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首页> 外文期刊>Journal of Forest Economics >Designing afforestation subsidies that account for the benefits of carbon sequestration: A case study using data from China's Loess Plateau
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Designing afforestation subsidies that account for the benefits of carbon sequestration: A case study using data from China's Loess Plateau

机译:设计考虑到固碳效益的造林补贴:使用中国黄土高原地区数据的案例研究

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摘要

This paper presents a method for determining the subsidy required to motivate farmers to participate in timber afforestation programs designed to maximize social well-being. The method incorporates a carbon sequestration benefit function into the land expected value model in order to quantify the social benefit arising from carbon sequestration by the planted trees. This is used to calculate the optimal rotation age for newly planted forests that maximizes social utility. The minimum subsidy required to motivate farmers to participate in the afforestation program was calculated using a modified decision model that accounts for the subsidy's impact. The maximum subsidy offered by the government was taken to be the NPV of the carbon sequestration achieved by afforestation. Data on Robinia pseudoacacia L trees planted on the Loess Plateau were used in an empirical test of the model, which in this case predicts an optimal subsidy of 254.38 yuan/ha over 40 years. This would guarantee the maintenance of forest on land designated for afforestation until they reached the socially optimal rotation age. The method presented herein offers a new framework for designing afforestation subsidy programs that account for the environmental service (specially, the carbon sequestration) provided by forests.
机译:本文提出了一种确定补贴的方法,以激励农民参加旨在最大程度提高社会福祉的木材造林计划。该方法将碳固存收益函数纳入土地期望值模型,以便量化种植树木固碳产生的社会收益。这用于计算使社会效用最大化的新种植森林的最佳轮伐年龄。使用修正后的决策模型计算出鼓励农民参与造林计划所需的最低补贴。政府提供的最大补贴被视为造林所实现的碳封存的净现值。黄土高原种植的刺槐的数据用于该模型的实证检验,在这种情况下,预测了40年的最佳补贴为254.38元/公顷。这将保证在指定的造林土地上维持森林,直到达到社会上的最佳轮伐年龄为止。本文介绍的方法为设计造林补贴计划提供了一个新的框架,该计划考虑了森林提供的环境服务(特别是固碳)。

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