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Inventory of apparent nitrogen and phosphorus balance and risk of potential pollution in typical sloping cropland of purple soil in China - A case study in the Three Gorges Reservoir region
Ouyang, Wenjuan; Li, Zhe; Liu, Jing; Guo, Jinsong; Fang, Fang; Xiao, Yan; Lu, Lunhui
2017
摘要Agricultural non-point source pollution of nitrogen (N) and phosphorus (P) exerts a key influence on aquatic environment safety. Purple soil and sloping cropland make up the highest proportion of all soil types and land-use pattern in the up and middle reaches of Yangtze River. Therefore, a study on nutrients balance for risk assessment in sloping cropland of purple soil will contribute to the understanding of the causes of eutrophication in aquatic environment in China. The Organization for Economic Cooperation and Development (OECD) have developed the soil surface nitrogen balance indicator to estimate potential N pollution through measuring the difference between agricultural inputs and outputs. Based on this indicator, we established a framework, a methodology, and a database for calculating the N and P balance for typical sloping cropland of purple soil in TGR region, and evaluated the impact of nutrients balance on agricultural production and environment. For the basic watershed of Xinzheng unit, which mainly consists of sloping cropland of purple soil, N and P inputs were 755 and 107 kg ha(-1) a(-1), with 68.4% of N and 56.1% of P inputs originating from chemical fertilizer. The N and P outputs were 482 and 60 kg ha(-1) a(-1); the N in crops and P in straw accounted for 23.5% and 45.6% of total outputs, respectively. The N and P surplus intensities were 273 and 47 kg ha(-1) a(-1), much higher than the respective risk thresholds of 180 kg ha(-1) a(-1) and 35 kg ha(-1) a(-1), indicating a risk of N and P potential pollution in aquatic environments via cropland discharge. It is essential to utilize proper fertilization methods and improve fertilizer use efficiency in sloping cropland of purple soil in China. (C) 2017 Elsevier B.V. All rights reserved.
DOI10.1016/j.ecoleng.2017.06.044
发表期刊ECOLOGICAL ENGINEERING
ISSN0925-8574
卷号106页码:620-628
通讯作者Guo, JS (reprint author), 266 Fangzheng Ave,Shuitu High Tech Pk, Chongqing 400714, Peoples R China.
收录类别SCI
WOS记录号WOS:000405512600065
语种英语