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Info Note. Chanje Lavi Plantè in Haiti: Hillside soil conservation as a measure to increase yields and sequester carbon in Haiti

CCAFS Info Note. November 2016










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    issue Papers. EASYPol Module 099
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    Agricultural systems can contribute significantly to an overall mitigation that will help to reduce the extent of adaptation required and catastrophic impacts on systems and sectors, on which lives and livelihoods depend. Many agricultural mitigation options, particularly those that involve soil C sequestration also generate co-benefits for adaptation, food security and rural development. This paper analyses the current context in which carbon balance and greenhouse gass (GHG) indicators fa ce growing interest in agriculture development. It highlights the multi-objective significance of carbon balance and multi benefits of improved carbon soil in term of mitigation, adaptation, cropping systems and local community resilience building. It proposes that Soil Organic Carbon (SOC) be used as the Agri-Environmental indicator in agriculture policy monitoring for developing countries and carbon balance as performance indicator in policy analysis. Tools that are currently available to calculate GHG emissions in agriculture sector at farm level or at project level are listed. EX-ACT1 Lastely, this paper develops a way in which carbon balance can be used in project and policy analysis, highlighting synergies with existing donors’ approaches. It also analyses the different ways to upscale the use of carbon balance methods within agriculture sector in developing countries. is presented as the specific tool to allow for a quick appraisal of the potential mitigation impacts o f agricultural investment projects, available to donors and planning officers, project designers and decision makers within agriculture and forestry sectors in developing countries.
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    Proceedings of the Global Symposium on Soil Organic Carbon 2017 2017
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    The Proceedings of the Global Symposium on Soil Organic Carbon 2017 (GSOC17) presents the abstracts of all scientific presentations held during the GSOC17. 103 oral presentations and 35 poster presentations built the core of this event triggering fruitful discussions on the state-of-science in measuring, preserving and enhancing soil organic carbon in different soils of the world. The GSOC17 took place from 21 to 23 March at FAO Headquarters and was structured in three themes: Theme 1: Monitorin g, mapping, measuring, reporting and verification (MRV) of SOC Theme 2: Maintaining and/or increasing SOC stocks for climate change mitigation and adaptation Theme 3 - Managing SOC in soils with high SOC - peatlands, permafrost, and black soils; in grasslands, and livestock production systems; and in dryland soils
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    Soils help to combat and adapt to climate change by playing a key role in the carbon cycle 2015
    Healthy soils provide the largest store of terrestrial carbon. When managed sustainably, soils can play an important role in climate change mitigation by storing carbon (carbon sequestration) and decreasing greenhouse gas emissions in the atmosphere. Conversely, if soils are managed poorly or cultivated through unsustainable agricultural practices, soil carbon can be released into the atmosphere in the form of carbon dioxide (CO2), which can contribute to climate change. The steady conversion of grassland and forestland to cropland and grazing lands over the past several centuries has resulted in historic losses of soil carbon worldwide. However, by restoring degraded soils and adopting soil conservation practices, there is major potential to decrease the emission of greenhouse gases from agriculture, enhance carbon sequestration and build resilience to climate change.

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    The FAOSTAT emissions database is composed of several data domains covering the categories of the IPCC Agriculture, Forestry and Other Land Use (AFOLU) sector of the national GHG inventory. Energy use in agriculture is additionally included as relevant to emissions from agriculture as an economic production sector under the ISIC A statistical classification, though recognizing that, in terms of IPCC, they are instead part of the Energy sector of the national GHG inventory. FAO emissions estimates are available over the period 1961–2018 for agriculture production processes from crop and livestock activities. Land use emissions and removals are generally available only for the period 1990–2019. This analytical brief focuses on overall trends over the period 2000–2018.
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    The FAO Strategy on Climate Change 2022–2031 was endorsed by FAO Council in June 2022. This new strategy replaces the previous strategy from 2017 to better FAO's climate action with the Strategic Framework 2022-2031, and other FAO strategies that have been developed since then. The Strategy was elaborated following an inclusive process of consultation with FAO Members, FAO staff from headquarters and decentralized offices, as well as external partners. It articulates FAO's vision for agrifood systems by 2050, around three main pillars of action: at global and regional level, at country level, and at local level. The Strategy also encourages key guiding principles for action, such as science and innovation, inclusiveness, partnerships, and access to finance.
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    In recent years, several major drivers have put the world off track to ending world hunger and malnutrition in all its forms by 2030. The challenges have grown with the COVID-19 pandemic and related containment measures. This report presents the first global assessment of food insecurity and malnutrition for 2020 and offers some indication of what hunger might look like by 2030 in a scenario further complicated by the enduring effects of the COVID-19 pandemic. It also includes new estimates of the cost and affordability of healthy diets, which provide an important link between the food security and nutrition indicators and the analysis of their trends. Altogether, the report highlights the need for a deeper reflection on how to better address the global food security and nutrition situation.To understand how hunger and malnutrition have reached these critical levels, this report draws on the analyses of the past four editions, which have produced a vast, evidence-based body of knowledge of the major drivers behind the recent changes in food security and nutrition. These drivers, which are increasing in frequency and intensity, include conflicts, climate variability and extremes, and economic slowdowns and downturns – all exacerbated by the underlying causes of poverty and very high and persistent levels of inequality. In addition, millions of people around the world suffer from food insecurity and different forms of malnutrition because they cannot afford the cost of healthy diets. From a synthesized understanding of this knowledge, updates and additional analyses are generated to create a holistic view of the combined effects of these drivers, both on each other and on food systems, and how they negatively affect food security and nutrition around the world.In turn, the evidence informs an in-depth look at how to move from silo solutions to integrated food systems solutions. In this regard, the report proposes transformative pathways that specifically address the challenges posed by the major drivers, also highlighting the types of policy and investment portfolios required to transform food systems for food security, improved nutrition, and affordable healthy diets for all. The report observes that, while the pandemic has caused major setbacks, there is much to be learned from the vulnerabilities and inequalities it has laid bare. If taken to heart, these new insights and wisdom can help get the world back on track towards the goal of ending hunger, food insecurity, and malnutrition in all its forms.