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The Use of Isotopic Techniques to Quantify the Potential Contributions of Legumes to the Mitigation of Climate Change and Future Food Security

机译:同位素技术的使用量化豆类对气候变化减轻和未来粮食安全的潜在贡献

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The large number of diverse legume species used to produce food for humans and livestock hold considerable promise as a means of adaptation to climate change. Legume systems have also been implicated as effective means of mitigating climate change through reductions in emissions of greenhouse gases such as carbon dioxide (CO2) from fossil fuels and nitrous oxide (N2O) from soil, and by accelerating soil carbon (C) sequestration. However, predicting how elevated concentrations of carbon dioxide (e[C0_2l) and future climates will affect soil nitrogen (N) cycling, soil C accretion and productivity in legume based farming systems remains a challenge. This paper identifies a number of opportunities where the isotopes of N and C could be applied to provide information on the key interaction between e[CC>2] and climate variables on the capacity for legumes to fix atmospheric N2, influence the above and below ground allocation of C and N, and change the C and N dynamics of soils.
机译:用于为人类和牲畜生产食物的大量不同的豆科物种认为,作为一种适应气候变化的手段。豆类系统也涉及通过减少气候变化的有效手段,通过减少来自土壤化石燃料和氧化亚氮(N 2 O)的温室气体(二氧化碳)的温室气体排放,以及通过加速土壤碳(C)封存。然而,预测二氧化碳浓度升高(E [CO_2L)和未来气候的浓度如何影响土壤氮气(N)循环,土壤C增生和生产力在豆类养殖系统中仍然是一个挑战。本文识别出若干机会,可以应用N和C的同位素来提供关于e [Cc> 2]和气候变量对豆类省尾的能力之间的关键相互作用的信息,影响上面和地下C和N的分配,改变土壤的C和N动态。

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