首页> 外文期刊>International Journal of Poultry Sciences >Impact of Large Poultry Operations on Groundwater : Stable 15N Isotopes of Nitrate Assessment
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Impact of Large Poultry Operations on Groundwater : Stable 15N Isotopes of Nitrate Assessment

机译:大型家禽养殖场对地下水的影响:稳定的15N硝酸盐同位素评估

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The rapid growth of livestock and poultry operations over the past 25 years has led to concern regarding environmental impacts of land applied animal wastes in many parts of the world. This study investigated the impact of dense poultry populations on ground and surface water quality in central North Carolina using the stable 15N isotopes of nitrate. On a field scale, the 15N of groundwater nitrate was not related to the type of poultry waste applied to the fields, but was controlled by the types of soils found in the litter application fields. Hydric soils had enriched groundwater nitrate 15N compositions and reduced nitrate concentrations, most likely associated with denitrification. Partially hydric and non-hydric soils did not show elevated groundwater 15N nitrate compositions. The 15N composition of groundwater nitrate in litter application fields with non-hydric soils indicates that the source of groundwater nitrate is a combination of poultry litter and fertilizer. On a watershed scale, the 15N composition of surface water nitrate was not related to the distribution of poultry operations, but was related to the distribution of hydric soils within the basin. Nitrate concentrations in stream waters remained low through out the basin studied, and the 15N composition of stream nitrate decreased downstream suggesting minimal impact on surface water quality from the surrounding poultry operations. The practice of placing poultry houses on poor quality swampy land also places them in areas dominated by hydric soils. Denitrification proceeds quickly in areas with hydric soils, which minimizes offsite nitrate transport and mitigates surface water quality impacts. This data suggests that surface water quality impacts from animal agriculture can be predicted from the spatial analysis of hydric soils within a watershed.
机译:在过去的25年中,畜牧业的快速发展引起了人们对世界许多地方土地施用的动物粪便的环境影响的关注。这项研究使用稳定的15N硝酸盐同位素调查了北卡罗来纳州中部密集的家禽种群对地下水和地表水水质的影响。在田间规模上,地下水中的15N硝酸盐与施于田间的家禽废物的种类无关,而是由猫砂田间发现的土壤种类控制的。氢化土壤富含15N的地下水硝酸盐成分,硝酸盐浓度降低,这很可能与反硝化作用有关。部分为水和非水的土壤未显示出地下水中15N硝酸盐成分的升高。在非水土土壤垫料应用领域中,地下水硝酸盐的15N组成表明,硝酸盐的来源是家禽垫料和肥料的组合。在流域范围内,地表水中硝酸盐的15N组成与家禽养殖的分布无关,但与流域内的水化土壤的分布有关。在整个研究流域中,溪流水中的硝酸盐浓度保持较低水平,而溪流中硝酸盐的15N组成向下游降低,表明对周围家禽养殖场的地表水水质的影响最小。将禽舍放置在劣质的沼泽地上的做法也将它们安置在以水土为主的地区。在有水土的地区,反硝化作用迅速进行,这可以最大程度地减少异地硝酸盐的运输并减轻地表水质量的影响。这些数据表明,可以通过分水岭内含水土壤的空间分析来预测动物农业对地表水质量的影响。

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