首页> 外文会议>The 2nd International Conference on Bioinformatics and Biomedical Engineering(iCBBE 2008)(第二届生物信息与生物医学工程国际会议)论文集 >Experiment on Nitrate Nitrogen Transport and Transformation in Saline Soil under the Irrigation- Drainage Condition in Arid Inland Basin
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Experiment on Nitrate Nitrogen Transport and Transformation in Saline Soil under the Irrigation- Drainage Condition in Arid Inland Basin

机译:干旱内陆盆地灌排条件下盐渍土硝态氮迁移转化试验。

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摘要

Groundwater and surface water have been threaten by nitrate nitrogen pollution because of the increasing of agricultural fertilizers. In this paper, we studied on nitrate nitrogen transport and transformation in soil under the irrigation-drainage condition in arid inland basin through a longtime field test. The study has draw conclusions as following: 1) The irrigation has a great impact on groundwater level and the amount of agricultural drainage. The ratio between drainage and irrigation is 53.77% in 2003 in test plot. Flood irrigation has a threat to Bosten Lake because which will produce a lot of agricultural drainage and take a lot of inorganic salt and nitrogen. 2) Initial concentration and lithology of soil have a great influence on transport and transformation of nitrogen. 3) Concentration of nitrate nitrogen below 100cm is much higher than background concentration, so it shows that nitrate nitrogen is main pollutant of nitrogen under irrigation-drainage condition.
机译:由于农业肥料的增加,地下水和地表水受到硝酸盐氮污染的威胁。通过长期的田间试验,研究了干旱内陆盆地灌溉排水条件下土壤硝态氮的迁移转化规律。研究得出以下结论:1)灌溉对地下水位和农业排水量有很大影响。试验区2003年排水与灌溉的比例为53.77%。洪水灌溉对博斯腾湖构成威胁,因为这将产生大量的农业排水并吸收大量的无机盐和氮。 2)土壤的初始浓度和岩性对氮的运移和转化影响很大。 3)100cm以下的硝态氮浓度远高于背景浓度,表明硝态氮是灌溉排水条件下氮的主要污染物。

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