中国碳价格在区域和全国排放权交易试点期间的区域制度转换行为

IF 3.2 4区 工程技术 Q3 ENERGY & FUELS
Kai Chang, Zesheng Li, Boyang Li
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引用次数: 0

摘要

制度转换过程反映了机制转换状态,预测了碳价格的剧烈波动;本文倾向于利用马尔科夫转换模型研究中国碳价格的区域制度转换行为。实证结果表明,在 2014 年 1 月 2 日至 2022 年 4 月 30 日期间,北京、上海、深圳、广东和湖北的碳价格表现出显著的制度切换;我们的结果与欧盟碳和能源价格的制度切换行为相似。与北京、上海、广东和湖北相比,深圳的碳价格产生了更大的市场波动。上海和北京的碳价格从低波动到高波动状态的切换概率大于广东、深圳和湖北。每年强制提交配额、配额分配修正、区域和全国 ETS 试点之间的阶段性切换以及成熟的能源市场是中国碳价格制度切换行为的主要驱动因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regional regime-switching behavior of China’s carbon price during regional and nationwide emissions trading scheme pilots

Regional regime-switching behavior of China’s carbon price during regional and nationwide emissions trading scheme pilots

Regime-switching process reflects mechanistic transition states and forecasts extreme carbon price volatility; this article tends to investigate the regional regime-switching behaviors of China’s carbon price using the Markov switching model. Our empirical results demonstrate that carbon prices in Beijing, Shanghai, Shenzhen, Guangdong, and Hubei exhibit significant regime-switching for the period from January 2, 2014 to April 30, 2022; our results are similar with the regime-switching behavior of European Union’s carbon and energy price. Shenzhen’s carbon prices generate greater market fluctuations than those of Beijing, Shanghai, Guangdong, and Hubei. The switching probabilities of carbon prices from low-variance to high-variance state in Shanghai and Beijing are greater than those of Guangdong, Shenzhen, and Hubei. Annual compulsory allowance submissions, allowances allocation corrections, phase-switching between regional and nationwide ETS pilots, and sophisticated energy markets are the main driving factors of regime-switching behavior in China’s carbon prices.

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来源期刊
Energy Efficiency
Energy Efficiency ENERGY & FUELS-ENERGY & FUELS
CiteScore
5.80
自引率
6.50%
发文量
59
审稿时长
>12 weeks
期刊介绍: The journal Energy Efficiency covers wide-ranging aspects of energy efficiency in the residential, tertiary, industrial and transport sectors. Coverage includes a number of different topics and disciplines including energy efficiency policies at local, regional, national and international levels; long term impact of energy efficiency; technologies to improve energy efficiency; consumer behavior and the dynamics of consumption; socio-economic impacts of energy efficiency measures; energy efficiency as a virtual utility; transportation issues; building issues; energy management systems and energy services; energy planning and risk assessment; energy efficiency in developing countries and economies in transition; non-energy benefits of energy efficiency and opportunities for policy integration; energy education and training, and emerging technologies. See Aims and Scope for more details.
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