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中国黄河中耗氧有机物的污染。

Contamination of oxygen-consuming organics in the Yellow River of China.

作者信息

Xia Xinghui, Yang Zhifeng, Wang Ran, Meng Lihong

机构信息

School of Environment, Beijing Normal University/State Key Laboratory of Water Environmental Simulation, Beijing, 100875, China.

出版信息

Environ Monit Assess. 2005 Nov;110(1-3):185-202. doi: 10.1007/s10661-005-7863-8.

Abstract

Contamination of oxygen-consuming organics (OCOs) was one of the most serious problems in the Yellow River of China. This study was conducted to analyze monitoring of the data on OCOs contamination for the river in 1980 and during 1992-1999 as well as examining the effect of suspended solids (SS) on chemical oxygen demand (CODMn) and biochemical oxygen demand (BOD5) of river water. Several significant results have arisen from the study. First, CODMn and BOD5 of the river water showed an increasing trend from the upper to the lower reaches of the mainstream. BOD5 values of river water in 1992 were significantly higher than those in 1980 and showed an increasing trend during 1992-1999. Second, OCOs in river water of the mainstream was attributed mainly to point sources; the ratio of point to non-point sources of BOD5 was about 2.81. The load from point sources showed an increasing trend during 1992-1998. In contrast, the load from non-point sources manifested a decreasing trend during this period; this was caused by the decreasing trend of SS content in river water. The total load of BOD5 from point and non-point sources displayed an increasing trend during 1992-1998. Third, as the humic substances in SS can hardly be biologically oxidized in natural conditions but can be oxidized by chemical oxidants such as potassium permanganate, CODMn was not suitable for being regarded as a parameter reflecting the pollution degree of OCOs in river water with a high SS content.

摘要

耗氧有机物(OCOs)污染是中国黄河面临的最严重问题之一。本研究旨在分析1980年以及1992 - 1999年期间黄河耗氧有机物污染数据监测情况,并研究悬浮固体(SS)对河水化学需氧量(CODMn)和生化需氧量(BOD5)的影响。该研究得出了几个重要结果。首先,河水的CODMn和BOD5自干流上游至下游呈上升趋势。1992年河水的BOD5值显著高于1980年,并在1992 - 1999年期间呈上升趋势。其次,干流河水中的耗氧有机物主要源于点源;BOD5的点源与非点源比例约为2.81。1992 - 1998年期间点源负荷呈上升趋势。相比之下,此期间非点源负荷呈下降趋势;这是由河水中SS含量下降趋势所致。1992 - 1998年期间点源和非点源的BOD5总负荷呈上升趋势。第三,由于悬浮固体中的腐殖物质在自然条件下难以被生物氧化,但可被高锰酸钾等化学氧化剂氧化,因此对于SS含量高的河水,CODMn不适宜作为反映耗氧有机物污染程度的参数。

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