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The potential to mitigate global warming with no-tillage management is only realized when practised in the long term

机译:只有长期实践,才能实现通过免耕管理减轻全球变暖的潜力

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No-tillage (NT) management has been promoted as a practice capable of offsetting greenhouse gas (GHG) emissions because of its ability to sequester carbon in soils. However, true mitigation is only possible if the overall impact of NT adoption reduces the net global warming potential (GWP) determined by fluxes of the three major biogenic GHGs (i.e. CO2, N2O, and CH4). We compiled all available data of soil-derived GHG emission comparisons between conventional tilled (CT) and NT systems for humid and dry temperate climates. Newly converted NT systems increase GWP relative to CT practices, in both humid and dry climate regimes, and longer-term adoption (>10 years) only significantly reduces GWP in humid climates. Mean cumulative GWP over a 20-year period is also reduced under continuous NT in dry areas, but with a high degree of uncertainty. Emissions of N2O drive much of the trend in net GWP, suggesting improved nitrogen management is essential to realize the full benefit from carbon storage in the soil for purposes of global warming mitigation. Our results indicate a strong time dependency in the GHG mitigation potential of NT agriculture, demonstrating that GHG mitigation by adoption of NT is much more variable and complex than previously considered, and policy plans to reduce global warming through this land management practice need further scrutiny to ensure success.
机译:由于能够将温室气体(GHG)隔离在土壤中,因此可以推广使用免耕管理来抵消温室气体(GHG)的排放。但是,只有采用NT的总体影响降低了由三种主要生物温室气体(即CO2,N2O和CH4)的通量确定的净全球升温潜能值(GWP),才有可能实现真正的缓解。我们汇总了在湿润和干燥温带气候下常规耕作(CT)和NT系统之间土壤衍生的温室气体排放比较的所有可用数据。在潮湿和干燥气候条件下,新近转换的NT系统相对于CT做法都增加了全球升温潜能值,而长期采用(> 10年)只会显着降低潮湿气候下的全球升温潜能值。在干旱地区连续NT下,在20年期间的平均累积GWP也降低了,但不确定性很高。 N2O的排放推动了净全球升温潜能值的大部分趋势,这表明改善氮管理对于实现缓解全球变暖目的的土壤碳储量的充分利用至关重要。我们的结果表明,NT农业减缓温室气体潜力的时间依赖性很大,这表明采用NT减缓温室气体的影响比以前考虑的要复杂得多,而且通过这种土地管理实践减少全球变暖的政策计划需要进一步审查。确保成功。

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