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Impact of rainfall to the effectiveness of pig slurry shallow injection method for NH_3 mitigation in a Mediterranean soil

机译:降雨对地中海土壤中NH_3缓解猪浆液浅注射方法的有效性影响

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Ammonia emission from fertilized cropping systems is an important concern for stakeholders, particularly in regions with high livestock densities producing large amounts of manure. Application of pig slurries can result in very large losses of N through NH3 volatilization, thus decreasing the N use efficiency (NUE) of the applied manure. Shallow incorporation has been shown to significantly abate these losses. In this field study, we assessed the impact of contrasting weather conditions on the effectiveness of shallow injection to abate NH3 emissions from pig slurry application to a Mediterranean soil. As potential trade-offs of NH3 abatement, greenhouse gas emissions were also measured under conditions of high soil moisture. Compared with surface application of slurry, shallow injection effectively and significantly decreased NH3 losses independently of weather conditions, but reductions of NH3 emission were greater after heavy rainfall. In contrast, under these conditions, shallow injection triggered higher emissions of N2O and CH4. Our findings reinforce the idea that any single-pollutant abatement strategy needs to be designed and assessed in a regional context and considering potential trade-offs in the form of other pollutants.
机译:受精种植系统的氨排放是利益攸关方的重要关注,特别是在具有大量粪肥的高畜牧业密度的地区。猪浆料的应用可以导致N至NH 3挥发的非常大的损失,从而降低了施用粪肥的N使用效率(NUE)。已显示浅作品,以显着减少这些损失。在该实地研究中,我们评估了对比天气状况对浅注射的有效性的影响,从猪泥浆应用到地中海土壤中的NH3排放。作为NH3减排的潜在权衡,温室气体排放也在高土壤水分的条件下测量。与浆料的表面施加相比,有效地施加浅注射,无论如何,NH 3损失独立于天气条件,但重度降雨后NH3排放的减少更大。相比之下,在这些条件下,浅注射引发了N2O和CH4的较高排放。我们的调查结果强化了任何单一污染物减排策略,需要在区域背景下进行设计和评估,并考虑以其他污染物形式的潜在权衡。

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