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Towards sustainable bioeconomy - Lessons learned from case studies















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    Recarbonizing global soils – A technical manual of recommended management practices
    Volume 1 - Introduction and methodology
    2021
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    During the last decades, soil organic carbon (SOC) attracted the attention of a much wider array of specialists beyond agriculture and soil science, as it was proven to be one of the most crucial components of the earth’s climate system, which has a great potential to be managed by humans. Soils as a carbon pool are one of the key factors in several Sustainable Development Goals, in particular Goal 15, “Protect, restore and promote sustainable use of terrestrial ecosystems, sustainably manage forests, combat desertification and halt and reverse land degradation and halt biodiversity loss” with the SOC stock being explicitly cited in Indicator 15.3.1. This technical manual is the first attempt to gather, in a standardized format, the existing data on the impacts of the main soil management practices on SOC content in a wide array of environments, including the advantages, drawbacks, and constraints. This manual presents different sustainable soil management (SSM) practices at different scales and in different contexts, supported by case studies that have been shown with quantitative data to have a positive effect on SOC stocks and successful experiences of SOC sequestration in practical field applications. Volume 1 is an introduction to the full collection and presents the detailed methodology and structure of the following volumes.
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    Climate change mitigation and harvested wood products: Lessons learned from three case studies in Asia and the Pacific 2022
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    Harvested wood products (HWP) from sustainably managed forests can store carbon, increase the availability of biomass for the production of biofuels and substitute for more resource intensive products. Sustainable production of HWPs can contribute to multiple Sustainable Development Goals (SDGs). The length of time carbon is stored in HWPs can be increased through re-use and recycling. Modeled scenarios suggest that increased re-use and recycling of sawnwood and paper could substantially increase carbon stocks. Carbon stocks in HWPs can also be increased through production of longer-lived products. Modeled scenarios, using data from India, suggest that, without changing harvest levels, HWPs in India can store an additional 151 million tonnes of carbon (i.e., an increase of 12 percent) if wood use was shifted from wood pulp based products to solid wood products. Scenarios run using data from Papua New Guinea suggest a potential increase in carbon stocks of up to 23.1 percent from a 30 percent increase in sustainable production of HWPs. Increased data precision can support improved estimates of the carbon stocks in HWPs. Computer simulations based on data from Viet Nam confirm the importance of high-quality data to inform effective decision-making.

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