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作 者:李必才[1,2] 杨敏[1] 何连生[2] 孟睿[2] 袁冬海[3] 席北斗[2] 李小山[1]
机构地区:[1]西南交通大学地球科学与环境工程学院,成都610031 [2]中国环境科学研究院,北京100012 [3]北京建筑工程学院城市雨水系统与水环境省部共建教育部重点实验室,北京100044
出 处:《环境工程学报》2013年第5期1754-1760,共7页Chinese Journal of Environmental Engineering
基 金:国家"水体污染控制与治理"科技重大专项(2009ZX07209-008-001;2009ZX07106-001-002)
摘 要:选取白洋淀淀区的泥、水以及晒干的优势沉水植物金鱼藻、轮藻为研究对象,设置6个密度梯度模拟实验,分别于实验进行的50 d和100 d采集水样,运用紫外和荧光光谱技术研究沉水植物腐解阶段水体中溶解性有机质(DOM)的变化。结果显示,同步荧光光谱中,类蛋白峰荧光强度的变化不具规律性,类腐殖质峰荧光强度随密度的增加呈上升趋势,I2/I1的值随着密度的增加或时间的推移均逐渐增大;三维荧光光谱中,随着密度的增加,类富里酸荧光峰A和C的强度逐渐增加,而类色氨酸荧光峰T1的强度变化不大,腐解植物的密度大于3 kg/m3时各组均产生了类海洋腐殖质荧光峰B且强度随密度的增加逐渐增强,C峰的强度与水样中的COD和TP呈显著正相关;紫外光谱测定中,A253/A203的值随着密度的增加或时间的推移而逐渐增大,水体中的芳香族化合物也增多。The primary aim of the present work is to investigate the change of dissolved organic matter (DOM) during the process of decay of submerged plants by means of ultraviolet spectra and fluorescence spec-trum. Mud, water, and two dominant submerged plants, dried CeratophyUum demersum and Chara, in Baiyang-dian Lake were chosen as study objects. Six density gradients were established to simulate in-situ experiment and water samples were collected on the 50th day and the 100th day respectively during the experiment. The results showed that in synchronous fluorescence spectrum, the peak of protein-like fluorescence intensity varies irregular-ly and the peak of humic-like fluorescence intensity is on rise as density increases. I2/I1 increases gradually as density increases or as time goes by. In the three-dimensional excitation emission matrix fluorescence spectrosco-py, with the increase of density, the peak of A and C increases gradually, while intensity of T1 changes little. When the density of decaying plants is above 3 kg/m^3 , the peak of B whose intensity increases as the density in-creases emerges in all groups. The intensity of the peak of C has positive relation with COD and TP; A253/A203 becomes larger as the density increases or as time goes by.
关 键 词:植物密度 腐解 溶解性有机质 紫外光谱 荧光光谱
分 类 号:X524[环境科学与工程—环境工程]
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