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Evidence for carbon sequestration by agricultural liming

机译:通过农业石灰固碳的证据

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[1] Agricultural lime can be a source or a sink for CO2, depending on whether reaction occurs with strong acids or carbonic acid. Here we examine the impact of liming on global warming potential by comparing the sum of Ca2+ and Mg2+ to carbonate alkalinity in soil solutions beneath unmanaged vegetation versus limed row crops, and of streams and rivers in agricultural versus forested watersheds, mainly in southern Michigan. Soil solutions sampled by tension indicated that lime can act as either a source or a sink for CO2. However, infiltrating waters tended to indicate net CO2 uptake, as did tile drainage waters and streams draining agricultural watersheds. As nitrate concentrations increased in infiltrating waters, lime switched from a net CO2 sink to a source, implying nitrification as a major acidifying process. Dissolution of lime may sequester CO2 equal to roughly 25 - 50% of its C content, in contrast to the prevailing assumption that all of the carbon in lime becomes CO2. The similar to 30 Tg/yr of agricultural lime applied in the United States could thus sequester up to 1.9 TgC/ yr, about 15% of the annual change in the U. S. CO2 emissions (12 Tg C/yr for 2002 - 2003). The implications of liming for atmospheric CO2 stabilization should be considered in strategies to mitigate global climate change.
机译:[1]根据是否与强酸或碳酸发生反应,农用石灰可以成为二氧化碳的来源或汇。在这里,我们通过比较未经管理的植被与石灰行列作物下土壤溶液中的Ca2 +和Mg2 +的总和与碳酸盐碱度之间的关系,以及主要针对密歇根州南部的农业流域与森林流域中的溪流,研究了石灰对全球变暖潜力的影响。通过张力取样的土壤溶液表明,石灰可以充当CO2的来源或汇。但是,渗入的水往往表明净吸收二氧化碳,瓷砖排水和流向农业集水区的溪流也是如此。随着渗透水中硝酸盐浓度的增加,石灰从净CO2汇转换为源,这意味着硝化作用是主要的酸化过程。与普遍认为石灰中的所有碳都变成CO2的普遍假设相反,石灰的溶解可能会使CO 2的固存量大约等于其C含量的25%至50%。因此,类似于在美国使用的30 Tg /年的农业石灰,可以封存高达1.9 TgC /年,约占美国二氧化碳排放量年变化的15%(2002-2003年为12 Tg C /年)。在缓解全球气候变化的策略中应考虑石灰对大气中二氧化碳稳定的影响。

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