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Analyzing the carbon mitigation potential of tradable green certificates based on a TGC-FFSRO model: A case study in the Beijing-Tianjin-Hebei region, China

机译:基于TGC-FFSRO模型的可交易绿色证书的碳减排潜力分析:以北京-天津-河北地区为例

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摘要

Contradictions of increasing carbon mitigation pressure and electricity demand have been aggravated significantly. A heavy emphasis is placed on analyzing the carbon mitigation potential of electric energy systems via tradable green certificates (TGC). This study proposes a tradable green certificate (TGC)–fractional fuzzy stochastic robust optimization (FFSRO) model through integrating fuzzy possibilistic, two-stage stochastic and stochastic robust programming techniques into a linear fractional programming framework. The framework can address uncertainties expressed as stochastic and fuzzy sets, and effectively deal with issues of multi-objective tradeoffs between the economy and environment. The proposed model is applied to the major economic center of China, the Beijing-Tianjin-Hebei region. The generated results of proposed model indicate that a TGC mechanism is a cost-effective pathway to cope with carbon reduction and support the sustainable development pathway of electric energy systems. In detail, it can: (i) effectively promote renewable power development and reduce fossil fuel use; (ii) lead to higher CO2mitigation potential than non-TGC mechanism; and (iii) greatly alleviate financial pressure on the government to provide renewable energy subsidies. The TGC-FFSRO model can provide a scientific basis for making related management decisions of electric energy systems.
机译:碳减排压力和电力需求增加的矛盾已大大加剧。重点放在通过可交易的绿色证书(TGC)分析电力系统的碳减排潜力。这项研究通过将模糊可能性,两阶段随机和随机鲁棒规划技术集成到线性分数规划框架中,提出了可交易的绿色证书(TGC)-分数模糊随机鲁棒优化(FFSRO)模型。该框架可以解决表示为随机和模糊集的不确定性,并有效处理经济与环境之间的多目标权衡问题。该模型被应用于中国的主要经济中心北京-天津-河北地区。所提出模型的结果表明,TGC机制是应对碳减排和支持电力系统可持续发展途径的一种经济有效的途径。具体而言,它可以:(i)有效地促进可再生能源的发展并减少化石燃料的使用; (ii)比非TGC机制导致更高的二氧化碳减排潜力; (iii)大大减轻了政府提供可再生能源补贴的财政压力。 TGC-FFSRO模型可以为制定电力系统的相关管理决策提供科学依据。

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