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首页> 外文期刊>Forest Policy and Economics >Efficacy of carbon and bioenergy markets in mitigating carbon emissions on reforested lands: A case study from Southern United States
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Efficacy of carbon and bioenergy markets in mitigating carbon emissions on reforested lands: A case study from Southern United States

机译:碳和生物能源市场在减少重新造林土地上的碳排放中的功效:以美国南部为例

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摘要

Carbon markets would encourage forest landowners to increase rotation ages of their plantations. Emerging wood-based energy markets would increase prices of small-diameter timber products, thereby encouraging forest landowners to possibly opt for shorter rotation ages. We developed a comprehensive forest carbon model to track four carbon pools (carbon related to silvicultural activities, carbon sequestered on forestlands, carbon sequestered in wood products and wood present in landfills, and avoided carbon emissions) at the stand level to determine efficacy of carbon and bioenergy markets in mitigating carbon emissions with and without any change in rotation ages. Slash pine (Pinus elliottii)- a common species planted across the Coastal Plain of Georgia and Florida was taken as a representative species. We find that an increase in rotation age does not necessarily transform into additional carbon savings relative to some base rotation ages over a planning horizon of 100 years. Similarly, a decrease in the rotation age is not necessarily beneficial from carbon perspective either with respect to some base rotation ages. The utilization of all timber products for manufacturing of wood pellets to generate electricity in the United Kingdom maximizes carbon savings without any change in the rotation age. Suitable safeguards need to be incorporated in existing forest and bioenergy certification schemes to ensure efficacy of reforested lands in mitigating carbon emissions. Climate policies should emphasize on a systemic approach to maintain carbon mitigation potential of the forestry sector over time. (C) 2016 Elsevier B.V. All rights reserved.
机译:碳市场将鼓励森林地主增加其人工林的轮龄。新兴的木质能源市场将提高小直径木材产品的价格,从而鼓励森林土地所有者选择更短的轮换年龄。我们开发了一个全面的森林碳模型,以在展位一级跟踪四个碳库(与造林活动相关的碳,森林中的碳固存,木材产品中的碳固存和垃圾填埋场中存在的碳以及避免的碳排放),以确定碳和生物能源市场在轮换年龄有无变化的情况下减少碳排放。斜生松(Pinus elliottii)-在佐治亚州和佛罗里达州沿海平原上种植的常见物种被视为代表性物种。我们发现,相对于100年规划期内的某些基础轮换年龄,轮换年龄的增加并不一定会转化为更多的碳节约。同样,从碳的角度来看,轮转年龄的减少不一定对某些基本轮转年龄有利。在英国,将所有木材产品用于制造木屑颗粒来发电都可以最大程度地减少碳排放,而且轮换年龄不会改变。现有森林和生物能源认证计划中应纳入适当的保障措施,以确保重新造林的土地在减少碳排放方面的功效。气候政策应强调系统的方法,以保持林业部门长期的碳减排潜力。 (C)2016 Elsevier B.V.保留所有权利。

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