圆木条件下火炬松林分生产效率与碳价格风险

IF 1.7 3区 农林科学 Q2 FORESTRY
Yu-Kai Huang, P. Dwivedi
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引用次数: 0

摘要

本研究考察了火炬松(Pinus taeda L.)在圆木和碳价格风险下的生产效率。数据来自生物物理经济优化模型,该模型由美国乔治亚州的火炬松生长和产量模型与随机经济模型相结合组成。该模型结合了木材和碳价格风险参数,并在给定不同造林处理和价格风险的情况下,生成了56种情景的最佳生物量和相关收获利润。使用数据包络分析对每种情景下的木材生产效率进行了评估。这项研究还评估了低效森林生产造成的潜在经济损失。结果表明,风险承受能力较低的森林所有者所损失的利润较高。在除草剂和化肥处理方案下,低效的森林管理可能分别造成高达319美元/公顷和405美元/公顷的潜在经济损失。由于与木材相关的价格风险会影响森林所有者的决策,本研究的结果结合了不同的风险,将有助于林业专业人员和决策者在森林生产力评估中建立更现实、更准确的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production Efficiency of Loblolly Pine Stands Under Roundwood and Carbon Price Risks
This study examines the efficiency of loblolly pine (Pinus taeda L.) production under roundwood and carbon price risks. The data are generated from the biophysical-economic optimization model, consisting of the loblolly pine growth and yield model in Georgia, United States, combined with a stochastic economic model. The model incorporates the timber and carbon price risk parameters and generates the optimal biomass volumes and the associated harvest profits for 56 scenarios given different silvicultural treatments and price risks. Timber production efficiencies under each scenario are evaluated using the data envelopment analysis. This study also assesses potential economic losses due to inefficient forest production. The result shows that forest landowners with lower risk tolerance have a higher profit foregone. Inefficient forest management could cause up to $319/ha and $405/ha of potential economic losses under herbicide and fertilizer treatment scenarios, respectively. As timber-related price risks can influence forest landowners’ decisions, the findings of this study incorporating different risks would help forestry professionals and policymakers to establish a more realistic and greater degree of accuracy in the forest productivity evaluation.
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来源期刊
CiteScore
4.20
自引率
9.10%
发文量
109
审稿时长
3 months
期刊介绍: Published since 1971, the Canadian Journal of Forest Research is a monthly journal that features articles, reviews, notes and concept papers on a broad spectrum of forest sciences, including biometrics, conservation, disturbances, ecology, economics, entomology, genetics, hydrology, management, nutrient cycling, pathology, physiology, remote sensing, silviculture, social sciences, soils, stand dynamics, and wood science, all in relation to the understanding or management of ecosystem services. It also publishes special issues dedicated to a topic of current interest.
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