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      Soil organic carbon sequestration in agroforestry systems. A review

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      Agronomy for Sustainable Development
      Springer Nature

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          Soil macroaggregate turnover and microaggregate formation: a mechanism for C sequestration under no-tillage agriculture

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            Climate Change and Food Systems

            Food systems contribute 19%–29% of global anthropogenic greenhouse gas (GHG) emissions, releasing 9,800–16,900 megatonnes of carbon dioxide equivalent (MtCO2e) in 2008. Agricultural production, including indirect emissions associated with land-cover change, contributes 80%–86% of total food system emissions, with significant regional variation. The impacts of global climate change on food systems are expected to be widespread, complex, geographically and temporally variable, and profoundly influenced by socioeconomic conditions. Historical statistical studies and integrated assessment models provide evidence that climate change will affect agricultural yields and earnings, food prices, reliability of delivery, food quality, and, notably, food safety. Low-income producers and consumers of food will be more vulnerable to climate change owing to their comparatively limited ability to invest in adaptive institutions and technologies under increasing climatic risks. Some synergies among food security, adaptation, and mitigation are feasible. But promising interventions, such as agricultural intensification or reductions in waste, will require careful management to distribute costs and benefits effectively.
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              The role of deep roots in the hydrological and carbon cycles of Amazonian forests and pastures

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                Author and article information

                Journal
                Agronomy for Sustainable Development
                Agron. Sustain. Dev.
                Springer Nature
                1774-0746
                1773-0155
                April 2014
                February 2014
                : 34
                : 2
                : 443-454
                Article
                10.1007/s13593-014-0212-y
                c870d8f6-ca92-424a-b556-4033152a7df9
                © 2014
                History

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