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横坡与顺坡垄作径流氮磷输出及其富营养化风险对比研究
引用本文:于兴修,马骞,刘前进,吕国安.横坡与顺坡垄作径流氮磷输出及其富营养化风险对比研究[J].环境科学,2011,32(2):428-436.
作者姓名:于兴修  马骞  刘前进  吕国安
作者单位:1. 临沂师范学院化学与资源环境学院,山东省水土保持与环境保育重点实验室,临沂,276005
2. 华中农业大学资源与环境学院,武汉,430070
基金项目:教育部新世纪优秀人才支持计划项目(NCET-08-0877);山东省中青年科学家奖励基金项目(2007BS08025);山东省自然科学基金项目(Y2008E23)
摘    要:以沂蒙山区典型的坡耕地为例,通过2种雨强(40 mm·h-1和70 mm·h-1)下的野外原位模拟降雨试验,分析了横坡与顺坡垄作地表径流溶解态无机氮Inorganic-N(NO3--N、NH4+-N)以及溶解态磷(DP)的输出特征,并利用Inorganic-N/DP、NO3--N/DP和NH4+-N/DP等3种氮磷比对...

关 键 词:横坡垄作  顺坡垄作  径流  氮磷输出  富营养化风险
收稿时间:2010/3/24 0:00:00
修稿时间:2010/5/20 0:00:00

Comparative Study of N, P Output and Eutrophication Risk in Runoff Water in Cross Ridge and Longitudinal Ridge
YU Xing-xiu,MA Qian,LIU Qian-jin and LV Guo-an.Comparative Study of N, P Output and Eutrophication Risk in Runoff Water in Cross Ridge and Longitudinal Ridge[J].Chinese Journal of Environmental Science,2011,32(2):428-436.
Authors:YU Xing-xiu  MA Qian  LIU Qian-jin and LV Guo-an
Institution:Shandong Key Laboratory of Soil Conservation and Environmental Protection, School of Chemistry and Resources Environment, Linyi Normal University, Linyi 276005, China. Yuxingxiu@lytu.edu.cn
Abstract:Field in-situ rainfall simulation tests with two rainfall intensities (40 mm x h(-1) and 70 mm x h(-1)), which were conducted at typical sloping cropland in Yimeng mountainous area, were designed to analyze the output characteristics of dissolved inorganic nitrogen, Inorganic-N (NO3(-)-N, NH4(+) -N) and dissolved phosphorus (DP) in runoff water, as well as to compare the eutrophication risk in this water by calculating three ratios of Inorganic-N/DP, NO3(-) -N/DP, and NH4(+)-N/DP, respectively, in cross ridge and longitudinal ridge tillage methods. Results showed that, under the same rainfall intensity, the DP level in runoff water was higher in cross ridge than longitudinal ridge, while the change of different Inorganic-N level between the two tillage methods were not consistent. Cross ridge could effectively reduce runoff and the output rate of Inorganic-N and DP when compared to the longitudinal ridge tillage, which would be more outstanding with the increases of rainfall intensities. The losses of Inorganic-N and DP in runoff water were 43% and 5% less, respectively, in cross ridge than longitudinal ridge at the 40 mm x h(-1) rainfall intensity, and were 68% and 55%, respectively, at 70 mm x h(-1). The higher Inorganic-N/DP and NO3(-) -N/DP ratios suggest that runoff water from either cross ridge or longitudinal ridge tillage have a certain eutrophication risk, which present an increasing trend during the precipitation-runoff process. Compared with longitudinal ridge, cross ridge can not only hinder the increasing trend of eutrophication risk, but also can significantly lower it, and thus effectively reduce the effect of sloping cropland runoff on the eutrophication processes of receiving waters.
Keywords:cross ridge  longitudinal ridge  runoff water  output of nitrogen and phosphorus  eutrophication risk
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