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首页> 外文期刊>Italian Journal of Agronomy >Chemical and biological indicators of water quality in three agricultural watersheds of the Po valley, Italy
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Chemical and biological indicators of water quality in three agricultural watersheds of the Po valley, Italy

机译:意大利波谷三个农业流域水质的化学和生物指标

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摘要

Agriculture has both direct and indirect effects on quality of surface water and is one of the key activities causing water quality degradation. Its environmental impact can be evaluated by the determination of indicators of the quality of water bodies that collect drainage and runoff waters from agricultural watersheds. For this research, the water quality draining from three watersheds, totally or partially cultivated, all within the Po river valley (Italy), was determined, using chemical indicators (N-NO3 and N-NH4 concentration, N balance), trophic status (chlorophyll-a concentration) and benthic population indexes. Together, they should provide an overview of the water status, which is supposed to be strictly related to the land use and the management. Results show that the chemical parameters are well related to land use and farming management: intensive agricultural activity leads to high N-NO3 concentration in water and N surplus and vice versa. The chlorophyll-a concentration follows the same trend, being linked to nitrogen loads and land use. Not always there is accordance between chemical and biological indicators: no direct correspondence is evident between the N-NO3 concentration in waters and benthic community. Its presence and abundance seems to be mostly correlated with the geomorphology, hydrology, riparian strips, etc. of the habitat than to the land use. Only the integration of chemical and biological parameters allows a correct understanding of the state of health of water body and benthic communities.
机译:农业对地表水的质量有直接和间接的影响,是导致水质下降的关键活动之一。可以通过确定从农业流域收集排水和径流水的水体质量的指标来评估其对环境的影响。在这项研究中,使用化学指标(N-NO3和N-NH4浓度,N平衡),营养状态(叶绿素a浓度)和底栖种群指数。他们在一起应该提供水的状况概览,应该与土地使用和管理严格相关。结果表明,化学参数与土地利用和耕作管理密切相关:密集的农业活动导致水中N-NO3浓度高,氮过剩,反之亦然。叶绿素-a浓度遵循相同的趋势,与氮负荷和土地利用有关。在化学和生物学指标之间并非总是一致的:在水域和底栖生物中,N-NO3浓度之间没有直接的对应关系。它的存在和丰富似乎主要与栖息地的地貌,水文,河岸带等相关,而与土地利用相关。只有综合化学和生物学参数,才能正确了解水体和底栖生物的健康状况。

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