Shan Bao-Qing, Jian Yu-Xiang, Tang Wen-Zhong, Zhan Hong
State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
Huan Jing Ke Xue. 2012 Feb;33(2):352-8.
Based on the water quality survey for one year in the downstream river network areas of North Canal River Watershed, variation features of inorganic nitrogen (N) and phosphorus (P) were analyzed, and water eutrophication degree of river network areas was also assessed. The results showed that the average concentration of TN was 12.50 mg x L(-1) (NH4(+)-N, 67.41%); TP was 1.45 mg x L(-1) (SRP, 80.81%). The temporal and spatial variations of N and P in the river network areas were obvious. Various forms of TN and NO3(-)-N concentrations almost had a similar change by month; NH4(+)-N was a little different; TP and SRP also had a similar change. The concentrations of N and P all decreased gradually from water coming region to water leaving region, TN, NH4(+)-N and NO3(-)-N decreased from 19.30, 13.22 and 2.19 mg x L(-1) to 7.98, 4.45 and 1.50 mg x L(-1) on average, respectively; TP and SRP were from 1.95 and 1.59 mg x L(-1) to 1.11 and 0.91 mg x L(-1). Water eutrophication degrees of river network areas were all the highest level at both temporal and spatial scale.
基于北运河水系下游河网地区一年的水质调查,分析了无机氮(N)和磷(P)的变化特征,并评估了河网地区的水体富营养化程度。结果表明,总氮(TN)平均浓度为12.50mg·L⁻¹(铵态氮(NH₄⁺-N)占67.41%);总磷(TP)为1.45mg·L⁻¹(溶解性总磷(SRP)占80.81%)。河网地区氮、磷的时空变化明显。TN的各种形态及NO₃⁻-N浓度月变化趋势基本相似;NH₄⁺-N稍有不同;TP和SRP变化趋势也相似。氮、磷浓度均从入水区到出水区逐渐降低,TN、NH₄⁺-N和NO₃⁻-N平均分别从19.30、13.22和2.19mg·L⁻¹降至7.98、4.45和1.50mg·L⁻¹;TP和SRP分别从1.95和1.59mg·L⁻¹降至1.11和0.91mg·L⁻¹。河网地区水体富营养化程度在时间和空间尺度上均处于最高水平。