粪堆现场浅层地下水硝酸盐浓度的时空变化

Q2 Agricultural and Biological Sciences
S. Pietrzak, Ludmiła Rossa, T. Marcinkowski, Łukasz Wojcieszak
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引用次数: 0

摘要

浅层地下水特别容易受到农业来源硝酸盐的污染。本文试图识别浅层地下水中硝酸盐浓度的空间和时间变化方向,浅层地下水位于沙质土壤下、临时粪肥储存地及其附近。该研究于2009-2015年在波德拉斯基省Biebrza中央盆地西北部的牛奶生产农场进行。该研究站位于每年种植玉米的田地边缘,2010/2011年和2014/2015年之交定期储存肥料。使用7口控制井和测量井每月采集地下水样本,每年采集4-8次。使用Kruskal-Wallis检验的方差分析对所获得的硝酸盐含量的结果进行统计分析。还从各个研究点对水中硝酸盐氮浓度的相关性进行了分析,并对其在随后几年的研究中的回归进行了分析。从各个水井采集的地下水样本中硝酸盐氮的年平均浓度在1.1至101.8 mg N-NO3∙dm-3之间。绝大多数Inżynieria Ekologizna Ecological Engineering第19卷第5期,2018年10月,第75-82页https://doi.org/10.12912/23920629/95272接收日期:2018.08.16接受日期:2018.09.12发布日期:2018.10.01
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial and temporal variability of nitrates concentration in shallow groundwater at the field location of the manure heap
Shallow groundwater is particularly susceptible to contamination by nitrates from agricultural sources. The paper attempts to recognize the direction of spatial and temporal changes in the concentration of nitrates in shallow groundwater, lying under a layer of sandy soil, in the place of a temporary manure storage place and in its immediate vicinity. The study was conducted in the years 2009–2015 on farm focused on milk production, located in the north-western part of the central basin of Biebrza, in Podlaskie voivodeship . The research stand was located at the edge of the field where maize was grown every year and where manure was periodically stored at the turn of 2010/2011 and 2014/2015. Groundwater samples were collected using 7 control and measurement wells, on a monthly basis, 4-8 times a year. The obtained results of nitrates content were subjected to statistical analysis using the analysis of variance with the Kruskal-Wallis test. The analysis of correlation of nitrate nitrogen concentration in water from various research points and analysis of its regression in subsequent years of research was also performed. The average annual concentration of nitrate nitrogen in groundwater samples collected from individual wells was in the wide range from 1.1 to 101.8 mg N-NO3∙dm -3. In the vast majority Inżynieria Ekologiczna Ecological Engineering Volume 19, Issue 5, October 2018, pages 75–82 https://doi.org/10.12912/23920629/95272 Received: 2018.08.16 Accepted: 2018.09.12 Published: 2018.10.01
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来源期刊
Inzynieria Ekologiczna
Inzynieria Ekologiczna Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
2.70
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0.00%
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8 weeks
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