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Cropping Systems to Improve Carbon Sequestration for Mitigation of Climate Change

机译:改善碳固存以缓解气候变化的种植系统

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The recent trend of an increase in the concentration of greenhouse gases (GHGs) in the atmosphere has led to an ele-vated concern and urgency to adopt measures for carbon (C) sequestration to mitigate the climate change. Among all GHGs, carbon dioxide (CO2) is the most important one which occurs in the greatest concentration and has the strong-est radiative forcing among all. Reducing the release of CO2 to the atmosphere through “green energy” technologies or fossil fuel energy alternatives, such as wind, solar and hydraulic energies, is a major challenge. However, removal of atmospheric CO2 by terrestrial ecosystems via C sequestration and converting the sequestered C into the soil organic C has provided a great opportunity for shifting GHG emission to mitigate the climate change. Soil is an ideal reservoir for storage of organic C since soil organic C has been depleted due to land misuse and inappropriate management through the long history. To optimize the efficiency of C sequestration in agriculture, cropping systems, such as crop rotation, intercropping, cover cropping, etc., play a critical role by influencing optimal yield, total increased C sequestered with biomass, and that remained in the soil. As matter of fact, soil C sequestration is a multiple purpose strategy. It restores degraded soils, enhances the land productivity, improves the diversity, protects the environment and reduces the enrichment of atmospheric CO2, hence shifts emission of GHGs and mitigates climate change.
机译:近期大气中温室气体(GHGs)浓度增加的趋势已引起人们的关注和紧迫感,迫切需要采取措施封存碳(C)来缓解气候变化。在所有温室气体中,二氧化碳(CO2)是最重要的一种,其浓度最高,且辐射强迫最大。通过“绿色能源”技术或化石燃料能源替代品(例如风能,太阳能和水力能源)减少向大气中释放二氧化碳是一项重大挑战。但是,陆地生态系统通过固碳来去除大气中的二氧化碳并将固碳转化为土壤有机碳,为转移温室气体排放以缓解气候变化提供了巨大的机会。由于长期以来土地滥用和不当管理导致土壤有机碳已经枯竭,土壤是有机碳储存的理想库。为了优化农业中的固碳效率,诸如轮作,间作,间作等作物种植系统通过影响最佳产量,固碳量增加的固碳总量和残留在土壤中而发挥了关键作用。事实上,土壤碳固存是一种多目标策略。它可以恢复退化的土壤,提高土地生产力,改善多样性,保护环境并减少大气中二氧化碳的富集,从而转移了温室气体的排放并减轻了气候变化。

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