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The value of habitats of conservation importance to climate change mitigation in the UK

机译:保护气候变化缓解的栖息地的价值

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The twin pressures of climate change and biodiversity loss mean that it is imperative to manage land in ways that benefit carbon storage and biodiversity conservation. We focus on a set of UK habitats of recognised conservation value, first quantifying the carbon stored in the vegetation and top 30 cm of soil in these areas. We estimate that these areas store 0.55 gigatonnes of carbon in vegetation and soil to a depth of 30 cm, approximately 30% of the UK terrestrial carbon store to a similar depth, on 20% of the land area. Most of these high carbon, high conservation value habitats are in upland areas, with particularly notable extents and mass of carbon in Scotland. In their current condition, we estimate these areas to exert a net sequestration effect of more than 8 million tonnes of CO2 equivalents per year. Furthermore, restoration of these habitats from their current, generally poor condition could result in an extra 6-7 million tonnes of CO2 equivalents per year, in the context of the UK's total emissions of 455.9 million tonnes CO(2eq )in 2017. Restoration of degraded bogs would avoid significant annual emissions (currently negating significant sequestration by woodlands and coastal habitats) and should be a particular priority.
机译:气候变化的双重压力和生物多样性损失意味着它必须以利用碳储存和生物多样性保护的方式管理土地。我们专注于一套公认的保护价值的栖息地,首先将碳储存在植被中的碳和这些区域的前30厘米的土壤。我们估计这些领域在植被和土壤中储存0.55千年碳的碳,深度为30厘米,约30%的英国陆地碳储存到类似的深度,占地20%。大多数这些高碳,高保值栖息地都在高地领域,具有特别值得注意的范围和苏格兰的碳质量。在目前的条件下,我们每年估计这些领域施加超过800万吨二氧化碳当量的净封存效果。此外,这些栖息地从他们目前的情况下恢复,普遍差的情况可能导致每年额外的6-700万吨二氧化碳当量,在英国2017年的45590万吨CO(2EQ)的总排放量。恢复退化的沼泽将避免大量的年度排放(目前通过林地和沿海栖息地否定重大封存),并且应该是一个特定的优先事项。

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