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Total phosphorus concentrations in surface water of typical agro- and forest ecosystems in China, 2004–2010
基金项目:This research was funded by the Key Direction in Knowledge Innovation Program of Chinese Academy of Sciences (KZCX2- EW-310), and the National Natural Science Foundation of China (Grant No. 41171153). We gratefully acknowledge the many Chinese Ecosystem Research Network (CERN) personnel, who designed the monitoring networks and collected and analyzed the samples used in this study.
摘    要:The concentrations of total phosphorus (TP) from 83 surface water sampling sites in 29 of the Chinese Ecosystem Research Network (CERN) monitored ecosystems, representing typical agro- and forest ecosystems, were assessed using monitoring data collected between 2004 and 2010 from still and flowing surface water. Results showed that, TP concentrations were significantly higher in agro-ecosystems than those in forest ecosystems both for still and flowing surface water. For agro- ecosystems, TP concentrations in the southern area were significantly higher than those in the northern and north- western areas for both still and flowing surface water, however no distinct spatial pattern was observed for forest ecosystems. In general, the median values of TP within agro- and forest ecosystems did not exceed the Class V guideline for still (0.2mg.L-1) or flowing (0.4mg.L-1) surface water, however, surface water at some agro- ecosystem sampling sites was frequently polluted by TE Elevated concentrations were mainly found in still surface water at the Changshu, Fukang, Linze and Naiman monitored ecosystems, where exceedance (〉 0.2 mg.L-1) frequencies varied from 43% to 78%. For flowing water, elevated TP concentrations were found at the Hailun, Changshu and Shapotou monitored ecosystems, where exceedance (〉 0.4 mg. L-1) frequencies varied from 29% to 100%. Irrational fertilization, frequent irrigation and livestock manure input might be the main contributors of high TP concentrations in these areas, and reduced fertilizer applications, improvements in irrigation practices and centralized treatment of animal waste are necessary to control P loss in these TP vulnerable zones.

关 键 词:中国生态系统研究网络  森林生态系统  地表水  磷浓度  农业生态系统  监测数据  生态系统监测  畜禽粪便
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