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氮平衡与地下水硝酸盐污染:华北平原三种集约种植系统的比较

Nitrogen balance and groundwater nitrate contamination: comparison among three intensive cropping systems on the North China Plain.

作者信息

Ju X T, Kou C L, Zhang F S, Christie P

机构信息

Key Laboratory of Plant-Soil Interactions, Ministry of Education, College of Agricultural Resources and Environmental Sciences, China Agricultural University, Beijing.

出版信息

Environ Pollut. 2006 Sep;143(1):117-25. doi: 10.1016/j.envpol.2005.11.005. Epub 2005 Dec 20.

Abstract

The annual nitrogen (N) budget and groundwater nitrate-N concentrations were studied in the field in three major intensive cropping systems in Shandong province, north China. In the greenhouse vegetable systems the annual N inputs from fertilizers, manures and irrigation water were 1358, 1881 and 402 kg N ha(-1) on average, representing 2.5, 37.5 and 83.8 times the corresponding values in wheat (Triticum aestivum L.)-maize (Zea mays L.) rotations and 2.1, 10.4 and 68.2 times the values in apple (Malus pumila Mill.) orchards. The N surplus values were 349, 3327 and 746 kg N ha(-1), with residual soil nitrate-N after harvest amounting to 221-275, 1173 and 613 kg N ha(-1) in the top 90 cm of the soil profile and 213-242, 1032 and 976 kg N ha(-1) at 90-180 cm depth in wheat-maize, greenhouse vegetable and orchard systems, respectively. Nitrate leaching was evident in all three cropping systems and the groundwater in shallow wells (<15 m depth) was heavily contaminated in the greenhouse vegetable production area, where total N inputs were much higher than crop requirements and the excessive fertilizer N inputs were only about 40% of total N inputs.

摘要

在中国北方山东省的三种主要集约化种植系统中,对年度氮(N)预算和地下水硝态氮浓度进行了田间研究。在温室蔬菜系统中,来自化肥、粪肥和灌溉水的年氮输入量平均分别为1358、1881和402千克氮每公顷,分别是小麦(Triticum aestivum L.)-玉米(Zea mays L.)轮作中相应值的2.5、37.5和83.8倍,以及苹果(Malus pumila Mill.)果园中相应值的2.1、10.4和68.2倍。氮盈余值分别为349、3327和746千克氮每公顷,收获后土壤剖面顶部90厘米处的残留土壤硝态氮量在小麦-玉米、温室蔬菜和果园系统中分别为221 - 275、1173和613千克氮每公顷,在90 - 180厘米深度处分别为213 - 242、1032和976千克氮每公顷。在所有三种种植系统中都明显存在硝酸盐淋溶现象,在温室蔬菜产区,浅井(深度<15米)的地下水受到严重污染,该产区的总氮输入量远高于作物需求,过量的化肥氮输入仅占总氮输入量的约40%。

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