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水中腐殖质和非腐殖质有机物质组分的快速测定

Rapid delineation of humic and non-humic organic matter fractions in water.

作者信息

Marhaba T F, Pu Y

机构信息

Department of Civil and Environmental Engineering, New Jersey Institute of Technology, University Heights, Newark, NJ 07102-1982, USA.

出版信息

J Hazard Mater. 2000 Apr 28;73(3):221-34. doi: 10.1016/s0304-3894(99)00188-0.

Abstract

Dissolved organic matter (DOM) in water is often characterized by aggregate parameters like dissolved organic carbon (DOC). DOM from conventional surface water treatment plant in Northern New Jersey was isolated and fractionated using resin adsorption chromatography into six different fractions, which were operationally categorized as hydrophobic acid, hydrophobic neutral, hydrophobic base, hydrophilic acid, hydrophilic neutral and hydrophilic base. The spectral fluorescent signatures (SFS) technique was developed for the quantitative identification of the six fractions by post-processing analysis that includes a statistical model. The SFS is the total sum of emission spectra of a sample at different excitation wavelengths, recorded as a matrix of fluorescent intensity in coordinates of excitation and emission wavelengths, in a definite spectral window. High sensitivity and rapid identification and quantification of DOM fractions are among the main features of the technique. Since hydrophobic and hydrophilic substances are considered more humic and non-humid in nature, respectively, the technique provided an opportunity to rapidly delineate source waters in terms of such categories.

摘要

水中的溶解有机物(DOM)通常以溶解有机碳(DOC)等总参数来表征。新泽西州北部传统地表水处理厂的DOM通过树脂吸附色谱法进行分离和分级,分为六个不同的级分,在操作上归类为疏水酸、疏水中性、疏水碱、亲水酸、亲水中性和亲水碱。光谱荧光特征(SFS)技术是通过包括统计模型在内的后处理分析来定量识别这六个级分而开发的。SFS是样品在不同激发波长下发射光谱的总和,记录为在确定光谱窗口内激发波长和发射波长坐标中的荧光强度矩阵。该技术的主要特点包括对DOM级分的高灵敏度以及快速识别和定量。由于疏水物质和亲水物质在性质上分别被认为更具腐殖质和非腐殖质特性,该技术为根据此类类别快速划定水源水提供了机会。

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