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阶梯式碳排放交易和碳捕获与封存对混合式风能-光伏-热能存储发电系统的碳减排效果。

The carbon reduction effects of stepped carbon emissions trading and carbon capture and storage on hybrid wind-PV-thermal- storage generation operating systems.

机构信息

School of Economics and Management, North China Electric Power University, Beijing, 102206, China.

Zhejiang Provincial New Energy Investment Group Co., Ltd, Hangzhou, 311500, China.

出版信息

Environ Sci Pollut Res Int. 2023 Aug;30(38):88664-88684. doi: 10.1007/s11356-023-28644-0. Epub 2023 Jul 13.

Abstract

To accelerate the low-carbon transformation of the power industry, a range of carbon emission reduction policies and technologies have emerged. However, the current China's carbon emissions trading (CET) policy is inadequate in encouraging power generation enterprises to take proactive measures towards emission reduction due to challenges like fixed and low carbon prices. The high proportion of renewable energy in electricity consumption also faces significant challenges due to the unpredictable nature of wind and PV energy. Therefore, this paper applies stepped CET mechanism, energy storage system (ES) system and carbon capture and storage (CCS) mechanism together to hybrid renewable energy system, aiming to study their synergistic carbon emission reduction effect. Firstly, the paper constructs the stepped CET model considering incentives and penalties. Secondly, the stepped CET model, ES system and CCS are jointly introduced into the hybrid renewable energy system. Finally, a scenario analysis is conducted to investigate the synergistic effect of various carbon emissions reduction policies and technologies in the operation of power generation systems. The results show that: i) compared with traditional CET, the stepped CET increases renewable energy consumption by 0.12% and reduces carbon emissions by 0.6%; ii) the introduction of stepped CET and ES equipment together consumes an additional 36.1% of renewable energy and reduces carbon emissions by 32.4%; iii) based on stepped CET model and ES equipment, the introduction of CCS system reduces carbon emissions by 29.4%.

摘要

为了加速电力行业的低碳转型,出现了一系列碳减排政策和技术。然而,由于碳价格固定且较低等挑战,当前中国的碳排放交易(CET)政策在鼓励发电企业采取主动减排措施方面还不够完善。由于风能和光伏能源的不可预测性,高比例的可再生能源在电力消耗方面也面临重大挑战。因此,本文应用阶梯式 CET 机制、储能系统(ES)和碳捕获与封存(CCS)机制相结合的混合可再生能源系统,旨在研究它们的协同减排效果。首先,本文构建了考虑激励和惩罚的阶梯式 CET 模型。其次,将阶梯式 CET 模型、ES 系统和 CCS 联合引入混合可再生能源系统。最后,进行了情景分析,以研究各种碳减排政策和技术在发电系统运行中的协同效应。结果表明:i)与传统 CET 相比,阶梯式 CET 增加了 0.12%的可再生能源消耗,减少了 0.6%的碳排放;ii)引入阶梯式 CET 和 ES 设备一起消耗了额外的 36.1%的可再生能源,减少了 32.4%的碳排放;iii)在阶梯式 CET 模型和 ES 设备的基础上,引入 CCS 系统可减少 29.4%的碳排放。

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