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Trade-offs between ecosystem services: Water and carbon in a biodiversity hotspot

机译:生态系统服务之间的权衡:生物多样性热点中的水和碳

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Carbon sequestration by afforestation can help mitigate global climate change but may have adverse environmental and economic impacts in some regions. For example, economic incentives for carbon sequestration may encourage the expansion of Pinus radiata timber plantations in the Fynbos biome of South Africa, with negative consequences for water supply and biodiversity. I built a dynamic ecological-economic model to investigate whether afforestation of a Fynbos catchment with Pinus radiata is economically viable when the potential benefits of carbon sequestration and timber production are balanced against the losses to water supply. 1 found that afforestation appears viable to the forestry industry under current water tariffs and current carbon accounting legislation, but would appear unviable if the forestry industry were to pay the true cost of water used by the plantations. I also found that under various plausible future economic scenarios, afforestation can be associated with either large future economic gains or losses, suggesting a need for future analyses based on branches of decision theory that deal with severe uncertainty. I conclude with a general recommendation that climate legislation should be explicit about the conditions under which afforestation for carbon sequestration of native vegetation is a legitimate climate mitigation strategy.
机译:通过植树造林固碳可以帮助缓解全球气候变化,但在某些地区可能会对环境和经济产生不利影响。例如,碳封存的经济激励措施可能会鼓励南非Fynbos生物群落中辐射松木材人工林的扩张,对供水和生物多样性产生负面影响。我建立了一个动态的生态经济模型,以研究在固碳和木材生产的潜在收益与供水损失之间取得平衡的情况下,用辐射松对费恩博斯集水区进行造林在经济上是否可行。 1发现,在当前的水价和现行的碳会计法规下,造林对林业来说是可行的,但是如果林业要为种植园支付用水的真实成本,那么造林似乎是不可行的。我还发现,在各种可能的未来经济情景下,植树造林可能会带来巨大的未来经济收益或损失,这表明有必要根据决策理论的分支进行未来分析,以应对严重的不确定性。最后,我提出一项一般性建议,即应明确气候立法,明确在何种条件下植树造林以固碳为合法的缓解气候变化的策略。

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