GTAP- e: GTAP模型的能源-环境版本

T. Truong
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引用次数: 636

摘要

能源是许多经济活动中的重要商品。它的使用通过二氧化碳排放和温室效应影响环境。能源-经济-环境-贸易关系建模是应用经济政策分析的一个重要目标。然而,在此之前,对GTAP中这些联系的建模是不完整的。这是因为能源替代,这一关键因素在这一环节中,没有出现在标准模型规范中。这篇技术论文通过将能源替代纳入标准GTAP模型来弥补这一缺陷。它首先回顾了当代CGE模型中解决这一问题的一些现有方法。然后,它为GTAP提出了一种方法,该方法结合了能源替代的一些理想特征。该方法作为GTAP模型的扩展版本实现,称为GTAP- e,其中包括作为特殊情况的标准GTAP模型。此外,GTAP-E纳入了化石燃料燃烧产生的碳排放,修订后的GTAP-E提供了一种国际交易这些排放的机制。利用一般均衡需求弹性分析了模型中主体的行为,总结了新模型规范的综合效应。通过一个简单的模拟实验证明了对政策分析的影响,其中通过征收碳税减少了全球碳排放。结果表明,将能源替代纳入GTAP是进行该问题分析的必要条件。对《京都议定书》执行情况的一些模拟说明了GTAP-E在现有气候变化辩论背景下的政策相关性。希望拟议的模型将被GTAP网络中的个人使用,他们本身可能不是能源建模者,但他们需要比目前标准GTAP模型提供的更好地表示能源-经济联系。
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GTAP-E: An Energy-Environmental Version of the GTAP Model
Energy is an important commodity in many economic activities. Its usage affects the environment via CO2 emissions and the Greenhouse Effect. Modeling the energy-economy-environment-trade linkages is an important objective in applied economic policy analysis. Previously, however, the modeling of these linkages in GTAP has been incomplete. This is because energy substitution, a key factor in this chain of linkages, is absent from the standard model specification. This technical paper remedies this deficiency by incorporating energy substitution into the standard GTAP model. It begins by first reviewing some of the existing approaches to this problem in contemporary CGE models. It then suggests an approach for GTAP which incorporates some of these desirable features of energy substitution. The approach is implemented as an extended version of the GTAP model called GTAP-E, which includes the standard GTAP model as a special case. In addition, GTAP-E incorporates carbon emissions from the combustion of fossil fuels and this revised version of GTAP-E provides for a mechanism to trade these emissions internationally. The resulting behavior of agents in the model is analyzed using general equilibrium demand elasticities which summarize the combined effect of the new model specification. Implications for policy analysis are demonstrated via a simple simulation experiment in which global carbon emissions are reduced via a carbon tax. Results show that incorporating energy substitution into GTAP is essential for conducting analysis of this problem. The policy relevance of GTAP-E in the context of the existing debate about climate change is illustrated by some simulations of the implementation of the Kyoto Protocol. It is hoped that the proposed model will be used by individuals in the GTAP network who may not be themselves energy modelers, but who require a better representation of the energy-economy linkages than is currently offered in the standard GTAP model.
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