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特高压工程建设碳排放测算方法与应用

Method and application of carbon emission calculation for ultra-high voltage(UHV)project construction

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[目的]特高压工程作为中国"十四五"时期"新基建"七大重点领域之一,是中国新型电力系统的主干,对清洁能源的输送具有重要意义.本文旨在构建一套适用于中国特高压工程建设碳排放测算的理论与方法体系,以明确工程建设碳成本,助力工程碳管理和中国"双碳目标"下新型电力系统建设.[方法]本文基于生命周期评价,突破了基于费用清单的测算体系,从碳足迹视角首次构建了特高压工程建设碳源排放清单体系,以此提出了工程建设碳排放量的分组计算方法,增强了方法的适用性和精准性,并以陇东—山东±800千伏特高压直流输电工程为工程实例进行了测算和减碳潜力评价.[结果]研究表明:①本文构建的方法在一定范围内简化了计算工作,保证了对超大型输电工程建设碳排放相对科学和有效的测算;②陇东—山东±800千伏特高压直流输电工程建设阶段整体碳排放量为336.7万tCO2e,主要碳排放来源于碳不可溯源组项目,占总量的67.140%;③陇东—山东±800千伏特高压直流输电工程单位投资碳排放量为1.667 tCO2e/万元,大跨度的电力领域超级工程没有提升单位碳排放水平.[结论]研究结果验证了本文构建的特高压工程建设碳排放测算方法体系的适用性,方法体系为建立中国特高压工程碳成本预算、提升工程建设阶段碳排放管理能力、助力工程碳排放削减提供了理论支撑,同时也揭示了采用充分利用现有电网基础规划工程选址建设、创新施工建设技术和引入绿色材料、充分运用数智技术做好工程建设阶段的过程管理是特高压工程建设阶段最具潜力的减排路径.
[Objective]As one of the seven key areas of"new infrastructure"development during China's 14th Five-Year Plan period,the ultra-high voltage(UHV)projects are the backbone of China's new power system and is of great significance to the transmission of clean energy.This study constructed a theoretical and methodological system suitable for the carbon emission measurement of UHV project construction in China,in order to clarify the carbon cost of project construction and assist project carbon management and the construction of new power systems under China's"dual carbon"goals.[Methods]Based on the life cycle assessment method,this study broke through the cost list-based measurement system and for the first time constructed the carbon source emission inventory system for UHV project construction from the perspective of carbon footprint.On this basis,a grouping calculation method for project construction carbon emissions was proposed,which enhances the applicability and accuracy of the method.The calculation and carbon emission reduction potential evaluation of the±800 kV UHVDC transmission project from Longdong to Shandong were conducted as an example.[Results]The results show that:(1)The method constructed in this article simplifies the calculation work to a certain extent,ensuring a relatively scientific and effective calculation of carbon emissions in the construction of ultra large transmission projects;(2)The overall carbon emissions in the construction phase are 3.367×106 tCO2e,with the main source of carbon emissions coming from non-traceable projects,accounting for 67.140%of the total;(3)The carbon emissions of unit investment are 1.667 tCO2e/10000 yuan,and the unit carbon emissions level of the large-scale super project in the power sector has not been improved.[Conclusion]The results verify the applicability of the carbon emission calculation method for UHV project construction formed in this study.The method provides a theoretical support for establishing carbon cost budgets for UHV projects in China,improving carbon emission management capabilities during the project construction phase,and assisting project carbon emission reductions.The study also revealed that fully utilizing the existing power grid foundation to plan project site selection and construction,innovating construction technology,introducing green materials,and application of digital technology in project construction management are highly promising paths of carbon emission reduction.

new power systemUHV projectproject constructionlife cycle analysiscarbon emissionscarbon footprint

陈晓红、付益鹏、黄骋东、汪阳洁

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中南大学商学院,长沙 410083

湖南工商大学前沿交叉学院,长沙 410205

新型电力系统 特高压工程 工程建设 全生命周期分析 碳排放 碳足迹

国家自然科学基金基础科学中心项目湘江实验室重大项目

7208810123XJ01006

2023

资源科学
中国科学院地理科学与资源研究所 中国自然资源学会

资源科学

CSTPCDCSSCICSCDCHSSCD北大核心
影响因子:2.408
ISSN:1007-7588
年,卷(期):2023.45(12)
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