorella vulgaris green algae.

摘要

跟踪藻类繁殖过程中释放的致痛有机物质 (AOM) 的变化,以及后续的处理过程,对于构建和优化控制策略至关重要。在这项研究中,我们充分利用光谱技术作为替代物,研究了绿藻培养和随后的混凝/絮凝 (C/F) 处理过程中,ZrCl 和 Al(SO) 对 AOM 的影响。荧光激发发射矩阵结合平行因子分析 (EEM-PARAFAC) 鉴定出 AOM 中存在三种独立的荧光成分,包括类蛋白 (C1)、富里酸 (C2) 和腐殖酸 (C3)。尺寸排阻色谱 (SEC) 显示,AOM 中的 C1 由大分子量的蛋白质和芳香族氨基酸组成。各个成分在动态变化方面表现出独特的特征。在 C/F 过程中,C1 与 AOM 浓度的相关性最高 (R = 0.843)。C1 也可以作为 C/F 过程中三卤甲烷形成的光学预测因子。这项研究为在涉及普通小球藻的水处理或废水回收系统中,将类蛋白成分 (C1) 作为一种实用的替代物来跟踪 AOM 的演变提供了新的思路。

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