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An integrated assessment approach to optimal forest bioenergy production for young Scots pine stands

机译:综合评估方法,以优化苏格兰樟子松幼林的森林生物能源生产

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摘要

Abstract Background Bioenergy is re-shaping opportunities and imperatives of forest management. This study demonstrates, through a case study in Scots pine (Pinus sylvestris L.), how forest bioenergy policies affect stand management strategies. Methods Optimization studies were examined for 15 Scots pine stands of different initial stand densities, site types, and temperature sum regions in Finland. Stand development was modelled using the PipeQual stand simulator coupled with the simulation-optimization tool OptiFor Bioenergy to assess three forest bioenergy policies on energy wood harvest from early thinnings. Results The optimal solutions maximizing bare land value indicate that conventional forest management regimes remain optimal for sparse stands. Energy harvests occurred only when profitable, led to lower financial returns. A forest bioenergy policy which included compulsory energy wood harvesting was optimal for denser stands. At a higher interest rate (4 %), increasing energy wood price postponed energy wood harvesting. In addition, our results show that early thinning somewhat reduced wood quality for stands in fertile sites. For less fertile sites, the changes were insignificant. Conclusions A constraint of profitable energy wood harvest is not rational. It is optimal to carry out the first thinning with a flexible forest bioenergy policy depending on stand density.
机译:摘要背景生物能源正在重塑森林管理的机遇和紧迫性。这项研究通过在苏格兰松树(Pinus sylvestris L.)中进行的案例研究,证明了森林生物能源政策如何影响林分管理策略。方法对芬兰的15种不同初始林密度,站点类型和温度总和区域的苏格兰松树林进行了优化研究。使用PipeQual林分模拟器和林分模拟优化工具OptiFor Bioenergy对林分发育进行建模,以评估三种关于从早期伐木中收获木材的森林生物能源政策。结果最大化裸地价值的最佳解决方案表明,对于稀疏林分,常规森林管理制度仍保持最佳状态。仅在获利时才进行能量收集,从而导致较低的财务回报。包括强制采伐木材在内的森林生物能源政策对于茂密的林分是最佳的选择。在较高的利率(4%)下,能源木材价格的上涨推迟了能源木材的采伐。此外,我们的结果表明,在肥沃的土地上,早期稀疏会降低林分的木材质量。对于肥沃的地方,变化微不足道。结论限制能源木材采伐获利是不合理的。最好根据林分密度,采用灵活的森林生物能源政策进行第一次间伐。

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