Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry

Electricity trading is an effective measure to minimize carbon emissions and alleviate the imbalance between reverse distribution of regional energy resources and power load. However, the effects of China’s electricity trading on carbon emissions have not been fully explored due to lack of complete...

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Main Authors: Yanfeng Li, Yongping Li, Guohe Huang, Rubing Zheng
Format: Article
Language:English
Published: MDPI AG 2022-05-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/15/10/3601
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author Yanfeng Li
Yongping Li
Guohe Huang
Rubing Zheng
author_facet Yanfeng Li
Yongping Li
Guohe Huang
Rubing Zheng
author_sort Yanfeng Li
collection DOAJ
description Electricity trading is an effective measure to minimize carbon emissions and alleviate the imbalance between reverse distribution of regional energy resources and power load. However, the effects of China’s electricity trading on carbon emissions have not been fully explored due to lack of complete and balanced inter-provincial power transmission data. Therefore, the electricity generation–consumption downscaling model, logarithmic mean Divisia index (LMDI) model, and random forest clustering algorithm within a general framework were used in the present study to explore the effect of electricity trading on level of carbon emissions. Comprehensive inter-provincial electricity transmission data were generated, driving factors including electricity imports and exports were decomposed at the national and provincial scales, and clustered provincial policy implications were evaluated. The results revealed that: (i) although economic activities were the main driving factor for increase in carbon emissions at the national level, 382.95 million tons carbon emissions were offset from 2005 to 2019 due to inter-provincial electricity importation, whereas electricity export increased carbon emission by 230.30 million tons; (ii) analysis at the provincial level showed that electricity exports from Sichuan and Yunnan provinces accounted for more than 20% of the nation’s total electricity flow. Notably, this high level of exports did not significantly increase carbon emissions in these provinces owing to the abundant hydropower resources; (iii) emission reductions were only observed at the national level if the carbon intensity of the exporting provinces was lower compared with that of importing provinces, or if the electricity trading was generated from renewable sources; (iv) the effect of electricity import on emissions reduction was markedly higher relative to the effect of electricity export in most provinces, which reflected the actual situation of sustaining optimization of electricity generation structure in provincial grids of China. These findings provide a basis for decision makers to understand the contributions of electricity trading to the changes in carbon emissions from electricity generation, as well as form a foundation to explore practicable carbon emission mitigation strategies in the power industry.
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spelling doaj.art-28d39b970a034f148128f8b99d2570592023-11-23T10:50:27ZengMDPI AGEnergies1996-10732022-05-011510360110.3390/en15103601Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power IndustryYanfeng Li0Yongping Li1Guohe Huang2Rubing Zheng3Sino-Canada Energy and Environmental Research Center, North China Electric Power University, Beijing 102206, ChinaState Key Joint Laboratory of Environmental Simulation and Pollution Control, China-Canada Center for Energy, Environment and Ecology Research, UR-BNU, School of Environment, Beijing Normal University, Beijing 100875, ChinaState Key Joint Laboratory of Environmental Simulation and Pollution Control, China-Canada Center for Energy, Environment and Ecology Research, UR-BNU, School of Environment, Beijing Normal University, Beijing 100875, ChinaSino-Canada Energy and Environmental Research Center, North China Electric Power University, Beijing 102206, ChinaElectricity trading is an effective measure to minimize carbon emissions and alleviate the imbalance between reverse distribution of regional energy resources and power load. However, the effects of China’s electricity trading on carbon emissions have not been fully explored due to lack of complete and balanced inter-provincial power transmission data. Therefore, the electricity generation–consumption downscaling model, logarithmic mean Divisia index (LMDI) model, and random forest clustering algorithm within a general framework were used in the present study to explore the effect of electricity trading on level of carbon emissions. Comprehensive inter-provincial electricity transmission data were generated, driving factors including electricity imports and exports were decomposed at the national and provincial scales, and clustered provincial policy implications were evaluated. The results revealed that: (i) although economic activities were the main driving factor for increase in carbon emissions at the national level, 382.95 million tons carbon emissions were offset from 2005 to 2019 due to inter-provincial electricity importation, whereas electricity export increased carbon emission by 230.30 million tons; (ii) analysis at the provincial level showed that electricity exports from Sichuan and Yunnan provinces accounted for more than 20% of the nation’s total electricity flow. Notably, this high level of exports did not significantly increase carbon emissions in these provinces owing to the abundant hydropower resources; (iii) emission reductions were only observed at the national level if the carbon intensity of the exporting provinces was lower compared with that of importing provinces, or if the electricity trading was generated from renewable sources; (iv) the effect of electricity import on emissions reduction was markedly higher relative to the effect of electricity export in most provinces, which reflected the actual situation of sustaining optimization of electricity generation structure in provincial grids of China. These findings provide a basis for decision makers to understand the contributions of electricity trading to the changes in carbon emissions from electricity generation, as well as form a foundation to explore practicable carbon emission mitigation strategies in the power industry.https://www.mdpi.com/1996-1073/15/10/3601inter-provincialelectricity tradingcarbon emissionsLMDIrandom forest clustering
spellingShingle Yanfeng Li
Yongping Li
Guohe Huang
Rubing Zheng
Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry
Energies
inter-provincial
electricity trading
carbon emissions
LMDI
random forest clustering
title Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry
title_full Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry
title_fullStr Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry
title_full_unstemmed Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry
title_short Inter-Provincial Electricity Trading and Its Effects on Carbon Emissions from the Power Industry
title_sort inter provincial electricity trading and its effects on carbon emissions from the power industry
topic inter-provincial
electricity trading
carbon emissions
LMDI
random forest clustering
url https://www.mdpi.com/1996-1073/15/10/3601
work_keys_str_mv AT yanfengli interprovincialelectricitytradinganditseffectsoncarbonemissionsfromthepowerindustry
AT yongpingli interprovincialelectricitytradinganditseffectsoncarbonemissionsfromthepowerindustry
AT guohehuang interprovincialelectricitytradinganditseffectsoncarbonemissionsfromthepowerindustry
AT rubingzheng interprovincialelectricitytradinganditseffectsoncarbonemissionsfromthepowerindustry