RAPS法测定地下水硝酸盐浓度随降水量变化规律的应用

IF 1.6 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Marko Šrajbek, B. Đurin, Petra Sušilović, S. Singh
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引用次数: 0

摘要

保护地下水不受污染是当今最热门的环保话题。人类能在其环境中做些什么来减少污染对环境的有害影响,从而减少对地下水的直接影响?由于肥料中硝酸盐的使用越来越频繁,农业生产是地下水污染的持续来源,由于降水,硝酸盐从土壤中被冲刷到地下水中。本文调查了克罗地亚共和国北部Varaždin镇附近的三个井田。应用RAPS方法,建立了地下水硝酸盐浓度与降水量的关系。分析结果表明,观测参数之间存在一定的联系,特别是在上层含水层。在该层中,各位置的相关系数均大于0.80,说明参数之间存在较强的正相关关系。在较低含水层,相关系数值较低,且结果多表现为弱相关。获得的结果将作为未来研究的起点,其目的是精确确定影响观测区域地下水质量的因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of the RAPS Method for Determining the Dependence of Nitrate Concentration in Groundwater on the Amount of Precipitation
Protecting groundwater from contamination is today’s most current environmental protection topic. What can man do in his environment to reduce the harmful impact of contamination on the environment, and thus the immediate effect on groundwater? Agricultural production is an ongoing source of groundwater contamination due to the increasingly frequent use of nitrates in fertilizers, which are washed out from the soil into groundwater due to precipitation. This paper investigates three wellfields in the north of the Republic of Croatia near the town of Varaždin. With the application of the RAPS method, the dependence of nitrate concentration in groundwater on the amount of precipitation was established. The analysis results show the connection of the observed parameters, especially in the upper aquifer layer. In this layer, the coefficients of correlation are greater than 0.80 at all locations, which shows a strong positive connection between the parameters. In the lower aquifer, the values of the coefficients of correlation are lower, and the results mostly indicate a weak correlation. The obtained results will serve as a starting point for future studies, which will aim to precisely determine the factors that influence groundwater quality in the observed area.
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来源期刊
Earth Interactions
Earth Interactions 地学-地球科学综合
CiteScore
2.70
自引率
5.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: Publishes research on the interactions among the atmosphere, hydrosphere, biosphere, cryosphere, and lithosphere, including, but not limited to, research on human impacts, such as land cover change, irrigation, dams/reservoirs, urbanization, pollution, and landslides. Earth Interactions is a joint publication of the American Meteorological Society, American Geophysical Union, and American Association of Geographers.
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